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HORT640 - Metabolic Plant Physiology
References, floral scent
Adler LS, Irwin RE. Comparison of pollen transfer dynamics by multiple floral visitors: experiments with pollen and fluorescent dye. Ann. Bot. (Lond.) 97: 141-150 (2006).
Andersson S, Dobson HE. Behavioral foraging responses by the butterfly Heliconius melpomene to Lantana camara floral scent. J. Chem. Ecol. 29: 2303-2318 (2003).
Andersson S, Dobson HE. Antennal responses to floral scents in the butterfly Heliconius melpomene. J. Chem. Ecol. 29: 2319-2330 (2003).
Arenas A, Fernandez VM, Farina WM. Floral odor learning within the hive affects honeybees' foraging decisions. Naturwissenschaften 94: 218-222 (2007).
Azuma H, Toyota M, Asakawa Y, Takaso T, Tobe H. Floral scent chemistry of mangrove plants. J. Plant Res. 115: 47-53 (2002).
Bae HH, Herman E, Bailey B, Bae HJ, Sicher R. Exogenous trehalose alters Arabidopsis transcripts involved in cell wall modification, abiotic stress, nitrogen metabolism, and plant defense. Physiol. Plant. 125: 114-126 (2005).
Barkman TJ. Evidence for positive selection on the floral scent gene isoeugenol-O-methyltransferase. Mol. Biol. Evol. 20: 168-172 (2003).
Barkman TJ, Martins TR, Sutton E, Stout JT. Positive selection for single amino acid change promotes substrate discrimination of a plant volatile-producing enzyme. Mol. Biol. Evol. 24: 1320-1329 (2007).
Beekman M. How long will honey bees (Apis mellifera L.) be stimulated by scent to revisit past-profitable forage sites? J. Comp. Physiol. A. Neuroethol. Sens. Neural Behav. Physiol. 191: 1115-1120 (2005).
Ben Zvi MM, Negre-Zakharov F, Masci T, Ovadis M, Shklarman E, Ben-Meir H, Tzfira T, Dudareva N, Vainstein A. Interlinking showy traits: co-engineering of scent and colour biosynthesis in flowers. Plant Biotechnol. J. 6: 403-415 (2008).
Bernhardt P, Sage T, Weston P, Azuma H, Lam M, Thien LB, Bruhl J. The pollination of Trimenia moorei (Trimeniaceae): floral volatiles, insect/wind pollen vectors and stigmatic self-incompatibility in a basal angiosperm. Ann. Bot. (Lond.) 92: 445-458 (2003).
Brown K. Plant genetics. Something to sniff at: unbottling floral scent. Science 296: 2327-2329 (2002).
Cheong JJ, Choi YD. Methyl jasmonate as a vital substance in plants. Trends Genet. 19: 409-413 (2003).
Choi K, Kim S, Kim SY, Kim M, Hyun Y, Lee H, Choe S, Kim SG, Michaels S, Lee I. SUPPRESSOR OF FRIGIDA3 encodes a ACTIN-RELATED PROTEIN6 required for floral repression in Arabidopsis. Plant Cell 17: 2647-2660 (2005).
Corbesier L, Kustermans G, Perilleux C, Melzer S, Moritz T, Havelange A, Bernier G. Gibberellins and the floral transition in Sinapis alba. Physiol. Plant. 122: 152-158 (2004).
Custodio L, Serra H, Nogueira JM, Goncalves S, Romano A. Analysis of the volatiles emitted by whole flowers and isolated flower organs of the carob tree using HS-SPME-GC/MS. J. Chem. Ecol. 32: 929-942 (2006).
Dotterl S, Burkhardt D, Jurgens A, Mosandl A. Stereoisomeric pattern of lilac aldehyde in Silene latifolia, a plant involved in a nursery pollination system. Phytochemistry 68: 499-504 (2007).
Dotterl S, Fussel U, Jurgens A, Aas G. 1,4-Dimethoxybenzene, a floral scent compound in willows that attracts an oligolectic bee. J. Chem. Ecol. 31: 2993-2998 (2005).
Dotterl S, Jurgens A, Seifert K, Laube T, Weissbecker B, Schutz S. Nursery pollination by a moth in Silene latifolia: the role of odours in eliciting antennal and behavioural responses. New Phytol. 169: 707-718 (2006).
