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HORT640 - Metabolic Plant Physiology
References, photosystem I
Albertsson P. A quantitative model of the domain structure of the photosynthetic membrane. Trends Plant Sci. 6: 349-358 (2001).
Alfonso M, Perewoska I, Kirilovsky D. Redox control of psbA gene expression in the cyanobacterium Synechocystis PCC 6803. Involvement of the cytochrome b(6)/f complex. Plant Physiol. 122: 505-516 (2000).
Allakhverdiev SI, Nishiyama Y, Takahashi S, Miyairi S, Suzuki I, Murata N. Systematic analysis of the relation of electron transport and ATP synthesis to the photodamage and repair of photosystem II in Synechocystis. Plant Physiol. 137: 263-273 (2005).
Allakhverdiev SI, Sakamoto A, Nishiyama Y, Inaba M, Murata N. Ionic and osmotic effects of NaCl-induced inactivation of Photosystems I and II in Synechococcus sp. Plant Physiol. 123: 1047-1056 (2000).
Altmann T, Kossmann J. Photosynthesis and primary metabolism. Trends Plant Sci. 6: 93-94 (2001).
Alvarado V, Bradford KJ. A hydrothermal time model explains the cardinal temperatures for seed germination. Plant Cell Environ. 25: 1061-1069 (2002).
Amann K, Lezhneva L, Wanner G, Herrmann RG, Meurer J. ACCUMULATION OF PHOTOSYSTEM ONE1, a member of a novel gene family, is required for accumulation of [4Fe-4S] cluster-containing chloroplast complexes and antenna proteins. Plant Cell 16: 3084-3097 (2004).
Andersson U, Heddad M, Adamska I. Light stress-induced one-helix protein of the chlorophyll a/b-binding family associated with photosystem I. Plant Physiol. 132: 811-820 (2003).
Armbrust TS, Chitnis PR, Guikema JA. Organization of photosystem I polypeptides examined by chemical cross-linking. Plant Physiol. 111: 1307-1312 (1996).
Asada K. The water-water cycle in chloroplasts: scavenging of active oxygens and dissipation of excess photons. Annu. Rev. Plant Physiol. Plant Mol. Biol. 50: 601-639 (1999).
Avenson TJ, Cruz JA, Kanazawa A, Kramer DM. Regulating the proton budget of higher plant photosynthesis. Proc. Natl. Acad. Sci. U.S.A. 102: 9709-9713 (2005).
Aylor DE. Rate of dehydration of corn (Zea mays L.) pollen in the air. J. Exp. Bot. 54: 2307-2312 (2003).
Aylor DE, Baltazar BM, Schoper JB. Some physical properties of teosinte (Zea mays subsp. parviglumis) pollen. J. Exp. Bot. 56: 2401-2407 (2005).
Baena-Gonzalez E, Allahverdiyeva Y, Svab Z, Maliga P, Josse EM, Kuntz M, Maenpaa P, Aro EM. Deletion of the tobacco plastid psbA gene triggers an upregulation of the thylakoid-associated NAD(P)H dehydrogenase complex and the plastid terminal oxidase (PTOX). Plant J. 35: 704-716 (2003).
Baena-Gonzalez E, Allahverdiyeva Y, Svab Z, Maliga P, Josse EM, Kuntz M, Maenpaa P, Aro EM. Deletion of the tobacco plastid psbA gene triggers an upregulation of the thylakoid-associated NAD(P)H dehydrogenase complex and the plastid terminal oxidase (PTOX). Plant J. 35: 704-716 (2003).
Baena-Gonzalez E, Gray JC, Tyystjarvi E, Aro EM, Maenpaa P. Abnormal regulation of photosynthetic electron transport in a chloroplast ycf9 inactivation mutant. J. Biol. Chem. 276: 20795-20802 (2001).
Ballottari M, Dall'Osto L, Morosinotto T, Bassi R. Contrasting behavior of higher plant photosystem I and II antenna systems during acclimation. J. Biol. Chem. 282: 8947-8958 (2007).
Ballottari M, Govoni C, Caffarri S, Morosinotto T. Stoichiometry of LHCI antenna polypeptides and characterization of gap and linker pigments in higher plants photosystem I. Eur. J. Biochem. 271: 4659-4665 (2004).
Balnokin YV, Popova LG, Pagis LY, Andreev IM. The Na(+)-translocating ATPase in the plasma membrane of the marine microalga Tetraselmis viridis catalyzes Na(+)/H(+) exchange. Planta 219: 332-337 (2004).
Bang WY, Jeong IS, Kim DW, Im CH, Ji C, Hwang SM, Kim SW, Son YS, Jeong J, Shiina T, Bahk JD. Role of Arabidopsis CHL27 protein for photosynthesis, chloroplast development, and gene expression profiling. Plant Cell Physiol. 49: 1350-1363 (2008).
Barth C, Krause GH. Study of tobacco transformants to assess the role of chloroplastic NAD(P)H dehydrogenase in photoprotection of photosystems I and II. Planta 216: 273-279 (2002).
Beever RE, Laracy EP. Osmotic adjustment in the filamentous fungus Aspergillus nidulans. J. Bacteriol. 168: 1358-1365 (1986).
Beligni MV, Lamattina L. Nitric oxide interferes with plant photo-oxidative stress by detoxifying reactive oxygen species. Plant Cell Environ. 25: 737-748 (2002).
Bellafiore S, Ferris P, Naver H, Gohre V, Rochaix JD. Loss of Albino3 leads to the specific depletion of the light-harvesting system. Plant Cell 14: 2303-2314 (2002).
Ben-Shem A, Frolow F, Nelson N. Evolution of photosystem I - from symmetry through pseudo-symmetry to asymmetry. FEBS Lett. 564: 274-280 (2004).
Bertamini M, Muthuchelian K, Nedunchezhian N. Effect of grapevine leafroll on the photosynthesis of field grown grapevine plants (Vitis vinifera L. Cv. Lagrein). J. Phytopathol. 152: 145-152 (2004).
Bishop CL, Ulas S, Baena-Gonzalez E, Aro EM, Purton S, Nugent JH, Maenpaa P. The PsbZ subunit of photosystem II in Synechocystis sp. PCC 6803 modulates electron flow through the photosynthetic electron transfer chain. Photosynth. Res. 93: 139-147 (2007).
Bozzo GG, Dunn EL, Plaxton WC. Differential synthesis of phosphate-starvation inducible purple acid phosphatase isozymes in tomato (Lycopersicon esculentum) suspension cells and seedlings. Plant Cell Environ. 29: 303-313 (2006).
Brodelius M, Hiraiwa M, Marttila S, Al Karadaghi S, Picaud S, Brodelius PE. Immunolocalization of the saposin-like insert of plant aspartic proteinases exhibiting saposin C activity. Expression in young flower tissues and in barley seeds. Physiol. Plant. 125: 405-418 (2005).
Bukhov N, Egorova E, Carpentier R. Electron flow to photosystem I from stromal reductants in vivo: the size of the pool of stromal reductants controls the rate of electron donation to both rapidly and slowly reducing photosystem I units. Planta 215: 812-820 (2002).
Bukhov NG, Carpentier R. Measurement of photochemical quenching of absorbed quanta in photosystem I of intact leaves using simultaneous measurements of absorbance changes at 830 nm and thermal dissipation. Planta 216: 630-638 (2003).
Bukhov NG, Govindachary S, Egorova EA, Carpentier R. Recovery of photosystem I and II activities during re-hydration of lichen Hypogymnia physodes thalli. Planta 219: 110-120 (2004).
Bukhov NG, Govindachary S, Rajagopal S, Joly D, Carpentier R. Enhanced rates of P700(+) dark-reduction in leaves of Cucumis sativus L photoinhibited at chilling temperature. Planta 218: 852-861 (2004).
Busch A, Rimbauld B, Naumann B, Rensch S, Hippler M. Ferritin is required for rapid remodeling of the photosynthetic apparatus and minimizes photo-oxidative stress in response to iron availability in Chlamydomonas reinhardtii. Plant J. 55: 201-211 (2008).
Cardol P, Gloire G, Havaux M, Remacle C, Matagne R, Franck F. Photosynthesis and state transitions in mitochondrial mutants of Chlamydomonas reinhardtii affected in respiration. Plant Physiol. 133: 2010-2020 (2003).
Casolo V, Petrussa E, Krajnakova J, Macri F, Vianello A. Involvement of the mitochondrial K(+)ATP channel in H2O2- or NO-induced programmed death of soybean suspension cell cultures. J. Exp. Bot. 56: 997-1006 (2005).
