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N Use By Plants
Nitrate Assimilation
Ammonia Assimilation
Glu, Gln, Asn, Gly, Ser
Aminotransferases
Asp, Ala, GABA
Val, Leu, Ileu, Thr, Lys
Pro, Arg, Orn
Polyamines
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Sulfate Assimilation
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His, Phe, Tyr, Tryp
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References
HORT640 - Metabolic Plant Physiology

References, dimethylsulfonio or dimethylsulphonio

Amir R, Hacham Y, Galili G. Cystathionine gamma-synthase and threonine synthase operate in concert to regulate carbon flow towards methionine in plants. Trends Plant Sci. 7: 153-157 (2002).

Ansede JH, Pellechia PJ, Yoch DC. Selenium biotransformation by the salt marsh cordgrass Spartina alterniflora: evidence for dimethylselenoniopropionate formation. Env. Sci. Technol. 33: 2064-2069 (1999).

Bacic MK, Yoch DC. In vivo characterization of dimethylsulfoniopropionate lyase in the fungus Fusarium lateritium. Appl. Environ. Microbiol. 64: 106-111 (1998).

Baliarda A, Robert H, Jebbar M, Blanco C, Deschamps A, Le Marrec C. Potential osmoprotectants for the lactic acid bacteria Pediococcus pentosaceus and Tetragenococcus halophila. Int. J. Food Microbiol. 84: 13-20 (2003).

Baliarda A, Robert H, Jebbar M, Blanco C, Le Marrec C. Isolation and characterization of ButA, a secondary glycine betaine transport system operating in Tetragenococcus halophila. Curr. Microbiol. 47: 347-351 (2003).

Barra L, Fontenelle C, Ermel G, Trautwetter A, Walker GC, Blanco C. Interrelations between glycine betaine catabolism and methionine biosynthesis in Sinorhizobium meliloti strain 102F34. J. Bacteriol. 188: 7195-7204 (2006).

Bayles DO, Wilkinson BJ. Osmoprotectants and cryoprotectants for Listeria monocytogenes. Lett. Appl. Microbiol. 30: 23-27 (2000).

Bischoff B, Karsten U, Daniel C, Kuck K, Xia B, Wiencke C. Preliminary assessment of the B-dimethylsulfoniopropionate (DMSP) content of macroalgae from the tropical island of Hainan (People's Republic of China). Aust. J. Mar. Freshwater Res. 45: 1329-1336 (1994).

Bonham CC, Wood KV, Yang WJ, Nadolska-Orczyk A, Samaras Y, Gage DA, Poupart J, Burnet M, Hanson AD, Rhodes D. Identification of quaternary ammonium and tertiary sulfonium compounds by plasma desorption mass spectrometry. J. Mass Spectrom. 30: 1187-1194 (1995).

Boyaval P, Deborde C, Corre C, Blanco C, Begue E. Stress and osmoprotection in propionibacteria. Lait 79: 59-69 (1999).

Bucciarelli E, Sunda WG. Influence of CO2, nitrate, phosphate, and silicate limitation on intracellular dimethylsulfoniopropionate in batch cultures of the coastal diatom Thalassiosira pseudonana. Limnol. Oceanogr. 48: 2256-2265 (2003).

Chambers ST, Kunin CM, Miller D, Hamada A. Dimethylthetin can substitute for glycine betaine as an osmoprotectant molecule for Escherichia coli. J. Bacteriol. 169: 4845-4847 (1987).

Chen TH, Murata N. Enhancement of tolerance of abiotic stress by metabolic engineering of betaines and other compatible solutes. Curr. Opin. Plant Biol. 5: 250-257 (2002).

Choquet G, Jehan N, Pissavin C, Blanco C, Jebbar M. OusB, a broad-specificity ABC-type transporter from Erwinia chrysanthemi, mediates uptake of glycine betaine and choline with a high affinity. Appl. Environ. Microbiol. 71: 3389-3398 (2005).

Collinsova M, Strakova J, Jiracek J, Garrow TA. Inhibition of betaine-homocysteine S-methyltransferase causes hyperhomocysteinemia in mice. J. Nutr. 136: 1493-1497 (2006).

Colmer TD, Corradini F, Cawthray GR, Otte ML. Analysis of dimethylsulphoniopropionate (DMSP), betaines and other organic solutes in plant tissue extracts using HPLC. Phytochem. Anal. 11: 163-168 (2000).

Colmer TD, Fan TWM, Lauchli A, Higashi RM. Interactive effects of salinity, nitrogen and sulphur on the organic solutes in Spartina alterniflora leaf blades. J. Exp. Bot. 47: 369-375 (1996).