Dotterl S, Jurgens A, Wolfe L, Biere A. Disease status and population origin effects on floral scent: potential consequences for oviposition and fruit predation in a complex interaction between a plant, fungus, and noctuid moth. J. Chem. Ecol. 35: 307-319 (2009).
Dotterl S, Schaffler I. Flower scent of floral oil-producing Lysimachia punctata as attractant for the oil-bee Macropis fulvipes. J. Chem. Ecol. 33: 441-445 (2007).
Dotterl S, Wolfe LM, Jurgens A. Qualitative and quantitative analyses of flower scent in Silene latifolia. Phytochemistry 66: 203-213 (2005).
Dudareva N. Floral scent In (RM Goodman, ed) Encyclopedia of Plant and Crop Science, Marcell Dekker, N.Y., pp. 456-459 (2004).
Dudareva N, Cseke L, Blanc VM, Pichersky E. Evolution of floral scent in Clarkia: novel patterns of S-linalool synthase gene expression in the C. breweri flower. Plant Cell 8: 1137-1148 (1996).
Dudareva N, D'Auria JC, Nam KH, Raguso RA, Pichersky E. Acetyl-CoA:benzylalcohol acetyltransferase--an enzyme involved in floral scent production in Clarkia breweri. Plant J. 14: 297-304 (1998).
Dudareva N, Martin D, Kish CM, Kolosova N, Gorenstein N, Faldt J, Miller B, Bohlmann J. (E)-beta-ocimene and myrcene synthase genes of floral scent biosynthesis in snapdragon: function and expression of three terpene synthase genes of a new terpene synthase subfamily. Plant Cell 15: 1227-1241 (2003).
Dudareva N, Pichersky E. Biochemical and molecular genetic aspects of floral scents. Plant Physiol. 122: 627-634 (2000).
Dudareva N, Raguso RA, Wang J, Ross JR, Pichersky E. Floral scent production in Clarkia breweri. III. Enzymatic synthesis and emission of benzenoid esters. Plant Physiol. 116: 599-604 (1998).
Effmert U, Saschenbrecker S, Ross J, Negre F, Fraser CM, Noel JP, Dudareva N, Piechulla B. Floral benzenoid carboxyl methyltransferases: from in vitro to in planta function. Phytochemistry 66: 1211-1230 (2005).
El-Sayed AM, Byers JA, Manning LM, Jurgens A, Mitchell VJ, Suckling DM. Floral scent of Canada thistle and its potential as a generic insect attractant. J. Econ. Entomol. 101: 720-727 (2008).
Eltz T, Sager A, Lunau K. Juggling with volatiles: exposure of perfumes by displaying male orchid bees. J. Comp. Physiol. A. Neuroethol. Sens. Neural Behav. Physiol. 191: 575-581 (2005).
Faldt J, Arimura G, Gershenzon J, Takabayashi J, Bohlmann J. Functional identification of AtTPS03 as ( E)-beta-ocimene synthase: a monoterpene synthase catalyzing jasmonate- and wound-induced volatile formation in Arabidopsis thaliana. Planta 216: 745-751 (2003).
Farina WM, Gruter C, Acosta L, Mc Cabe S. Honeybees learn floral odors while receiving nectar from foragers within the hive. Naturwissenschaften 94: 55-60 (2007).
Fussel U, Dotterl S, Jurgens A, Aas G. Inter- and intraspecific variation in floral scent in the genus Salix and its implication for pollination. J. Chem. Ecol. 33: 749-765 (2007).
Gaffal KP, Friedrichs GJ, El-Gammal S. Ultrastructural evidence for a dual function of the phloem and programmed cell death in the floral nectary of Digitalis purpurea. Ann. Bot. (Lond.) 99: 593-607 (2007).
Galliot C, Stuurman J, Kuhlemeier C. The genetic dissection of floral pollination syndromes. Curr. Opin. Plant Biol. 9: 78-82 (2006).
Goldblatt P, Manning JC. Radiation of pollination systems in the Iridaceae of sub-Saharan Africa. Ann. Bot. (Lond.) 97: 317-344 (2006).