Castillo RM, Mizuguchi K, Dhanaraj V, Albert A, Blundell TL, Murzin AG. A six-stranded double-psi beta barrel is shared by several protein superfamilies. Structure Fold. Des. 7: 227-236 (1999).
Chitnis PR. Photosystem I: function and physiology. Annu. Rev. Plant Physiol. Plant Mol. Biol. 52: 593-626 (2001).
Chitnis VP, Ke A, Chitnis PR. The PsaD subunit of photosystem I. Mutations in the basic domain reduce the level of PsaD in the membranes. Plant Physiol. 115: 1699-1705 (1997).
Choi SM, Jeong SW, Jeong WJ, Kwon SY, Chow WS, Park YI. Chloroplast Cu/Zn-superoxide dismutase is a highly sensitive site in cucumber leaves chilled in the light. Planta 216: 315-324 (2002).
Ciapaite J, Bakker SJ, Diamant M, van Eikenhorst G, Heine RJ, Westerhoff HV, Krab K. Metabolic control of mitochondrial properties by adenine nucleotide translocator determines palmitoyl-CoA effects. FEBS J. 273: 5288-5302 (2006).
Clarke AK, Campbell D. Inactivation of the petE gene for plastocyanin lowers photosynthetic capacity and exacerbates chilling-induced photoinhibition in the cyanobacterium Synechococcus. Plant Physiol. 112: 1551-1561 (1996).
Colmenero-Flores JM, Campos F, Garciarrubio A, Covarrubias AA. Characterization of Phaseolus vulgaris cDNA clones responsive to water deficit: identification of a novel late embryogenesis abundant-like protein. Plant Mol. Biol. 35: 393-405 (1997).
Dal Bosco C, Busconi M, Govoni C, Baldi P, Stanca AM, Crosatti C, Bassi R, Cattivelli L. cor gene expression in barley mutants affected in chloroplast development and photosynthetic electron transport. Plant Physiol. 131: 793-802 (2003).
De Groot CC, Van Den Boogaard R, Marcelis LF, Harbinson J, Lambers H. Contrasting effects of N and P deprivation on the regulation of photosynthesis in tomato plants in relation to feedback limitation. J. Exp. Bot. 54: 1957-1967 (2003).
de Longevialle AF, Hendrickson L, Taylor NL, Delannoy E, Lurin C, Badger M, Harvey Millar A, Small I. The pentatricopeptide repeat gene OTP51 with two LAGLIDADG motifs is required for the cis-splicing of plastid ycf3 intron 2 in Arabidopsis thaliana. Plant J. 56: 157-168 (2008).
Di Martino C, Pizzuto R, Pallotta ML, De Santis A, Passarella S. Mitochondrial transport in proline catabolism in plants: the existence of two separate translocators in mitochondria isolated from durum wheat seedlings. Planta 223: 1123-1133 (2006).
Dinkins RD, Bandaranayake H, Baeza L, Griffiths AJ, Green BR. hcf5, a nuclear photosynthetic electron transport mutant of Arabidopsis thaliana with a pleiotropic effect on chloroplast gene expression. Plant Physiol. 113: 1023-1031 (1997).
Dobakova M, Sobotka R, Tichy M, Komenda J. The Psb28 protein is involved in the biogenesis of the photosystem II inner antenna CP47 (PsbB) in the cyanobacterium Synechocystis sp. PCC 6803. Plant Physiol. 149: 1076-1086 (2009).
Domec JC, Gartner BL. How do water transport and water storage differ in coniferous earlywood and latewood? J. Exp. Bot. 53: 2369-2379 (2002).
Domec JC, Scholz FG, Bucci SJ, Meinzer FC, Goldstein G, Villalobos-Vega R. Diurnal and seasonal variation in root xylem embolism in neotropical savanna woody species: impact on stomatal control of plant water status. Plant Cell Environ. 29: 26-35 (2006).
Domonkos I, Malec P, Sallai A, Kovacs L, Itoh K, Shen G, Ughy B, Bogos B, Sakurai I, Kis M, Strzalka K, Wada H, Itoh S, Farkas T, Gombos Z. Phosphatidylglycerol is essential for oligomerization of photosystem I reaction center. Plant Physiol. 134: 1471-1478 (2004).
Ducruet JM, Roman M, Havaux M, Janda T, Gallais A. Cyclic electron flow around PSI monitored by afterglow luminescence in leaves of maize inbred lines (Zea mays L.): correlation with chilling tolerance. Planta 221: 567-579 (2005).
Duke SO. Overview of herbicide mechanisms of action. Environ. Health Perspect. 87: 263-271 (1990).
Eichelmann H, Laisk A. CO2 uptake and electron transport rates in wild-type and a starchless mutant of Nicotiana sylvestris. The role and regulation of starch synthesis at saturating CO2 concentrations. Plant Physiol. 106: 679-687 (1994).
Eichelmann H, Oja V, Rasulov B, Padu E, Bichele I, Pettai H, Mand P, Kull O, Laisk A. Adjustment of leaf photosynthesis to shade in a natural canopy: reallocation of nitrogen. Plant Cell Environ. 28: 389-401 (2005).
Eisenhut M, von Wobeser EA, Jonas L, Schubert H, Ibelings BW, Bauwe H, Matthijs HC, Hagemann M. Long-term response toward inorganic carbon limitation in wild type and glycolate turnover mutants of the cyanobacterium Synechocystis sp. strain PCC 6803. Plant Physiol. 144: 1946-1959 (2007).
Ewy RG, Dilley RA. Distinguishing between luminal and localized proton buffering pools in thylakoid membranes. Plant Physiol. 122: 583-596 (2000).
Fan DY, Hope AB, Jia H, Chow WS. Separation of light-induced linear, cyclic and stroma-sourced electron fluxes to P700+ in cucumber leaf discs after pre-illumination at a chilling temperature. Plant Cell Physiol. 49: 901-911 (2008).
Fellows RJ, Patterson RP, Raper CD Jr, Harris D. Nodule activity and allocation of photosynthate of soybean during recovery from water stress. Plant Physiol. 84: 456-460 (1987).
Ferreira S, Hjerno K, Larsen M, Wingsle G, Larsen P, Fey S, Roepstorff P, Salome Pais M. Proteome profiling of Populus euphratica Oliv. upon heat stress. Ann. Bot. (Lond.) 98: 361-377 (2006).
Fisher DB, Cash-Clark CE. Gradients in water potential and turgor pressure along the translocation pathway during grain fFilling in normally watered and water-stressed wheat plants. Plant Physiol. 123: 139-148 (2000).
Forti G, Caldiroli G. State transitions in Chlamydomonas reinhardtii. The role of the Mehler reaction in state 2-to-state 1 transition. Plant Physiol. 137: 492-499 (2005).
Fricke W, McDonald AJS, Mattson-Djos L. Why do leaves and leaf cells of N-limited barley elongate at reduced rates?. Planta 202: 522-530 (1997).
Fricke W, Peters WS. The biophysics of leaf growth in salt-stressed barley. A study at the cell level. Plant Physiol. 129: 374-388 (2002).
Fuhrmann E, Gathmann S, Rupprecht E, Golecki J, Schneider D. Thylakoid membrane reduction affects the photosystem stoichiometry in the cyanobacterium Synechocystis sp. PCC 6803. Plant Physiol. 149: 735-744 (2009).
Fujimori T, Higuchi M, Sato H, Aiba H, Muramatsu M, Hihara Y, Sonoike K. The mutant of sll1961, which encodes a putative transcriptional regulator, has a defect in regulation of photosystem stoichiometry in the cyanobacterium Synechocystis sp. PCC 6803. Plant Physiol. 139: 408-416 (2005).
Fukuda SY, Yamakawa R, Hirai M, Kashino Y, Koike H, Satoh K. Mechanisms to avoid photoinhibition in a desiccation-tolerant cyanobacterium, Nostoc commune. Plant Cell Physiol. 49: 488-492 (2008).
Ganeteg U, Klimmek F, Jansson S. Lhca5 - an LHC-type protein associated with photosystem I. Plant Mol. Biol. 54: 641-651 (2004).
Ganeteg U, Strand A, Gustafsson P, Jansson S. The properties of the chlorophyll a/b-binding proteins Lhca2 and Lhca3 studied in vivo using antisense inhibition. Plant Physiol. 127: 150-158 (2001).
Garstka M, Venema JH, Rumak I, Gieczewska K, Rosiak M, Koziol-Lipinska J, Kierdaszuk B, Vredenberg WJ, Mostowska A. Contrasting effect of dark-chilling on chloroplast structure and arrangement of chlorophyll-protein complexes in pea and tomato: plants with a different susceptibility to non-freezing temperature. Planta 226: 1165-1181 (2007).