Cosquer A, Pichereau V, Pocard JA, Minet J, Cormier M, Bernard T. Nanomolar levels of dimethylsulfoniopropionate, dimethylsulfonioacetate, and glycine betaine are sufficient to confer osmoprotection to Escherichia coli. Appl. Environ. Microbiol. 65: 3304-3311 (1999).

Dacey JWH, Howse FA, Michaels AF, Wakeham SG. Temporal variability of dimethylsulfide and dimethylsulfoniopropionate in the Sargasso sea. Deep Sea Res. 45: 2085 (1998).

de Souza MP, Yoch DC. Differential metabolism of dimethylsulfoniopropionate and acrylate in saline and brackish intertidal sediments. Microb. Ecol. 31: 319-330 (1996).

Diab F, Bernard T, Bazire A, Haras D, Blanco C, Jebbar M. Succinate-mediated catabolite repression control on the production of glycine betaine catabolic enzymes in Pseudomonas aeruginosa PAO1 under low and elevated salinities. Microbiology 152: 1395-1406 (2006).

Diaz MR, Visscher PT, Taylor BF. Metabolism of dimethylsulfoniopropionate and glycine betaine by a marine bacterium. FEMS Microbiol. Lett. 96: 61-66 (1992).

Dickson DMJ, Kirst GO. The role of beta-dimethylsulphoniopropionate, glycine betaine and homarine in the osmoacclimation of Platymonas subcordiformis. Planta 167: 536-543 (1986).

Fan TW, Colmer TD, Lane AN, Higashi RM. Determination of metabolites by 1H NMR and GC: analysis for organic osmolytes in crude tissue extracts. Anal. Biochem. 214: 260-271 (1993).

Gage DA, Rhodes D, Nolte KD, Hicks WA, Leustek T, Cooper AJ, Hanson AD. A new route for synthesis of dimethylsulphoniopropionate in marine algae. Nature 387: 891-894 (1997).

Gao Y, Schofield OM, Leustek T. Characterization of sulfate assimilation in marine algae focusing on the enzyme 5'-adenylylsulfate reductase. Plant Physiol. 123: 1087-1096 (2000).

Gonzalez JM, Kiene RP, Moran MA. Transformation of sulfur compounds by an abundant lineage of marine bacteria in the alpha-subclass of the class Proteobacteria. Appl. Environ. Microbiol. 65: 3810-3819 (1999).

Gouesbet G, Jebbar M, Talibart R, Bernard T, Blanco C. Pipecolic acid is an osmoprotectant for Escherichia coli taken up by the general osmoporters ProU and ProP. Microbiology 140: 2415-2422 (1994).

Groene T. Biogenic production and consumption of dimethylsulfide (DMS) and dimethylsulfoniopropionate (DMSP) in the marine epipelagic zone: a review. J. Marine Systems 6: 191-209 (1995).

Grone T, Kirst GO. Aspects of dimethylsulfoniopropionate effects on enzymes isolated from the marine phytoplankter Tetraselmis subcordiformis (Stein). J. Plant Physiol. 138: 85-91 (1991).

Hanson AD, Huang ZH, Gage DA. Evidence that the putative compatible solute 5-dimethylsulfoniopentanoate is an extraction artifact. Plant Physiol. 101: 1391-1393 (1993).

Hanson AD, Rivoal J, Paquet L, Gage DA. Biosynthesis of 3-dimethylsulfoniopropionate in Wollastonia biflora (L.) DC. Evidence that S-methylmethionine is an intermediate. Plant Physiol. 105: 103-110 (1994).

Howard AG, Russell DW. HPLC-FPD instrumentation for the measurement of the atmospheric dimethyl sulfide precursor B-dimethylsulfoniopropionate. Anal. Chem. 67: 1293-1295 (1995).

James F, Paquet L, Sparace SA, Gage DA, Hanson AD. Evidence implicating dimethylsulfoniopropionaldehyde as an intermediate in dimethylsulfoniopropionate biosynthesis. Plant Physiol. 108: 1439-1448 (1995).

Jansen M, Hansen TA. Tetrahydrofolate serves as a methyl acceptor in the demethylation of dimethylsulfoniopropionate in cell extracts of sulfate-reducing bacteria. Arch. Microbiol. 169: 84-87 (1998).

Johnston AW, Todd JD, Sun L, Nikolaidou-Katsaridou MN, Curson AR, Rogers R. Molecular diversity of bacterial production of the climate-changing gas, dimethyl sulphide, a molecule that impinges on local and global symbioses. J. Exp. Bot. 59: 1059-1067 (2008).