Gonzalez-Carranza ZH, Rompa U, Peters JL, Bhatt AM, Wagstaff C, Stead AD, Roberts JA. Hawaiian skirt: an F-box gene that regulates organ fusion and growth in Arabidopsis. Plant Physiol. 144: 1370-1382 (2007).
Gonzalez-Carranza ZH, Whitelaw CA, Swarup R, Roberts JA. Temporal and spatial expression of a polygalacturonase during leaf and flower abscission in oilseed rape and Arabidopsis. Plant Physiol. 128: 534-543 (2002).
Goodwin SM, Kolosova N, Kish CM, Wood KV, Dudareva N, Jenks MA. Cuticle characteristics and volatile emissions of petals in Antirrhinum majus. Physiol. Plant. 117: 435-443 (2003).
Grison-Pige L, Bessiere JM, Hossaert-McKey M. Specific attraction of fig-pollinating wasps: role of volatile compounds released by tropical figs. J. Chem. Ecol. 28: 283-295 (2002).
Guterman I, Shalit M, Menda N, Piestun D, Dafny-Yelin M, Shalev G, Bar E, Davydov O, Ovadis M, Emanuel M, Wang J, Adam Z, Pichersky E, Lewinsohn E, Zamir D, Vainstein A, Weiss D. Rose scent: genomics approach to discovering novel floral fragrance-related genes. Plant Cell 14: 2325-2338 (2002).
Hoballah ME, Gubitz T, Stuurman J, Broger L, Barone M, Mandel T, Dell'Olivo A, Arnold M, Kuhlemeier C. Single gene-mediated shift in pollinator attraction in Petunia. Plant Cell 19: 779-790 (2007).
Horiuchi J, Badri DV, Kimball BA, Negre F, Dudareva N, Paschke MW, Vivanco JM. The floral volatile, methyl benzoate, from snapdragon (Antirrhinum majus) triggers phytotoxic effects in Arabidopsis thaliana. Planta 226: 1-10 (2007).
Hsiao YY, Jeng MF, Tsai WC, Chuang YC, Li CY, Wu TS, Kuoh CS, Chen WH, Chen HH. A novel homodimeric geranyl diphosphate synthase from the orchid Phalaenopsis bellina lacking a DD(X)2-4D motif. Plant J. 55: 719-733 (2008).
Hsiao YY, Tsai WC, Kuoh CS, Huang TH, Wang HC, Wu TS, Leu YL, Chen WH, Chen HH. Comparison of transcripts in Phalaenopsis bellina and Phalaenopsis equestris (Orchidaceae) flowers to deduce monoterpene biosynthesis pathway. BMC Plant Biol. 6: 14 (2006).
Huber FK, Kaiser R, Sauter W, Schiestl FP. Floral scent emission and pollinator attraction in two species of Gymnadenia (Orchidaceae). Oecologia 142: 564-575 (2005).
Jakobsen HB, Christensen LP. Diurnal changes in the concentrations of 2-phenylethyl beta-D-glucopyranoside and the corresponding volatile aglycone in the tissue and headspace of Trifolium repens L. florets. Plant Cell Environ. 25: 773-781 (2002).
Jhumur US, Dotterl S, Jurgens A. Naive and conditioned responses of Culex pipiens pipiens biotype molestus (Diptera: Culicidae) to flower odors. J. Med. Entomol. 43: 1164-1170 (2006).
Jurgens A, Dotterl S, Meve U. The chemical nature of fetid floral odours in stapeliads (Apocynaceae-Asclepiadoideae-Ceropegieae). New Phytol. 172: 452-468 (2006).
Jurgens A, Webber AC, Gottsberger G. Floral scent compounds of Amazonian Annonaceae species pollinated by small beetles and thrips. Phytochemistry 55: 551-558 (2000).
Kaminaga Y, Schnepp J, Peel G, Kish CM, Ben-Nissan G, Weiss D, Orlova I, Lavie O, Rhodes D, Wood K, Porterfield DM, Cooper AJ, Schloss JV, Pichersky E, Vainstein A, Dudareva N. Plant phenylacetaldehyde synthase is a bifunctional homotetrameric enzyme that catalyzes phenylalanine decarboxylation and oxidation. J. Biol. Chem. 281: 23357-23366 (2006).