Geigenberger P, Kolbe A, Tiessen A. Redox regulation of carbon storage and partitioning in response to light and sugars. J. Exp. Bot. 56: 1469-1479 (2005).
Gerloff-Elias A, Spijkerman E, Proschold T. Effect of external pH on the growth, photosynthesis and photosynthetic electron transport of Chlamydomonas acidophila Negoro, isolated from an extremely acidic lake (pH 2.6). Plant Cell Environ. 28: 1218-1229 (2005).
Giacomelli L, Rudella A, van Wijk KJ. High light response of the thylakoid proteome in Arabidopsis wild type and the ascorbate-deficient mutant vtc2-2. A comparative proteomics study. Plant Physiol. 141: 685-701 (2006).
Gilmore AM, Matsubara S, Ball MC, Barker DH, Itoh S. Excitation energy flow at 77 K in the photosynthetic apparatus of overwintering evergreens. Plant Cell Environ. 26: 1021-1034 (2003).
Gohre V, Ossenbuhl F, Crevecoeur M, Eichacker LA, Rochaix JD. One of two alb3 proteins is essential for the assembly of the photosystems and for cell survival in Chlamydomonas. Plant Cell 18: 1454-1466 (2006).
Golding AJ, Finazzi G, Johnson GN. Reduction of the thylakoid electron transport chain by stromal reductants--evidence for activation of cyclic electron transport upon dark adaptation or under drought. Planta 220: 356-363 (2004).
Golding AJ, Johnson GN. Down-regulation of linear and activation of cyclic electron transport during drought. Planta 218: 107-114 (2003).
Govindachary S, Bukhov NG, Joly D, Carpentier R. Photosystem II inhibition by moderate light under low temperature in intact leaves of chilling-sensitive and -tolerant plants. Physiol. Plant. 121: 322-333 (2004).
Graham JE, Bryant DA. The biosynthetic pathway for myxol-2' fucoside (myxoxanthophyll) in the cyanobacterium Synechococcus sp. strain PCC 7002. J. Bacteriol. 191: 3292-3300 (2009).
Gross J, Cho WK, Lezhneva L, Falk J, Krupinska K, Shinozaki K, Seki M, Herrmann RG, Meurer J. A plant locus essential for phylloquinone (vitamin K1) biosynthesis originated from a fusion of four eubacterial genes. J. Biol. Chem. 281: 17189-17196 (2006).
Guo J, Zhang Z, Bi Y, Yang W, Xu Y, Zhang L. Decreased stability of photosystem I in dgd1 mutant of Arabidopsis thaliana. FEBS Lett. 579: 3619-3624 (2005).
Haldrup A, Naver H, Scheller HV. The interaction between plastocyanin and photosystem I is inefficient in transgenic Arabidopsis plants lacking the PSI-N subunit of photosystem I. Plant J. 17: 689-698 (1999).
Hansson A, Jensen PE. Chlorophyll limitation in plants remodels and balances the photosynthetic apparatus by changing the accumulation of photosystems I and II through two different approaches. Physiol. Plant. 135: 214-228 (2009).
Harbinson J, Hedley CL. Changes in P-700 oxidation during the early stages of the induction of photosynthesis. Plant Physiol. 103: 649-660 (1993).
Harel Y, Ohad I, Kaplan A. Activation of photosynthesis and resistance to photoinhibition in cyanobacteria within biological desert crust. Plant Physiol. 136: 3070-3079 (2004).
Hartel H, Lokstein H, Dormann P, Grimm B, Benning C. Changes in the composition of the photosynthetic apparatus in the galactolipid-deficient dgd1 mutant of Arabidopsis thaliana. Plant Physiol. 115: 1175-1184 (1997).
Harvaux M, Kloppstech K. The protective functions of carotenoid and flavonoid pigments against excess visible radiation at chilling temperature investigated in Arabidopsis npq and tt mutants. Planta 213: 953-966 (2001).
Hashimoto M, Endo T, Peltier G, Tasaka M, Shikanai T. A nucleus-encoded factor, CRR2, is essential for the expression of chloroplast ndhB in Arabidopsis. Plant J. 36: 541-549 (2003).
Hausler RE, Lea PJ, Leegood RC. Control of photosynthesis in barley leaves with reduced activities of glutamine synthetase or glutamate synthase. 2. Control of electron transport and CO2 assimilation. Planta 194: 418-435 (1994).
Heck DA, Miles D, Chitnis PR. Characterization of two photosynthetic mutants of maize. Plant Physiol. 120: 1129-1136 (1999).
Hein P, Stockel J, Bennewitz S, Oelmuller R. A protein related to prokaryotic UMP kinases is involved in psaA/B transcript accumulation in Arabidopsis. Plant Mol. Biol. 69: 517-528 (2009).
Heinemeyer J, Eubel H, Wehmhoner D, Jansch L, Braun HP. Proteomic approach to characterize the supramolecular organization of photosystems in higher plants. Phytochemistry 65: 1683-1692 (2004).
Hendrickson L, Forster B, Furbank RT, Chow WS. Processes contributing to photoprotection of grapevine leaves illuminated at low temperature. Physiol. Plant. 121: 272-281 (2004).
Hermans C, Johnson GN, Strasser RJ, Verbruggen N. Physiological characterisation of magnesium deficiency in sugar beet: acclimation to low magnesium differentially affects photosystems I and II. Planta 220: 344-355 (2004).
Herranen M, Battchikova N, Zhang P, Graf A, Sirpio S, Paakkarinen V, Aro EM. Towards functional proteomics of membrane protein complexes in Synechocystis sp. PCC 6803. Plant Physiol. 134: 470-481 (2004).
Heyde S, Jahns P. The kinetics of zeaxanthin formation is retarded by dicyclohexylcarbodiimide. Plant Physiol. 117: 659-665 (1998).
Hihara Y, Sonoike K, Ikeuchi M. A novel gene, pmgA, specifically regulates photosystem stoichiometry in the cyanobacterium Synechocystis species PCC 6803 in response to high light. Plant Physiol. 117: 1205-1216 (1998).
Howitt CA, Cooley JW, Wiskich JT, Vermaas WF. A strain of Synechocystis sp. PCC 6803 without photosynthetic oxygen evolution and respiratory oxygen consumption: implications for the study of cyclic photosynthetic electron transport. Planta 214: 46-56 (2001).
Ihalainen JA, Klimmek F, Ganeteg U, van Stokkum IH, van Grondelle R, Jansson S, Dekker JP. Excitation energy trapping in photosystem I complexes depleted in Lhca1 and Lhca4. FEBS Lett. 579: 4787-4791 (2005).
Ihnatowicz A, Pesaresi P, Leister D. The E subunit of photosystem I is not essential for linear electron flow and photoautotrophic growth in Arabidopsis thaliana. Planta 226: 889-895 (2007).
Ihnatowicz A, Pesaresi P, Varotto C, Richly E, Schneider A, Jahns P, Salamini F, Leister D. Mutants for photosystem I subunit D of Arabidopsis thaliana: effects on photosynthesis, photosystem I stability and expression of nuclear genes for chloroplast functions. Plant J. 37: 839-852 (2004).
Im CS, Grossman AR. Identification and regulation of high light-induced genes in Chlamydomonas reinhardtii. Plant J. 30: 301-313 (2002).
Imsande J. Iron-sulfur clusters: Formation, perturbation, and physiological functions. Plant Physiol. Biochem. 37: 87-97 (1999).
Ishida S, Takabayashi A, Ishikawa N, Hano Y, Endo T, Sato F. A novel nuclear-encoded protein, NDH-dependent cyclic electron flow 5, is essential for the accumulation of chloroplast NAD(P)H dehydrogenase complexes. Plant Cell Physiol. 50: 383-393 (2009).
Ishikawa N, Takabayashi A, Ishida S, Hano Y, Endo T, Sato F. NDF6: a thylakoid protein specific to terrestrial plants is essential for activity of chloroplastic NAD(P)H dehydrogenase in Arabidopsis. Plant Cell Physiol. 49: 1066-1073 (2008).
Ivanov AG, Krol M, Sveshnikov D, Malmberg G, Gardestrom P, Hurry V, Oquist G, Huner NP. Characterization of the photosynthetic apparatus in cortical bark chlorenchyma of Scots pine. Planta 223: 1165-1177 (2006).