Karsten U, Kuck K, Daniel C, Wiencke C, Kirst GO. A method for complete determination of dimethylsulphoniopropionate (DMSP) in marine macroalgae from different geographical regions. Phycologia 33: 171-176 (1994).

Karsten U, Wiencke C, Kirst GO. The effect of light intensity and daylength on the B-dimethylsulphoniopropionate (DMSP) content of marine green macroalgae from Antarctica. Plant Cell Environ. 13: 989-993 (1990).

Karsten U, Wiencke C, Kirst GO. Growth pattern and B-dimethylsulphoniopropionate (DMSP) content of green macroalgae at different irradiances. Mar. Biol. 108: 151-155 (1991).

Karsten U, Wiencke C, Kirst GO. Dimethylsulphoniopropionate (DMSP) accumulation in green macroalgae from polar to temperate regions - interactive effects of light versus salinity and light versus temperature. Polar Biol. 12: 603-607 (1992).

Karsten U, Wiencke C, Kirst GO. The beta-dimethylsulphoniopropionate (DMSP) content of macroalgae from Antarctica and Southern Chile. Bot. Mar. 33: 143-146 (1990).

Keller MD, Kiene RP, Matrai PA, Bellows WK. Production of glycine betaine and dimethylsulfoniopropionate in marine phytoplankton. I. Batch cultures. Mar. Biol. 135: 237-248 (1999).

Keller MD, Kiene RP, Matrai PA, Bellows WK. Production of glycine betaine and dimethylsulfoniopropionate in marine phytoplankton. II. N-limited chemostat cultures. Mar. Biol. 135: 249-257 (1999).

Kiene RP, Gerard G. Evaluation of glycine betaine as an inhibitor of dissolved dimethylsulfoniopropionate degradation in coastal waters. Mar. Ecol. 128: 121-131 (1995).

Kiene RP, Linn LJ. Filter-type and sample handling affect determination of organic substrate uptake by bacterioplankton. Aquat. Microbial Ecol. 17: 311-321 (1999).

Kiene RP, Linn LJ, Gonzalez J, Moran MA, Bruton JA. Dimethylsulfoniopropionate and methanethiol are important precursors of methionine and protein-sulfur in marine bacterioplankton. Appl. Environ. Microbiol. 65: 4549-4558 (1999).

Kiene RP, Visscher PT. Production and fate of methylated sulfur compounds from methionine and dimethylsulfoniopropionate in anoxic salt marsh sediments. Appl. Environ. Microbiol. 53: 2426-2434 (1987).

Kiene RP, Williams LPH. Glycine betaine uptake, retention, and degradation by microorganisms in seawater. Limnol. Oceanog. 43: 1592-1603 (1998).

Kiene RP, Williams LPH, Walker JE. Seawater microorganisms have a high affinity glycine betaine uptake system which also recognizes dimethylsulfoniopropionate. Aquat. Microbial Ecol. 15: 39-51 (1998).

Kirst GO, Thiel C, Wolff H, Nothnagel J, Wanzek M, Ulmke R. Dimethylsulfoniopropionate (DMSP) in ice-algae and its possible biological role. Mar. Chem. 35: 381-388 (1991).

Kitaguchi H, Uchida A, Ishida Y. Purification and characterization of L-methionine decarboxylase from Crypthecodinium cohnii. Fisheries Sci. 65: 613-617 (1999).

Kocsis MG, Hanson AD. Biochemical evidence for two novel enzymes in the biosynthesis of 3-dimethylsulfoniopropionate in Spartina alterniflora. Plant Physiol. 123: 1153-1162 (2000).

Kocsis MG, Nolte KD, Rhodes D, Shen TL, Gage DA, Hanson AD. Dimethylsulfoniopropionate biosynthesis in Spartina alterniflora1. Evidence that S-methylmethionine and dimethylsulfoniopropylamine are intermediates. Plant Physiol. 117: 273-281 (1998).

Kocsis MG, Ranocha P, Gage DA, Simon ES, Rhodes D, Peel GJ, Mellema S, Saito K, Awazuhara M, Li C, Meeley RB, Tarczynski MC, Wagner C, Hanson AD. Insertional inactivation of the methionine S-methyltransferase gene eliminates the S-methylmethionine cycle and increases the methylation ratio. Plant Physiol. 131: 1808-1815 (2003).

Ledyard KM, Dacey JWH. Dimethylsulfide production from dimethylsulfoniopropionate by a marine bacterium. Mar. Ecol. 110: 95-103 (1994).

Lee MB, Blunt JW, Lever M, George PM. A nuclear-magnetic-resonance-based assay for betaine-homocysteine methyltransferase activity. Anal. Biochem. 330: 199-205 (2004).