Kater MM, Franken J, Inggamer H, Gretenkort M, van Tunen AJ, Mollema C, Angenent GC. The use of floral homeotic mutants as a novel way to obtain durable resistance to insect pests. Plant Biotechnol. J. 1: 123-127 (2003).
Kato M, Mizuno K. Caffeine synthase and related methyltransferases in plants. Front. Biosci. 9: 1833-1842 (2004).
Kessler D, Gase K, Baldwin IT. Field experiments with transformed plants reveal the sense of floral scents. Science 321: 1200-1202 (2008).
Kiefer C, Hessel S, Lampert JM, Vogt K, Lederer MO, Breithaupt DE, von Lintig J. Identification and characterization of a mammalian enzyme catalyzing the asymmetric oxidative cleavage of provitamin A. J. Biol. Chem. 276: 14110-14116 (2001).
King RW, Hisamatsu T, Goldschmidt EE, Blundell C. The nature of floral signals in Arabidopsis. I. Photosynthesis and a far-red photoresponse independently regulate flowering by increasing expression of FLOWERING LOCUS T (FT). J. Exp. Bot. 59: 3811-3820 (2008).
King RW, Moritz T, Evans LT, Martin J, Andersen CH, Blundell C, Kardailsky I, Chandler PM. Regulation of flowering in the long-day grass Lolium temulentum by gibberellins and the FLOWERING LOCUS T gene. Plant Physiol. 141: 498-507 (2006).
Koeduka T, Orlova I, Baiga TJ, Noel JP, Dudareva N, Pichersky E. The lack of floral synthesis and emission of isoeugenol in Petunia axillaris subsp. parodii is due to a mutation in the isoeugenol synthase gene. Plant J. 58: 961-969 (2009).
Koizumi A, Amanai Y, Ishii K, Nishihara K, Kazama Y, Uchida W, Kawano S. Floral development of an asexual and female-like mutant carrying two deletions in gynoecium-suppressing and stamen-promoting functional regions on the Y chromosome of the dioecious plant Silene latifolia. Plant Cell Physiol. 48: 1450-1461 (2007).
Kolosova N, Sherman D, Karlson D, Dudareva N. Cellular and subcellular localization of S-adenosyl-L-methionine:benzoic acid carboxyl methyltransferase, the enzyme responsible for biosynthesis of the volatile ester methylbenzoate in snapdragon flowers. Plant Physiol. 126: 956-964 (2001).
Kondo M, Oyama-Okubo N, Ando T, Marchesi E, Nakayama M. Floral scent diversity is differently expressed in emitted and endogenous components in Petunia axillaris lines. Ann. Bot. (Lond.) 98: 1253-1259 (2006).
Kondo M, Oyama-Okubo N, Sagae M, Ando T, Marchesi E, Nakayama M. Metabolic regulation of floral scent in Petunia axillaris lines: biosynthetic relationship between dihydroconiferyl acetate and iso-eugenol. Biosci. Biotechnol. Biochem. 71: 458-463 (2007).
Lavid N, Wang J, Shalit M, Guterman I, Bar E, Beuerle T, Menda N, Shafir S, Zamir D, Adam Z, Vainstein A, Weiss D, Pichersky E, Lewinsohn E. O-Methyltransferases involved in the biosynthesis of volatile phenolic derivatives in rose petals. Plant Physiol. 129: 1899-1907 (2002).
Lemmetyinen J, Hassinen M, Elo A, Porali I, Keinonen K, Makela H, Sopanen T. Functional characterization of SEPALLATA3 and AGAMOUS orthologues in silver birch. Physiol. Plant. 121: 149-162 (2004).
Lescop E, Briand L, Pernollet JC, Guittet E. Structural basis of the broad specificity of a general odorant-binding protein from honeybee. Biochemistry Feb 2 [Epub ahead of print] (2009).
Majetic CJ, Raguso RA, Ashman TL. The impact of biochemistry vs. population membership on floral scent profiles in colour polymorphic Hesperis matronalis. Ann. Bot. (Lond.) 102: 911-922 (2008).
Majetic CJ, Raguso RA, Tonsor SJ, Ashman TL. Flower color-flower scent associations in polymorphic Hesperis matronalis (Brassicaceae). Phytochemistry 68: 865-874 (2007).