Ivanov AG, Krol M, Sveshnikov D, Selstam E, Sandstrom S, Koochek M, Park YI, Vasil'ev S, Bruce D, Oquist G, Huner NP. Iron deficiency in cyanobacteria causes monomerization of photosystem I trimers and reduces the capacity for state transitions and the effective absorption cross section of photosystem I in vivo. Plant Physiol. 141: 1436-1445 (2006).
Ivanov AG, Sane PV, Zeinalov Y, Malmberg G, Gardestrom P, Huner NP, Oquist G. Photosynthetic electron transport adjustments in overwintering Scots pine (Pinus sylvestris L.). Planta 213: 575-585 (2001).
Ivanov B, Asada K, Kramer DM, Edwards G. Characterization of photosynthetic electron transport in bundle sheath cells of maize. I. Ascorbate effectively stimulates cyclic electron flow around PSI. Planta 220: 572-581 (2005).
Iwai M, Takahashi Y, Minagawa J. Molecular remodeling of photosystem II during state transitions in Chlamydomonas reinhardtii. Plant Cell 20: 2177-2189 (2008).
Jansson S, Andersen B, Scheller HV. Nearest-neighbor analysis of higher-plant photosystem I holocomplex. Plant Physiol. 112: 409-420 (1996).
Jansson S, Andersson J, Kim SJ, Jackowski G. An Arabidopsis thaliana protein homologous to cyanobacterial high-light-inducible proteins. Plant Mol. Biol. 42: 345-351 (2000).
Jia H, Oguchi R, Hope AB, Barber J, Chow WS. Differential effects of severe water stress on linear and cyclic electron fluxes through photosystem I in spinach leaf discs in CO(2)-enriched air. Planta 228: 803-812 (2008).
Jiao S, Hilaire E, Paulsen AQ, Guikema JA. Brassica rapa plants adapted to microgravity with reduced photosystem I and its photochemical activity. Physiol. Plant. 122: 281-290 (2004).
Jiao S, Thornsberry JM, Elthon TE, Newton KJ. Biochemical and molecular characterization of photosystem I deficiency in the NCS6 mitochondrial mutant of maize. Plant Mol. Biol. 57: 303-313 (2005).
Joet T, Cournac L, Peltier G, Havaux M. Cyclic electron flow around photosystem I in C(3) plants. In vivo control by the redox state of chloroplasts and involvement of the NADH-dehydrogenase complex. Plant Physiol. 128: 760-769 (2002).
Joshua S, Mullineaux CW. Phycobilisome diffusion is required for light-state transitions in cyanobacteria. Plant Physiol. 135: 2112-2119 (2004).
Jun SS, Kim JM, Lee CB. A comparative study on the effect of chilling treatment in the light and in the dark on subsequent photosynthesis in cucumber. Aust. J. Plant Physiol. 28: 489-496 (2001).
Kada S, Koike H, Satoh K, Hase T, Fujita Y. Arrest of chlorophyll synthesis and differential decrease of Photosystems I and II in a cyanobacterial mutant lacking light-independent protochlorophyllide reductase. Plant Mol. Biol. 51: 225-235 (2003).
Kamruzzaman Munshi M, Kobayashi Y, Shikanai T. Identification of a novel protein, CRR7, required for the stabilization of the chloroplast NAD(P)H dehydrogenase complex in Arabidopsis. Plant J. 44: 1036-1044 (2005).
Kanervo E, Singh M, Suorsa M, Paakkarinen V, Aro E, Battchikova N, Aro EM. Expression of protein complexes and individual proteins upon transition of etioplasts to chloroplasts in pea (Pisum sativum). Plant Cell Physiol. 49: 396-410 (2008).
Karthikeyan AS, Varadarajan DK, Jain A, Held MA, Carpita NC, Raghothama KG. Phosphate starvation responses are mediated by sugar signaling in Arabidopsis. Planta 225: 907-918 (2007).
Kemp GJ, Manners DN, Clark JF, Bastin ME, Radda GK. Theoretical modelling of some spatial and temporal aspects of the mitochondrion/creatine kinase/myofibril system in muscle. Mol. Cell Biochem. 184: 249-289 (1998).
Keren N, Aurora R, Pakrasi HB. Critical roles of bacterioferritins in iron storage and proliferation of cyanobacteria. Plant Physiol. 135: 1666-1673 (2004).
Kim JH, Glick RE, Melis A. Dynamics of photosystem stoichiometry adjustment by light quality in chloroplasts. Plant Physiol. 102: 181-190 (1993).
Kim JH, Kim SJ, Cho SH, Chow WS, Lee CH. Photosystem I acceptor side limitation is a prerequisite for the reversible decrease in the maximum extent of P700 oxidation after short-term chilling in the light in four plant species with different chilling sensitivities. Physiol. Plant. 123: 100-107 (2005).
Kinoshita T, Shimazaki K, Nishimura M. Phosphorylation and dephosphorylation of guard-cell proteins from Vicia faba L. in response to light and dark. Plant Physiol. 102: 917-923 (1993).
Kleinherenbrink FA, Chiou HC, LoBrutto R, Blankenship RE. Spectroscopic evidence for the presence of an iron-sulfur center similar to Fx of Photosystem I in Heliobacillus mobilis. Photosynth. Res. 41: 115-123 (1994).
Kloft N, Forchhammer K. Signal transduction protein PII phosphatase PphA is required for light-dependent control of nitrate utilization in synechocystis sp. strain PCC 6803. J. Bacteriol. 187: 6683-6690 (2005).
Kondo K, Ochiai Y, Katayama M, Ikeuchi M. The membrane-associated CpcG2-phycobilisome in Synechocystis: a new photosystem I antenna. Plant Physiol. 144: 1200-1210 (2007).
Kotakis C, Petropoulou Y, Stamatakis K, Yiotis C, Manetas Y. Evidence for active cyclic electron flow in twig chlorenchyma in the presence of an extremely deficient linear electron transport activity. Planta 225: 245-253 (2006).
Koziol AG, Borza T, Ishida K, Keeling P, Lee RW, Durnford DG. Tracing the evolution of the light-harvesting antennae in chlorophyll a/b-containing organisms. Plant Physiol. 143: 1802-1816 (2007).
Krause GH, Grube E, Virgo A, Winter K. Sudden exposure to solar UV-B radiation reduces net CO2 uptake and photosystem I efficiency in shade-acclimated tropical tree seedlings. Plant Physiol. 131: 745-752 (2003).
Kudoh H, Sonoike K. Irreversible damage to photosystem I by chilling in the light: cause of the degradation of chlorophyll after returning to normal growth temperature. Planta 215: 541-548 (2002).
Kumazaki S, Abiko K, Ikegami I, Iwaki M, Itoh S. Energy equilibration and primary charge separation in chlorophyll d-based photosystem I reaction center isolated from Acaryochloris marina. FEBS Lett. 530: 153-157 (2002).
Kurisu G, Zhang H, Smith JL, Cramer WA. Structure of the cytochrome b6f complex of oxygenic photosynthesis: tuning the cavity. Science 302: 1009-1014 (2003).
Laisk A, Eichelmann H, Oja V. C3 photosynthesis in silico. Photosynth. Res. 90: 45-66 (2006).
Laisk A, Eichelmann H, Oja V, Rasulov B, Padu E, Bichele I, Pettai H, Kull O. Adjustment of leaf photosynthesis to shade in a natural canopy: rate parameters. Plant Cell Environ. 28: 375-388 (2005).
Laisk A, Eichelmann H, Oja V, Talts E, Scheibe R. Rates and roles of cyclic and alternative electron flow in potato leaves. Plant Cell Physiol. 48: 1575-1588 (2007).
Laisk A, Oja V, Rasulov B, Ramma H, Eichelmann H, Kasparova I, Pettai H, Padu E, Vapaavuori E. A computer-operated routine of gas exchange and optical measurements to diagnose photosynthetic apparatus in leaves. Plant Cell Environ. 25: 923-943 (2002).
Laus MN, Soccio M, Trono D, Cattivelli L, Pastore D. Plant inner membrane anion channel (PIMAC) function in plant mitochondria. Plant Cell Physiol. 49: 1039-1055 (2008).
Lee AI, Thornber JP. Analysis of the pigment stoichiometry of pigment-protein complexes from barley (Hordeum vulgare). The xanthophyll cycle intermediates occur mainly in the light-harvesting complexes of photosystem I and photosystem II. Plant Physiol. 107: 565-574 (1995).
Leitner-Dagan Y, Ovadis M, Zuker A, Shklarman E, Ohad I, Tzfira T, Vainstein A. CHRD, a plant member of the evolutionarily conserved YjgF family, influences photosynthesis and chromoplastogenesis. Planta 225: 89-102 (2006).