Malin G, Kirst GO. Algal production of dimethyl sulfide and its atmospheric role. J. Phycol. 33: 889-896 (1997).

Matrai PA, Keller MD. Total organic sulfur and dimethylsulfoniopropionate in marine phytoplankton: intracellular variations. Mar. Biol. 119: 61-68 (1994).

Matrai PA, Vernet M, Hood R, Jennings A, Brody E, Saemundsdottir S. Light-dependence of carbon and sulfur production by polar clones of the genus Phaeocystis. Mar. Biol. 124: 157-167 (1995).

Munoz-Clares RA, Díaz-Sanchez AG, Gonzalez-Segura L, Montiel C. Kinetic and structural features of betaine aldehyde dehydrogenases: mechanistic and regulatory implications. Arch. Biochem. Biophys. Sep 17 [Epub ahead of print] (2009).

Nakajima K. Hyperhomocysteinemia can be ameliorated by dimethylsulfoniopropionate in place of folic acid in mice. J. Nutr. Sci. Vitaminol. (Tokyo) 52: 61-65 (2006).

Nishiguchi MK, Somero GN. Temperature- and concentration-dependence of compatibility of the organic osmolyte beta-dimethylsulfoniopropionate. Cryobiology 29: 118-124 (1992).

Nuccio ML, Rhodes D, McNeil SD, Hanson AD. Metabolic engineering of plants for osmotic stress resistance. Curr. Opin. Plant Biol. 2: 128-134 (1999).

Otte ML, Wilson G, Morris JT, Moran BM. Dimethylsulphoniopropionate (DMSP) and related compounds in higher plants. J. Exp. Bot. 55: 1919-1925 (2004).

Pakulski JD, Kiene RP. Foliar release of dimethylsulfoniopropionate from Spartina alterniflora. Mar. Ecol. Prog. Ser. 81: 277-287 (1992).

Paquet L, Lafontaine PJ, Saini HS, James F, Hanson AD. Discovery of the presence of 3-dimethylsulfonioproprionate in several species of angiosperms. Can. J. Bot. 73: 1889-1896 (1995).

Paquet L, Rathinasabapathi B, Saini H, Zamir L, Gage DA, Huang ZH, Hanson AD. Accumulation of the compatible solute 3-dimethylsulfoniopropionate in sugarcane and its relatives, but not other gramineous crops. Aust. J. Plant Physiol. 21: 37-48 (1994).

Pichereau V, Pocard JA, Hamelin J, Blanco C, Bernard T. Differential effects of dimethylsulfoniopropionate, dimethylsulfonioacetate, and other S-methylated compounds on the growth of Sinorhizobium meliloti at low and high osmolarities. Appl. Environ. Microbiol. 64: 1420-1429 (1998).

Plettner I, Steinke M, Malin G. Ethene (ethylene) production in the marine macroalga Ulva (Enteromorpha) intestinalis L. (Chlorophyta, Ulvophyceae): effect of light-stress and co-production with dimethyl sulphide. Plant Cell Environ. 28: 1136-1145 (2005).

Randall K, Lever M, Peddie BA, Chambers ST. Natural and synthetic betaines counter the effects of high NaCl and urea concentrations. Biochim. Biophys. Acta 1291: 189-194 (1996).

Reed RH. Measurement and osmotic significance of beta-dimethylsulphoniopropionate in marine macrolagae. Mar. Biol. Lett. 4: 173-181 (1983).

Reisch CR, Moran MA, Whitman WB. DMSP dependent demethylase (DmdA) from Pelagibacter ubique and Silicibacter pomeroyi. J. Bacteriol. 190: 8018-8024 (2008).

Rhodes D, Gage DA, Cooper A, Hanson AD. S-Methylmethionine conversion to dimethylsulfoniopropionate: evidence for an unusual transamination reaction. Plant Physiol. 115: 1541-1548 (1997).

Schwahn BC, Wendel U, Lussier-Cacan S, Mar MH, Zeisel SH, Leclerc D, Castro C, Garrow TA, Rozen R. Effects of betaine in a murine model of mild cystathionine-beta-synthase deficiency. Metabolism 53: 594-599 (2004).

Slow S, Lever M, Lee MB, George PM, Chambers ST. Betaine analogues alter homocysteine metabolism in rats. Int. J. Biochem. Cell. Biol. 36: 870-880 (2004).

Slow S, Lever M, Lee MB, George PM, Chambers ST. Betaine analogues alter homocysteine metabolism in rats. Int. J. Biochem. Cell Biol. 36: 870-880 (2004).