Mant JG, Schiestl FP, Peakall R, Weston PH. A phylogenetic study of pollinator conservatism among sexually deceptive orchids. Evolution Int. J. Org. Evolution 56: 888-898 (2002).
Martin DM, Toub O, Chiang A, Lo BC, Ohse S, Lund ST, Bohlmann J. The bouquet of grapevine (Vitis vinifera L. cv. Cabernet Sauvignon) flowers arises from the biosynthesis of sesquiterpene volatiles in pollen grains. Proc. Natl. Acad. Sci. U.S.A. 106: 7245-7250 (2009).
Molet M, Chittka L, Raine NE. How floral odours are learned inside the bumblebee (Bombus terrestris) nest. Naturwissenschaften. 96: 213-219 (2009).
Muhlemann JK, Waelti MO, Widmer A, Schiestl FP. Postpollination changes in floral odor in Silene latifolia: adaptive mechanisms for seed-predator avoidance? J. Chem. Ecol. 32: 1855-1860 (2006).
Nagegowda DA, Ramalingam S, Hemmerlin A, Bach TJ, Chye ML. Brassica juncea HMG-CoA synthase: localization of mRNA and protein. Planta 221: 844-856 (2005).
Nam KH, Dudareva N, Pichersky E. Characterization of benzylalcohol acetyltransferases in scented and non-scented Clarkia species. Plant Cell Physiol. 40: 916-923 (1999).
Negre F, Kish CM, Boatright J, Underwood B, Shibuya K, Wagner C, Clark DG, Dudareva N. Regulation of methylbenzoate emission after pollination in snapdragon and petunia flowers. Plant Cell 15: 2992-3006 (2003).
Negre F, Kolosova N, Knoll J, Kish CM, Dudareva N. Novel S-adenosyl-L-methionine:salicylic acid carboxyl methyltransferase, an enzyme responsible for biosynthesis of methyl salicylate and methyl benzoate, is not involved in floral scent production in snapdragon flowers. Arch. Biochem. Biophys. 406: 261-270 (2002).
O'Donoghue EM, Somerfield SD, Heyes JA. Organization of cell walls in Sandersonia aurantiaca floral tissue. J. Exp. Bot. 53: 513-523 (2002).
Ogawa M, Kay P, Wilson S, Swain SM. ARABIDOPSIS DEHISCENCE ZONE POLYGALACTURONASE1 (ADPG1), ADPG2, and QUARTET2 are Polygalacturonases required for cell separation during reproductive development in Arabidopsis. Plant Cell 21: 216-233 (2009).
Okamoto T, Kawakita A, Kato M. Interspecific variation of floral scent composition in Glochidion and its association with host-specific pollinating seed parasite (Epicephala). J. Chem. Ecol. 33: 1065-1081 (2007).
Omura H, Honda K. Priority of color over scent during flower visitation by adult Vanessa indica butterflies. Oecologia 142: 588-596 (2005).
Oyama-Okubo N, Ando T, Watanabe N, Marchesi E, Uchida K, Nakayama M. Emission mechanism of floral scent in Petunia axillaris. Biosci. Biotechnol. Biochem. 69: 773-777 (2005).
Pichersky E, Dudareva N. Scent engineering: toward the goal of controlling how flowers smell. Trends Biotechnol. 25: 105-110 (2007).
Pichersky E, Lewinsohn E, Croteau R. Purification and characterization of S-linalool synthase, an enzyme involved in the production of floral scent in Clarkia breweri. Arch. Biochem. Biophys. 316: 803-807 (1995).
Pichersky E, Raguso RA, Lewinsohn E, Croteau R. Floral scent production in Clarkia (Onagraceae) (I. Localization and developmental modulation of monoterpene emission and linalool synthase activity). Plant Physiol. 106: 1533-1540 (1994).
Pott MB, Hippauf F, Saschenbrecker S, Chen F, Ross J, Kiefer I, Slusarenko A, Noel JP, Pichersky E, Effmert U, Piechulla B. Biochemical and structural characterization of benzenoid carboxyl methyltransferases involved in floral scent production in Stephanotis floribunda and Nicotiana suaveolens. Plant Physiol. 135: 1946-1955 (2004).