Lezhneva L, Amann K, Meurer J. The universally conserved HCF101 protein is involved in assembly of [4Fe-4S]-cluster-containing complexes in Arabidopsis thaliana chloroplasts. Plant J. 37: 174-185 (2004).
Lezhneva L, Meurer J. The nuclear factor HCF145 affects chloroplast psaA-psaB-rps14 transcript abundance in Arabidopsis thaliana. Plant J. 38: 740-753 (2004).
Li D, Xie J, Zhao J, Xia A, Li D, Gong Y. Light-induced excitation energy redistribution in Spirulina platensis cells: "spillover" or "mobile PBSs"? Biochim. Biophys. Acta 1608: 114-121 (2004).
Liang X, Qiao D, Huang M, Yi X, Bai L, Xu H, Wei L, Zeng J, Cao Y. Identification of a gene encoding the light-harvesting chlorophyll a/b proteins of photosystem I in green alga Dunaliella salina. DNA Seq. 19: 137-145 (2008).
Lin AP, Wang GC, Yang F, Pan GH. Photosynthetic parameters of sexually different parts of Porphyra katadai var. hemiphylla (Bangiales, Rhodophyta) during dehydration and re-hydration. Planta 229: 803-10 (2009).
Lohmann A, Schottler MA, Brehelin C, Kessler F, Bock R, Cahoon EB, Dormann P. Deficiency in phylloquinone (vitamin K1) methylation affects prenyl quinone distribution, photosystem I abundance and anthocyanin accumulation in the arabidopsis AtmenG mutant. J. Biol. Chem. 281: 40461-40472 (2006).
Long TA, Okegawa Y, Shikanai T, Schmidt GW, Covert SF. Conserved role of PROTON GRADIENT REGULATION 5 in the regulation of PSI cyclic electron transport. Planta 228: 907-918 (2008).
Lunde C, Zygadlo A, Simonsen HT, Nielsen PL, Blennow A, Haldrup A. Sulfur starvation in rice: the effect on photosynthesis, carbohydrate metabolism, and oxidative stress protective pathways. Physiol. Plant. 134: 508-521 (2008).
Ma WM, Mi HL. Expression and activity of type 1 NAD(P)H dehydrogenase at different growth phases of the cyanobacterium, Synechocystis PCC 6803. Physiol. Plant. 125: 135-140 (2005).
Majeran W, Zybailov B, Ytterberg AJ, Dunsmore J, Sun Q, van Wijk KJ. Consequences of C4 differentiation for chloroplast membrane proteomes in maize mesophyll and bundle sheath cells. Mol. Cell. Proteomics 7: 1609-1638 (2008).
Makino A, Miyake C, Yokota A. Physiological functions of the water-water cycle (Mehler reaction) and the cyclic electron flow around PSI in rice leaves. Plant Cell Physiol. 43: 1017-1026 (2002).
Masuda T, Polle JE, Melis A. Biosynthesis and distribution of chlorophyll among the photosystems during recovery of the green alga Dunaliella salina from irradiance stress. Plant Physiol. 128: 603-614 (2002).
Mayr S, Cochard H. A new method for vulnerability analysis of small xylem areas reveals that compression wood of Norway spruce has lower hydraulic safety than opposite wood. Plant Cell Environ. 26: 1365-1371 (2003).
Mayr S, Rothart B, Damon B. Hydraulic efficiency and safety of leader shoots and twigs in Norway spruce growing at the alpine timberline. J. Exp. Bot. 54: 2563-2568 (2003).
Melis A, Zhang L, Forestier M, Ghirardi ML, Seibert M. Sustained photobiological hydrogen gas production upon reversible inactivation of oxygen evolution in the green alga Chlamydomonas reinhardtii. Plant Physiol. 122: 127-136 (2000).
Michel KP, Pistorius EK. Adaptation of the photosynthetic electron transport chain in cyanobacteria to iron deficiency: The function of IdiA and IsiA. Physiol. Plant. 120: 36-50 (2004).
Mimuro M, Tsuchiya T, Inoue H, Sakuragi Y, Itoh Y, Gotoh T, Miyashita H, Bryant DA, Kobayashi M. The secondary electron acceptor of photosystem I in Gloeobacter violaceus PCC 7421 is menaquinone-4 that is synthesized by a unique but unknown pathway. FEBS Lett. 579: 3493-3496 (2005).
Miskell JA, Parmenter G, Eaton-Rye JJ. Decreased Hill reaction rates and slow turnover of transitory starch in the obligate shade plant Panax quinquefolius L. (American ginseng). Planta 215: 969-979 (2002).
Moriana A, Villalobos FJ, Fereres E. Stomatal and photosynthetic responses of olive (Olea europaea L.) leaves to water deficits. Plant Cell Environ. 25: 395-405 (2002).
Moseley JL, Page MD, Alder NP, Eriksson M, Quinn J, Soto F, Theg SM, Hippler M, Merchant S. Reciprocal expression of two candidate di-iron enzymes affecting photosystem I and light-harvesting complex accumulation. Plant Cell 14: 673-688 (2002).
Motohashi K, Hisabori T. HCF164 receives the reducing equivalents from stroma thioredoxin across thylakoid membrane and mediates reduction of target proteins in thylakoid lumen. J. Biol. Chem. 281: 35039-35047 (2006).
Mullineaux CW, Emlyn-Jones D. State transitions: an example of acclimation to low-light stress. J. Exp. Bot. 56: 389-393 (2005).
Munekage Y, Hashimoto M, Miyake C, Tomizawa K, Endo T, Tasaka M, Shikanai T. Cyclic electron flow around photosystem I is essential for photosynthesis. Nature 429: 579-582 (2004).
Munne-Bosch S, Shikanai T, Asada K. Enhanced ferredoxin-dependent cyclic electron flow around photosystem I and alpha-tocopherol quinone accumulation in water-stressed ndhB-inactivated tobacco mutants. Planta 222: 502-511 (2005).
Munshi MK, Kobayashi Y, Shikanai T. Chlororespiratory reduction 6 is a novel factor required for accumulation of the chloroplast NAD(P)H dehydrogenase complex in Arabidopsis. Plant Physiol. 141: 737-744 (2006).
Muramatsu M, Hihara Y. Transcriptional regulation of genes encoding subunits of photosystem I during acclimation to high-light conditions in Synechocystis sp. PCC 6803. Planta 216: 446-453 (2003).
Muraoka R, Okuda K, Kobayashi Y, Shikanai T. A eukaryotic factor required for accumulation of the chloroplast NAD(P)H dehydrogenase complex in Arabidopsis. Plant Physiol. 142: 1683-1689 (2006).
Murray JW, Duncan J, Barber J. CP43-like chlorophyll binding proteins: structural and evolutionary implications. Trends Plant Sci. 11: 152-158 (2006).
Muthuchelian K, Meenakshi V, Nedunchezhian N. Protective effect of triacontanol against acidic mists in Samanea saman (Jacq.) Merrill seedlings: Differential responses in growth, (CO2)-C-14 fixation, ribulose-1,5-bisphosphate carboxylase, and electron transport activities. Photosynthetica 41: 335-341 (2003).
Nabe H, Funabiki R, Kashino Y, Koike H, Satoh K. Responses to desiccation stress in bryophytes and an important role of dithiothreitol-insensitive non-photochemical quenching against photoinhibition in dehydrated states. Plant Cell Physiol. 48: 1548-1557 (2007).
Naidoo G. Factors contributing to dwarfing in the mangrove Avicennia marina. Ann. Bot. (Lond.) 97: 1095-1101 (2006).
Nakamura A, Akai M, Yoshida E, Taki T, Watanabe T. Reversed-phase HPLC determination of chlorophyll a' and phylloquinone in Photosystem I of oxygenic photosynthetic organisms. Universal existence of one chlorophyll a' molecule in Photosystem I. Eur. J. Biochem. 270: 2446-2458 (2003).
Navarro JA, Duran RV, De la Rosa MA, Hervas M. Respiratory cytochrome c oxidase can be efficiently reduced by the photosynthetic redox proteins cytochrome c6 and plastocyanin in cyanobacteria. FEBS Lett. 579: 3565-3568 (2005).
Nelson N, Yocum CF. Structure and function of photosystems I and II. Annu. Rev. Plant Biol. 57: 521-565 (2006).
Nomura M, Hibino T, Takabe T, Sugiyama T, Yokota A, Miyake H, Takabe T. Transgenically produced glycinebetaine protects ribulose 1,5-bisphosphate carboxylase/oxygenase from inactivation in Synechococcus sp. PCC7942 under salt stress. Plant Cell Physiol. 39: 425-432 (1998).