Smits SH, Hoing M, Lecher J, Jebbar M, Schmitt L, Bremer E. The compatible solute-binding protein OpuAC from Bacillus subtilis: ligand-binding, site directed mutagenesis and crystallographic studies. J. Bacteriol. 190: 5663-5671 (2008).

Stefels J, Dijkhuizen L. Characteristics of DMSP-lyase in Phaeocystis sp (Prymnesiophyceae). Mar. Ecol. 131: 307-313 (1996).

Steinke M, Kirst GO. Enzymatic cleavage of dimethylsulfoniopropionate (DMSP) in cell-free extracts of the marine macroalga Enteromorpha clathrata (Roth) Grev, (Ulvales, Chlorophyta). J. Exo. Mar. Biol. Ecol. 201: 73-85 (1996).

Storey R, Gorham J, Pitman MG, Hanson AD, Gage D. Response of Melanthera biflora to salinity and water stress. J. Exp. Bot. 44: 1551-1560 (1993).

Summers PS, Nolte KD, Cooper AJL, Borgeas H, Leustek T, Rhodes D, Hanson AD. Identification and stereospecificity of the first three enzymes of 3-dimethylsulfoniopropionate biosynthesis in a chlorophyte alga. Plant Physiol. 116: 369-378 (1998).

Taylor BF, Gilchrist DC. New routes for aerobic bidegradation of dimethylsulfoniopropionate. Appl. Environ. Microbiol. 57: 3581-3584 (1991).

Todd JD, Rogers R, Li YG, Wexler M, Bond PL, Sun L, Curson AR, Malin G, Steinke M, Johnston AW. Structural and regulatory genes required to make the gas dimethyl sulfide in bacteria. Science 315: 666-669 (2007).

Trossat C, Nolte KD, Hanson AD. Evidence that the pathway of dimethylsulfoniopropionate begins in the cytosol and ends in the chloroplast. Plant Physiol. 111: 965-973 (1996).

Trossat C, Rathinasabapathi B, Hanson AD. Transgenically expressed betaine aldehyde dehydrogenase efficiently catalyzes oxidation of dimethylsulfoniopropionaldehyde and w-aldehydes. Plant Physiol. 113: 1457-1461 (1997).

Trossat C, Rathinasabapathi B, Weretilnyk EA, Shen TL, Huang ZH, Gage DA, Hanson AD. Salinity promotes accumulation of 3-dimethylsulfoniopropionate and its precursor S-methylmethionine in chloroplasts. Plant Physiol. 116: 165-171 (1998).

Uchida A, Ooguri T, Ishida T, Ishida Y. Incorporation of methionine into dimethylthiopropanoic acid in the dinoflagellate Crypthecodinium cohnii. Nippon Suisan Gakkaishi 59: 851-855 (1993).

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Van Bergeijk SA, Van der Zee C, Stal LJ. Uptake and excretion of dimethylsulphoniopropionate is driven by salinity changes in the marine benthic diatom Cylindrotheca closterium. Eur. J. Phycol. 38: 341-349 (2003).

van der Maarel MJ, Jansen M, Haanstra R, Meijer WG, Hansen TA. Demethylation of dimethylsulfoniopropionate to 3-S-methylmercaptopropionate by marine sulfate-reducing bacteria. Appl. Environ. Microbiol. 62: 3978-3984 (1996).

van Diggelen J, Rozema J, Dickson DMJ, Broekman R. Beta-3-dimethylsulphoniopropionate, proline and quaternary ammonium compounds in Spartina anglica in relation to sodium chloride, nitrogen and sulphur. New Phytol. 103: 573-586 (1986).

Vila-Costa M, Simo R, Harada H, Gasol JM, Slezak D, Kiene RP. Dimethylsulfoniopropionate uptake by marine phytoplankton. Science 314: 652-654 (2006).

Visscher PT, Kiene RP, Taylor BF. Demethylation and cleavage of dimethylsulfoniopropionate in marine intertidal sediments. FEMS Microbiol. Ecol. 14: 179-190 (1994).

Visscher PT, Taylor BF. Demethylation of dimethylsulfoniopropionate to 3-mercaptopropionate by an aerobic marine bacterium. Appl. Environ. Microbiol. 60: 4617-4619 (1994).

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Vojtechova M, Hanson AD, Munoz-Clares RA. Betaine-aldehyde dehydrogenase from amaranth leaves efficiently catalyzes the NAD-dependent oxidation of dimethylsulfoniopropionaldehyde to dimethylsulfoniopropionate. Arch. Biochem. Biophys. 337: 81-88 (1997).

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Number of references = 99

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David Rhodes
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