Raguso RA, Roy BA. 'Floral' scent production by Puccinia rust fungi that mimic flowers. Mol. Ecol. 7: 1127-1136 (1998).
Raguso RA, Schlumpberger BO, Kaczorowski RL, Holtsford TP. Phylogenetic fragrance patterns in Nicotiana sections Alatae and Suaveolentes. Phytochemistry 67: 1931-1942 (2006).
Reinhard J, Srinivasan MV, Guez D, Zhang SW. Floral scents induce recall of navigational and visual memories in honeybees. J. Exp. Biol. 207: 4371-4381 (2004).
Riffell JA, Lei H, Christensen TA, Hildebrand JG. Characterization and coding of behaviorally significant odor mixtures. Curr. Biol. 19: 335-340 (2009).
Roeder S, Dreschler K, Wirtz M, Cristescu SM, van Harren FJ, Hell R, Piechulla B. SAM levels, gene expression of SAM synthetase, methionine synthase and ACC oxidase, and ethylene emission from N. suaveolens flowers. Plant Mol. Biol. 70: 535-546 (2009).
Roeder S, Hartmann AM, Effmert U, Piechulla B. Regulation of simultaneous synthesis of floral scent terpenoids by the 1,8-cineole synthase of Nicotiana suaveolens. Plant Mol. Biol. 65: 107-124 (2007).
Rohloff J. Volatiles from rhizomes of Rhodiola rosea L. Phytochemistry 59: 655-661 (2002).
Rohrbeck D, Buss D, Effmert U, Piechulla B. Localization of methyl benzoate synthesis and emission in Stephanotis floribunda and Nicotiana suaveolens flowers. Plant Biol. (Stuttg.) 8: 615-626 (2006).
Ross JR, Nam KH, D'Auria JC, Pichersky E. S-Adenosyl-L-methionine:salicylic acid carboxyl methyltransferase, an enzyme involved in floral scent production and plant defense, represents a new class of plant methyltransferases. Arch. Biochem. Biophys. 367: 9-16 (1999).
Sagae M, Oyama-Okubo N, Ando T, Marchesi E, Nakayama M. Effect of temperature on the floral scent emission and endogenous volatile profile of Petunia axillaris. Biosci. Biotechnol. Biochem. 72: 110-115 (2008).
Sakai M, Hirata H, Sayama H, Sekiguchi K, Itano H, Asai T, Dohra H, Hara M, Watanabe N. Production of 2-phenylethanol in roses as the dominant floral scent compound from L-phenylalanine by two key enzymes, a PLP-dependent decarboxylase and a phenylacetaldehyde reductase. Biosci. Biotechnol. Biochem. 71: 2408-2419 (2007).
SanMartin-Gajardo I, Sazima M. Chiropterophily in Sinningieae (Gesneriaceae): Sinningia brasiliensis and Paliavana prasinata are bat-pollinated, but P. sericiflora is not. Not yet? Ann. Bot. (Lond.) 95: 1097-1103 (2005).
Schade F, Legge RL, Thompson JE. Fragrance volatiles of developing and senescing carnation flowers. Phytochemistry 56: 703-710 (2001).
Schiestl FP, Ayasse M, Paulus HF, Lofstedt C, Hansson BS, Ibarra F, Francke W. Sex pheromone mimicry in the early spider orchid (ophrys sphegodes): patterns of hydrocarbons as the key mechanism for pollination by sexual deception. J. Comp. Physiol. [A.] 186: 567-574 (2000).
Schiestl FP, Schlüter PM. Floral isolation, specialized pollination, and pollinator behavior in orchids. Annu. Rev. Entomol. 54: 425-446 (2009).
Schiestl FP, Steinebrunner F, Schulz C, von Reuss S, Francke W, Weymuth C, Leuchtmann A. Evolution of 'pollinator'- attracting signals in fungi. Biol. Lett. 2: 401-404 (2006).
Seligman K, Saviani EE, Oliveira HC, Pinto-Maglio CA, Salgado I. Floral transition and nitric oxide emission during flower development in Arabidopsis thaliana is affected in nitrate reductase-deficient plants. Plant Cell Physiol. 49: 1112-1121 (2008).
Sexton R, Stopford AP, Moodie WT, Porter AEA. Aroma production from cut sweet pea flowers (Lathyrus odoratus): the role of ethylene. Physiol. Plant. 124: 381-389 (2005).