Nugent JH, Evans MC. Structure of biological solar energy converters - further revelations. Trends Plant Sci. 9: 368-370 (2004).
Nunes C, Han J, Monkhouse DC, Suryanarayanan R. Preformulation studies to meet the challenges in the manufacture of betaine solid dosage form. J. Pharm. Sci. 93: 38-47 (2004).
Ogle K, Reynolds JF. Desert dogma revisited: coupling of stomatal conductance and photosynthesis in the desert shrub, Larrea tridentata. Plant Cell Environ. 25: 909-921 (2002).
Ohtsuka M, Oyabu J, Kashino Y, Satoh K, Koike H. Inactivation of ycf33 results in an altered cyclic electron transport pathway around photosystem I in Synechocystis sp. PCC6803. Plant Cell Physiol. 45: 1243-12451 (2004).
Okada K, Satoh K, Katoh S. Chloramphenicol is an inhibitor of photosynthesis. FEBS Lett. 295: 155-158 (1991).
Okegawa Y, Kagawa Y, Kobayashi Y, Shikanai T. Characterization of factors affecting the activity of photosystem I cyclic electron transport in chloroplasts. Plant Cell Physiol. 49: 825-834 (2008).
Okegawa Y, Long TA, Iwano M, Takayama S, Kobayashi Y, Covert SF, Shikanai T. A balanced PGR5 level is required for chloroplast development and optimum operation of cyclic electron transport around photosystem I. Plant Cell Physiol. 48: 1462-1471 (2007).
Oquist G, Huner NPA. Photosynthesis of overwintering evergreen plants. Annu. Rev. Plant Biol. 54: 329-355 (2003).
Pasini L, Bruschini S, Bertoli A, Mazza R, Fracheboud Y, Marocco A. Photosynthetic performance of cold-sensitive mutants of maize at low temperature. Physiol. Plant. 124: 362-370 (2005).
Pastenes C, Horton P. Effect of high temperature on photosynthesis in beans. II. CO2 assimilation and metabolite contents. Plant Physiol. 112: 1253-1260 (1996).
Peltier G, Cournac L. Chlororespiration. Annu. Rev. Plant Biol. 53: 523-550 (2002).
Pesaresi P, Lunde C, Jahns P, Tarantino D, Meurer J, Varotto C, Hirtz RD, Soave C, Scheller HV, Salamini F, Leister D. A stable LHCII-PSI aggregate and suppression of photosynthetic state transitions in the psae1-1 mutant of Arabidopsis thaliana. Planta 215: 940-948 (2002).
Petit AN, Wojnarowiez G, Panon ML, Baillieul F, Clement C, Fontaine F, Vaillant-Gaveau N. Botryticides affect grapevine leaf photosynthesis without inducing defense mechanisms. Planta 229: 497-506 (2009).
Pfundel E, Nagel E, Meister A. Analyzing the light energy distribution in the photosynthetic apparatus of C4 plants using highly purified mesophyll and bundle-sheath thylakoids. Plant Physiol. 112: 1055-1070 (1996).
Pieters AJ, Tezara W, Herrera A. Operation of the xanthophyll cycle and degradation of D1 protein in the inducible CAM plant, Talinum triangulare, under water deficit. Ann. Bot. (Lond.) 92: 393-399 (2003).
Polle JE, Benemann JR, Tanaka A, Melis A. Photosynthetic apparatus organization and function in the wild type and a chlorophyll b-less mutant of Chlamydomonas reinhardtii. Dependence on carbon source. Planta 211: 335-344 (2000).
Polle JE, Kanakagiri SD, Melis A. tla1, a DNA insertional transformant of the green alga Chlamydomonas reinhardtii with a truncated light-harvesting chlorophyll antenna size. Planta 217: 49-59 (2003).
Popova LG, Shumkova GA, Andreev IM, Balnokin YV. Functional identification of electrogenic Na+-translocating ATPase in the plasma membrane of the halotolerant microalga Dunaliella maritima. FEBS Lett. 579: 5002-5006 (2005).
Powles JE, Buckley TN, Nicotra AB, Farquhar GD. Dynamics of stomatal water relations following leaf excision. Plant Cell Environ. 29: 981-992 (2006).
Purta E, Kaminska KH, Kasprzak JM, Bujnicki JM, Douthwaite S. YbeA is the m3Psi methyltransferase RlmH that targets nucleotide 1915 in 23S rRNA. RNA 14: 2234-2244 (2008).
Rhodes D, Nadolska-Orczyk A. Plant stress physiology. ENCYCLOPEDIA OF LIFE SCIENCES Nature Publishing Group www.els.net (2001).
Rochaix JD. Chlamydomonas, a model system for studying the assembly and dynamics of photosynthetic complexes. FEBS Lett. 529: 34-38 (2002).
Rosso D, Ivanov AG, Fu A, Geisler-Lee J, Hendrickson L, Geisler M, Stewart G, Krol M, Hurry V, Rodermel SR, Maxwell DP, Huner NP. IMMUTANS does not act as a stress-induced safety valve in the protection of the photosynthetic apparatus of Arabidopsis during steady-state photosynthesis. Plant Physiol. 142: 574-585 (2006).
Ruffle SV, Wang J, Johnston HG, Gustafson TL, Hutchison RS, Minagawa J, Crofts A, Sayre RT. Photosystem II peripheral accessory chlorophyll mutants in Chlamydomonas reinhardtii. Biochemical characterization and sensitivity to photo-inhibition. Plant Physiol. 127: 633-644 (2001).
Rumeau D, Peltier G, Cournac L. Chlororespiration and cyclic electron flow around PSI during photosynthesis and plant stress response. Plant Cell Environ. 30: 1041-1051 (2007).
Rutherford AW, Faller P. The heart of photosynthesis in glorious 3D. Trends Biochem. Sci. 26: 341-344 (2001).
Ruuska SA, Andrews TJ, Badger MR, Price GD, von Caemmerer S. The role of chloroplast electron transport and metabolites in modulating Rubisco activity in tobacco. Insights from transgenic plants with reduced amounts of cytochrome b/f complex or glyceraldehyde 3-phosphate dehydrogenase. Plant Physiol. 122: 491-504 (2000).
Saito T, Naiola BP, Terashima I. Conservative decrease in water potential in existing leaves during new leaf expansion in temperate and tropical evergreen Quercus species. Ann. Bot. (Lond.) 100: 1229-1238 (2007).
Samuilov VD, Fedorenko TA. Lag phase of CO2-dependent O2 evolution by illuminated Anabaena variabilis cells. Biochemistry (Mosc.) 64: 610-619 (1999).
Satoh S, Tanaka A. Chlorophyll b inhibits the formation of photosystem I trimer in Synechocystis sp PCC6803. FEBS Lett. 528: 235-240 (2002).
Sauer J, Schreiber U, Schmid R, Volker U, Forchhammer K. Nitrogen starvation-induced chlorosis in Synechococcus PCC 7942. Low-level photosynthesis as a mechanism of long-term survival. Plant Physiol. 126: 233-243 (2001).
Savitch LV, Barker-Astrom J, Ivanov AG, Hurry V, Oquist G, Huner NP, Gardestrom P. Cold acclimation of Arabidopsis thaliana results in incomplete recovery of photosynthetic capacity, associated with an increased reduction of the chloroplast stroma. Planta 214: 295-303 (2001).
Schoefs B, Franck F. Chlorophyll synthesis in dark-grown pine primary needles. Plant Physiol. 118: 1159-1168 (1998).
Schottler MA, Kirchhoff H, Weis E. The role of plastocyanin in the adjustment of the photosynthetic electron transport to the carbon metabolism in tobacco. Plant Physiol. 136: 4265-4274 (2004).
Schrader SM, Wise RR, Wacholtz WF, Ort DR, Sharkey TD. Thylakoid membrane responses to moderately high leaf temperature in Pima cotton. Plant Cell Environ. 27: 725-735 (2004).
Schwenkert S, Legen J, Takami T, Shikanai T, Herrmann RG, Meurer J. Role of the low-molecular-weight subunits PetL, PetG, and PetN in assembly, stability, and dimerization of the cytochrome b6f complex in tobacco. Plant Physiol. 144: 1924-1935 (2007).
Sehnke PC, Henry R, Cline K, Ferl RJ. Interaction of a plant 14-3-3 protein with the signal peptide of a thylakoid-targeted chloroplast precursor protein and the presence of 14-3-3 isoforms in the chloroplast stroma. Plant Physiol. 122: 235-242 (2000).