Seymour RS, Matthews PG. The role of thermogenesis in the pollination biology of the Amazon waterlily Victoria amazonica. Ann. Bot. (Lond.) 98: 1129-1135 (2006).
Shalit M, Guterman I, Volpin H, Bar E, Tamari T, Menda N, Adam Z, Zamir D, Vainstein A, Weiss D, Pichersky E, Lewinsohn E. Volatile ester formation in roses. Identification of an acetyl-coenzyme A:geraniol/citronellol acetyltransferase in developing rose petals. Plant Physiol. 131: 1868-1876 (2003).
Shi J, Luo YB, Bernhardt P, Ran JC, Liu ZJ, Zhou Q. Pollination by deceit in Paphiopedilum barbigerum (Orchidaceae): a staminode exploits the innate colour preferences of hoverflies (Syrphidae). Plant Biol. (Stuttg.) 11: 17-28 (2009).
Shuttleworth A, Johnson SD. A key role for floral scent in a wasp-pollination system in Eucomis (Hyacinthaceae). Ann. Bot. (Lond.) 103: 715-725 (2009).
Sigrist MR, Sazima M. Pollination and reproductive biology of twelve species of neotropical Malpighiaceae: stigma morphology and its implications for the breeding system. Ann. Bot. (Lond.) 94: 33-41 (2004).
Silva EM, Dean BB, Hiller LK. Honey bee (Hymenoptera: Apidae) foraging in response to preconditioning with onion flower scent compounds. J. Econ. Entomol. 96: 1510-1513 (2003).
Sin SF, Yeung EC, Chye ML. Downregulation of Solanum americanum genes encoding proteinase inhibitor II causes defective seed development. Plant J. 45: 58-70 (2006).
Spitzer B, Zvi MM, Ovadis M, Marhevka E, Barkai O, Edelbaum O, Marton I, Masci T, Alon M, Morin S, Rogachev I, Aharoni A, Vainstein A. Reverse genetics of floral scent: application of tobacco rattle virus-based gene silencing in Petunia. Plant Physiol. 145: 1241-1250 (2007).
Svensson GP, Pellmyr O, Raguso RA. Strong conservation of floral scent composition in two allopatric yuccas. J. Chem. Ecol. 32: 2657-2665 (2006).
Theis N. Fragrance of Canada thistle (Cirsium arvense) attracts both floral herbivores and pollinators. J. Chem. Ecol. 32: 917-927 (2006).
Theis N, Raguso RA. The effect of pollination on floral fragrance in thistles. J. Chem. Ecol. 31: 2581-2600 (2005).
Tholl D, Kish CM, Orlova I, Sherman D, Gershenzon J, Pichersky E, Dudareva N. Formation of monoterpenes in Antirrhinum majus and Clarkia breweri flowers involves heterodimeric geranyl diphosphate synthases. Plant Cell 16: 977-992 (2004).
Toth M, Schmera D, Imrei Z. Optimization of a chemical attractant for Epicometis (Tropinota) hirta Poda. Z. Naturforsch. [C.] 59: 288-292 (2004).
Van Kleunen M, Nänni I, Donaldson JS, Manning JC. The role of beetle marks and flower colour on visitation by monkey beetles (hopliini) in the greater cape floral region, South Africa. Ann. Bot. (Lond.) 100: 1483-1489 (2007).
Verdonk JC, Haring MA, van Tunen AJ, Schuurink RC. ODORANT1 regulates fragrance biosynthesis in petunia flowers. Plant Cell 17: 1612-1624 (2005).
Verdonk JC, Ric de Vos CH, Verhoeven HA, Haring MA, van Tunen AJ, Schuurink RC. Regulation of floral scent production in petunia revealed by targeted metabolomics. Phytochemistry 62: 997-1008 (2003).
Vereecken NJ, Schiestl FP. On the roles of colour and scent in a specialized floral mimicry system. Ann. Bot. (Lond.) Aug 18 [Epub ahead of print] (2009).
Vereecken NJ, Schiestl FP. The evolution of imperfect floral mimicry. Proc. Natl. Acad. Sci. U.S.A. 105: 7484-7488 (2008).
Vincent R, Fraisier V, Chaillou S, Limami MA, Deleens E, Phillipson B, Douat C, Boutin JP, Hirel B. Overexpression of a soybean gene encoding cytosolic glutamine synthetase in shoots of transgenic Lotus corniculatus L. plants triggers changes in ammonium assimilation and plant development. Planta 201: 424-433 (1997).
Vlasakova B, Kalinova B, Gustafsson MH, Teichert H. Cockroaches as pollinators of Clusia aff. sellowiana (Clusiaceae) on Inselbergs in French Guiana. Ann. Bot. (Lond.) 102: 295-304 (2008).
Wang J, Dudareva N, Bhakta S, Raguso RA, Pichersky E. Floral scent production in Clarkia breweri (Onagraceae). II. Localization and developmental modulation of the enzyme S-adenosyl-L-methionine:(iso)eugenol O-methyltransferase and phenylpropanoid emission. Plant Physiol. 114: 213-221 (1997).
Wang J, Pichersky E. Characterization of S-adenosyl-L-methionine:(iso)eugenol O-methyltransferase involved in floral scent production in Clarkia breweri. Arch. Biochem. Biophys. 349: 153-160 (1998).
Watanabe K, Okada K. Two discrete cis elements control the abaxial side-specific expression of the FILAMENTOUS FLOWER gene in Arabidopsis. Plant Cell 15: 2592-2602 (2003).
Wen CK, Chang C. Arabidopsis RGL1 encodes a negative regulator of gibberellin responses. Plant Cell 14: 87-100 (2002).
Werner T, Motyka V, Laucou V, Smets R, Van Onckelen H, Schmulling T. Cytokinin-deficient transgenic Arabidopsis plants show multiple developmental alterations indicating opposite functions of cytokinins in the regulation of shoot and root meristem activity. Plant Cell 15: 2532-2550 (2003).
Wright GA, Lutmerding A, Dudareva N, Smith BH. Intensity and the ratios of compounds in the scent of snapdragon flowers affect scent discrimination by honeybees (Apis mellifera). J. Comp. Physiol. A. Neuroethol. Sens. Neural. Behav. Physiol. 191: 105-114 (2005).
Wu S, Watanabe N, Mita S, Dohra H, Ueda Y, Shibuya M, Ebizuka Y. The key role of phloroglucinol O-methyltransferase in the biosynthesis of Rosa chinensis volatile 1,3,5-trimethoxybenzene. Plant Physiol. 135: 95-102 (2004).
Wu S, Watanabe N, Mita S, Ueda Y, Shibuya M, Ebizuka Y. Two O-methyltransferases isolated from flower petals of Rosa chinensis var. spontanea involved in scent biosynthesis. J. Biosci. Bioeng. 96: 119-128 (2003).
Yi G, Choi JH, Jeong EG, Chon NS, Jena KK, Ku YC, Kim DH, Eun MY, Jeon JS, Nam MH. Morphological and molecular characterization of a new frizzy panicle mutant, "fzp-9(t)", in rice (Oryza sativa L.). Hereditas 142: 92-97 (2005).
Young TE, Ling J, Geisler-Lee CJ, Tanguay RL, Caldwell C, Gallie DR. Developmental and thermal regulation of the maize heat shock protein, HSP101. Plant Physiol. 127: 777-791 (2001).
Yu H, Goh CJ. Identification and characterization of three orchid MADS-box genes of the AP1/AGL9 subfamily during floral transition. Plant Physiol. 123: 1325-1336 (2000).
Yu X, Sayegh R, Maymon M, Warpeha K, Klejnot J, Yang H, Huang J, Lee J, Kaufman L, Lin C. Formation of nuclear bodies of Arabidopsis CRY2 in response to blue light is associated with its blue light-dependent degradation. Plant Cell 21: 118-130 (2009).
Zhang Y, Schwarz S, Saedler H, Huijser P. SPL8, a local regulator in a subset of gibberellin-mediated developmental processes in Arabidopsis. Plant Mol. Biol. 63: 429-439 (2007).
Zluvova J, Janousek B, Vyskot B. Immunohistochemical study of DNA methylation dynamics during plant development. J. Exp. Bot. 52: 2265-2273 (2001).
Number of references = 137
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