Setif P, Hirasawa M, Cassan N, Lagoutte B, Tripathy J, Knaff D. New insights into the catalytic cycle of plant nitrite reductase. Electron transfer kinetics and charge storage. Biochemistry 48: 2828-2838 (2009).
Sherameti I, Nakamura M, Yamamoto YY, Pfannschmidt T, Obokata J, Oelmuller R. Polyribosome loading of spinach mRNAs for photosystem I subunits is controlled by photosynthetic electron transport. Plant J. 32: 631-639 (2002).
Sherameti I, Sopory SK, Trebicka A, Pfannschmidt T, Oelmuller R. Photosynthetic electron transport determines nitrate reductase gene expression and activity in higher plants. J. Biol. Chem. 277: 46594-46600 (2002).
Sherman DM, Troyan TA, Sherman LA. Localization of membrane proteins in the cyanobacterium Synechococcus sp. PCC7942. Radial asymmetry in the photosynthetic complexes. Plant Physiol. 106: 251-262 (1994).
Shibata M, Tsuyama M, Takami T, Shimizu H, Kobayashi Y. Accumulation of menaquinones with incompletely reduced side chains and loss of alpha-tocopherol in rice mutants with alternations in the chlorophyll moiety. J. Exp. Bot. 55: 1989-1996 (2004).
Shikanai T. Cyclic electron transport around photosystem I: genetic approaches. Annu. Rev. Plant Biol. 58: 199-217 (2007).
Shimada H, Ohno R, Shibata M, Ikegami I, Onai K, Ohto MA, Takamiya K. Inactivation and deficiency of core proteins of photosystems I and II caused by genetical phylloquinone and plastoquinone deficiency but retained lamellar structure in a T-DNA mutant of Arabidopsis. Plant J. 41: 627-637 (2005).
Shimizu H, Peng L, Myouga F, Motohashi R, Shinozaki K, Shikanai T. CRR23/NdhL is a subunit of the chloroplast NAD(P)H dehydrogenase complex in Arabidopsis. Plant Cell Physiol. 49: 835-842 (2008).
Sippola K, Aro EM. Thiol redox state regulates expression of psbA genes in Synechococcus sp. PCC 7942. Plant Mol. Biol. 41: 425-433 (1999).
Sjogren LL, MacDonald TM, Sutinen S, Clarke AK. Inactivation of the clpC1 gene encoding a chloroplast Hsp100 molecular chaperone causes growth retardation, leaf chlorosis, lower photosynthetic activity, and a specific reduction in photosystem content. Plant Physiol. 136: 4114-4126 (2004).
Smirnoff N. Ascorbate biosynthesis and function in photoprotection. Philos. Trans. R. Soc. Lond. B. Biol. Sci. 355: 1455-1464 (2000).
Sommer F, Hippler M, Biehler K, Fischer N, Rochaix JD. Comparative analysis of photosensitivity in photosystem I donor and acceptor side mutants of Chlamydomonas reinhardtii. Plant Cell Environ. 26: 1881-1892 (2003).
Sreevidya VS, Hernandez-Oane RJ, So RB, Sullia SB, Stacey G, Ladha JK, Reddy PM. Expression of the legume symbiotic lectin genes psl and gs52 promotes rhizobial colonization of roots in rice. Plant Sci. 169: 726-736 (2005).
Steinberg SL, Henninger DL. Response of the water status of soybean to changes in soil water potentials controlled by the water pressure in microporous tubes. Plant Cell Environ. 20: 1506-1516 (1997).
Stepien P, Johnson GN. Contrasting responses of photosynthesis to salt stress in the glycophyte Arabidopsis and the halophyte thellungiella: role of the plastid terminal oxidase as an alternative electron sink. Plant Physiol. 149: 1154-1165 (2009).
Stockel J, Bennewitz S, Hein P, Oelmuller R. The evolutionarily conserved tetratrico peptide repeat protein pale yellow green7 is required for photosystem I accumulation in Arabidopsis and copurifies with the complex. Plant Physiol. 141: 870-878 (2006).
Strom AR. Osmoregulation in the model organism Escherichia coli: genes governing the synthesis of glycine betaine and trehalose and their use in metabolic engineering of stress tolerance. J. Biosci. 23: 437-445 (1998).
Strzepek RF, Harrison PJ. Photosynthetic architecture differs in coastal and oceanic diatoms. Nature 431: 689-692 (2004).
Stutte GW, Monje O, Goins GD, Tripathy BC. Microgravity effects on thylakoid, single leaf, and whole canopy photosynthesis of dwarf wheat. Planta 223: 46-56 (2005).
Subramanyam R, Jolley C, Brune DC, Fromme P, Webber AN. Characterization of a novel photosystem I-LHCI supercomplex isolated from Chlamydomonas reinhardtii under anaerobic (State II) conditions. FEBS Lett. 580: 233-238 (2006).
Summar ML. Molecular genetic research into carbamoyl-phosphate synthase I: molecular defects and linkage markers. J. Inherit. Metab. Dis. 2: 30-39 (1998).
Suzuki K, Nagasuga K, Okada M. The chilling injury induced by high root temperature in the leaves of rice seedlings. Plant Cell Physiol. 49: 433-442 (2008).
Takabayashi A, Ishikawa N, Obayashi T, Ishida S, Obokata J, Endo T, Sato F. Three novel subunits of Arabidopsis chloroplastic NAD(P)H dehydrogenase identified by bioinformatic and reverse genetic approaches. Plant J. 57: 207-219 (2009).
Takahashi H, Iwai M, Takahashi Y, Minagawa J. Identification of the mobile light-harvesting complex II polypeptides for state transitions in Chlamydomonas reinhardtii. Proc. Natl. Acad. Sci. U.S.A. 103: 477-482 (2006).
Takahashi S, Milward SE, Fan DY, Chow WS, Badger MR. How does cyclic electron flow alleviate photoinhibition in Arabidopsis? Plant Physiol. 149: 1560-1567 (2009).
Takaichi S, Maoka T, Yamada M, Matsuura K, Haikawa Y, Hanada S. Absence of carotenes and presence of a tertiary methoxy group in a carotenoid from a thermophilic filamentous photosynthetic bacterium Roseiflexus castenholzii. Plant Cell Physiol. 42: 1355-1362 (2001).
Tang AC, Boyer JS. Root pressurization affects growth-induced water potentials and growth in dehydrated maize leaves. J. Exp. Bot. 54: 2479-2488 (2003).
Teramoto H, Nakamori A, Minagawa J, Ono TA. Light-intensity-dependent expression of Lhc gene family encoding light-harvesting chlorophyll-a/b proteins of photosystem II in Chlamydomonas reinhardtii. Plant Physiol. 130: 325-333 (2002).
Tezara W, Martinez D, Rengifo E, Herrera A. Photosynthetic responses of the tropical spiny shrub Lycium nodosum (Solanaceae) to drought, soil salinity and saline spray. Ann. Bot. (Lond.) 92: 757-765 (2003).
Tikkanen M, Piippo M, Suorsa M, Sirpio S, Mulo P, Vainonen J, Vener AV, Allahverdiyeva Y, Aro EM. State transitions revisited - a buffering system for dynamic low light acclimation of Arabidopsis. Plant Mol. Biol. 62: 779-793 (2006).
Timperio AM, D'Amici GM, Barta C, Loreto F, Zolla L. Proteomics, pigment composition, and organization of thylakoid membranes in iron-deficient spinach leaves. J. Exp. Bot. 58: 3695-3710 (2007).
Ting CS, Owens TG. Photochemical and nonphotochemical fluorescence quenching processes in the diatom Phaeodactylum tricornutum. Plant Physiol. 101: 1323-1330 (1993).
Tjus SE, Moller BL, Scheller HV. Photosystem I is an early target of photoinhibition in barley illuminated at chilling temperatures. Plant Physiol. 116: 755-764 (1998).
Tjus SE, Scheller HV, Andersson B, Moller BL. Active oxygen produced during selective excitation of photosystem I is damaging not only to photosystem I, but also to photosystem II. Plant Physiol. 125: 2007-2015 (2001).
Tokutsu R, Teramoto H, Takahashi Y, Ono TA, Minagawa J. The light-harvesting complex of photosystem I in Chlamydomonas reinhardtii: protein composition, gene structures and phylogenic implications. Plant Cell Physiol. 45: 138-145 (2004).
Toth SZ, Puthur JT, Nagy V, Garab G. Experimental evidence for ascorbate-dependent electron transport in leaves with inactive oxygen-evolving complexes. Plant Physiol. 149: 1568-1578 (2009).
Touraine B, Boutin JP, Marion-Poll A, Briat JF, Peltier G, Lobreaux S. Nfu2: a scaffold protein required for [4Fe-4S] and ferredoxin iron-sulphur cluster assembly in Arabidopsis chloroplasts. Plant J. 40: 101-111 (2004).
Tozawa Y, Teraishi M, Sasaki T, Sonoike K, Nishiyama Y, Itaya M, Miyao A, Hirochika H. The plastid sigma factor SIG1 maintains photosystem I activity via regulated expression of the psaA operon in rice chloroplasts. Plant J. 52: 124-132 (2007).
Trinkunas G, Holzwarth AR. Kinetic modeling of exciton migration in photosynthetic systems. 3. Application of genetic algorithms to simulations of excitation dynamics in three-dimensional photosystem I core antenna/reaction center complexes. Biophys. J. 71: 351-364 (1996).
Trost JT, Brune DC, Blankenship RE. Protein sequences and redox titrations indicate that the electron acceptors in reaction centers from heliobacteria are similar to Photosystem I. Photosynth. Res. 32: 11-22 (1992).
Umate P, Fellerer C, Schwenkert S, Zoryan M, Eichacker LA, Sadanandam A, Ohad I, Herrmann RG, Meurer J. Impact of PsbTc on forward and back electron flow, assembly, and phosphorylation patterns of photosystem II in tobacco. Plant Physiol. 148: 1342-1353 (2008).
Varotto C, Pesaresi P, Jahns P, Lessnick A, Tizzano M, Schiavon F, Salamini F, Leister D. Single and double knockouts of the genes for photosystem I subunits G, K, and H of Arabidopsis. Effects on photosystem I composition, photosynthetic electron flow, and state transitions. Plant Physiol. 129: 616-624 (2002).
Varsano T, Wolf SG, Pick U. A chlorophyll a/b-binding protein homolog that is induced by iron deficiency is associated with enlarged photosystem I units in the eucaryotic alga Dunaliella salina. J. Biol. Chem. 281: 10305-10315 (2006).
Vasil'ev S, Bruce D. Optimization and evolution of light harvesting in photosynthesis: the role of antenna chlorophyll conserved between photosystem II and photosystem I. Plant Cell 16: 3059-3068 (2004).
Verhoeven AS, Adams III WW, Demmig-Adams B, Croce R, Bassi R. Xanthophyll cycle pigment localization and dynamics during exposure to low temperatures and light stress in Vinca major. Plant Physiol. 120: 727-738 (1999).
Vermaas WF. Evolution of heliobacteria: implications for photosynthetic reaction center complexes. Photosynth. Res. 41: 285-294 (1994).
Wagner R, Dietzel L, Brautigam K, Fischer W, Pfannschmidt T. The long-term response to fluctuating light quality is an important and distinct light acclimation mechanism that supports survival of Arabidopsis thaliana under low light conditions. Planta 228: 573-587 (2008).
Walters RG, Horton P. Acclimation of Arabidopsis thaliana to the light environment: changes in photosynthetic function. Planta 197: 306-312 (1995).
Walters RG, Horton P. Acclimation of Arabidopsis thaliana to the light environment: regulation of chloroplast composition. Planta 197: 475-481 (1995).
Wang C, Ying S, Huang H, Li K, Wu P, Shou H. Involvement of OsSPX1 in phosphate homeostasis in rice. Plant J. 57: 895-904 (2009).
Wang P, Duan W, Takabayashi A, Endo T, Shikanai T, Ye JY, Mi H. Chloroplastic NAD(P)H dehydrogenase in tobacco leaves functions in alleviation of oxidative damage caused by temperature stress. Plant Physiol. 141: 465-474 (2006).
Wang Q, Jantaro S, Lu B, Majeed W, Bailey M, He Q. The high light-inducible polypeptides (HLIP) stabilize trimeric photosystem I complex under high light conditions in Synechocystis PCC 6803. Plant Physiol. 147: 1239-1250 (2008).
Wang YM, Meng YL, Ishikawa H, Hibino T, Tanaka Y, Nii N, Takabe T. Photosynthetic adaptation to salt stress in three-color leaves of a C-4 plant Amaranthus tricolor. Plant Cell Physiol. 40: 668-674 (1999).
Weigel M, Pesaresi P, Leister D. Tracking the function of the cytochrome c6-like protein in higher plants. Trends Plant Sci. 8: 513-517 (2003).
Wilde A, Hartel H, Hubschmann T, Hoffmann P, Shestakov SV, Borner T. Inactivation of a Synechocystis sp strain PCC 6803 gene with homology to conserved chloroplast open reading frame 184 increases the photosystem II-to-photosystem I ratio. Plant Cell 7: 649-658 (1995).
Wilson A, Boulay C, Wilde A, Kerfeld CA, Kirilovsky D. Light-induced energy dissipation in iron-starved cyanobacteria: roles of OCP and IsiA proteins. Plant Cell 19: 656-672 (2007).
Wu Y, Sharp RE, Durachko DM, Cosgrove DJ. Growth maintenance of the maize primary root at low water potentials involves increases in cell-wall extension properties, expansin activity, and wall susceptibility to expansins. Plant Physiol. 111: 765-772 (1996).
Xu D, Liu X, Zhao J, Zhao J. FesM, a membrane iron-sulfur protein, is required for cyclic electron flow around photosystem I and photoheterotrophic growth of the cyanobacterium Synechococcus sp. PCC 7002. Plant Physiol. 138: 1586-1595 (2005).
Xu Q, Belcastro MP, Villa ST, Dinkins RD, Clarke SG, Downie AB. A second protein L-isoaspartyl methyltransferase gene in Arabidopsis produces two transcripts whose products are sequestered in the nucleus. Plant Physiol. 136: 2652-2664 (2004).
Xu Q, Chitnis PR. Organization of photosystem I polypeptides. Identification of PsaB domains that may interact with PsaD. Plant Physiol. 108: 1067-1075 (1995).
Xu Q, Guikema JA, Chitnis PR. Identification of surface-exposed domains on the reducing side of photosystem I. Plant Physiol. 106: 617-624 (1994).
Yabe T, Morimoto K, Kikuchi S, Nishio K, Terashima I, Nakai M. The Arabidopsis chloroplastic NifU-like protein CnfU, which can act as an iron-sulfur cluster scaffold protein, is required for biogenesis of ferredoxin and photosystem I. Plant Cell 16: 993-1007 (2004).
Yamasaki T, Yamakawa T, Yamane Y, Koike H, Satoh K, Katoh S. Temperature acclimation of photosynthesis and related changes in photosystem II electron transport in winter wheat. Plant Physiol. 128: 1087-1097 (2002).
Yamori W, Noguchi K, Kashino Y, Terashima I. The role of electron transport in determining the temperature dependence of the photosynthetic rate in spinach leaves grown at contrasting temperatures. Plant Cell Physiol. 49: 583-591 (2008).
Yu F, Liu X, Alsheikh M, Park S, Rodermel S. Mutations in SUPPRESSOR OF VARIEGATION1, a factor required for normal chloroplast translation, suppress var2-mediated leaf variegation in Arabidopsis. Plant Cell 20: 1786-1804 (2008).
Yu L, Zhao J, Muhlenhoff U, Bryant DA, Golbeck JH. PsaE is required for in vivo cyclic electron flow around photosystem I in the cyanobacterium Synechococcus sp. PCC 7002. Plant Physiol. 103: 171-180 (1993).
Zak E, Pakrasi HB. The BtpA protein stabilizes the reaction center proteins of photosystem I in the cyanobacterium Synechocystis sp. PCC 6803 at low temperature. Plant Physiol. 123: 215-222 (2000).
Zhang D, Arevalo-Gardini E, Mischke S, Zuniga-Cernades L, Barreto-Chavez A, Aguila JA. Genetic diversity and structure of managed and semi-natural populations of cocoa (Theobroma cacao) in the Huallaga and Ucayali valleys of Peru. Ann. Bot. (Lond.) 98: 647-655 (2006).
Zhang H, Goodman HM, Jansson S. Antisense inhibition of the photosystem I antenna protein Lhca4 in Arabidopsis thaliana. Plant Physiol. 115: 1525-1531 (1997).
Zhang L, Happe T, Melis A. Biochemical and morphological characterization of sulfur-deprived and H2-producing Chlamydomonas reinhardtii (green alga). Planta 214: 552-561 (2002).
Zolla L, Rinalducci S, Timperio AM, Huber CG. Proteomics of light-harvesting proteins in different plant species. Analysis and comparison by liquid chromatography-electrospray ionization mass spectrometry. Photosystem I. Plant Physiol. 130: 1938-1950 (2002).
Number of references = 287
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