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甲醇对植物的作用及其生理机制 被引量:2

Roles of Methanol on Plants and Its Physiological Mechanisms
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摘要 甲醇是植物生长发育和代谢过程中体内产生的最简单的一碳化合物之一,与植物的很多生理过程(如光合作用、C1-四氢叶酸和某些植物激素生物合成以及植物耐逆性等)密切相关。本文对近年来国内外有关植物中甲醇的产生与释放途径、体内代谢、外施甲醇对植物的效应及其生理机制等方面研究进行了综述,并提出存在的问题和今后研究方向。 The methanol, which is one of the simplest organic C1 compounds produced during the plant growth, development and metabolisms, is related to many plant physiological processes (such as photosyn- thesis,biological synthesis of C^-tetrahydrofolate and some phytohormones, and stress tolerance). In this paper, the pathways for methanol production and emission, metabolisms, and the role of exogenous applying methanol on plants and its physiological mechanisms are summarized according to the existing references, and on that basis,the present occurred problems and future research focus are also discussed.
出处 《西北植物学报》 CAS CSCD 北大核心 2014年第2期416-422,共7页 Acta Botanica Boreali-Occidentalia Sinica
基金 国家转基因生物新品种培育重大专项(2009ZX08004-008B)
关键词 甲醇 植物 叶面喷施 光合效率 耐逆性 methanol ~ plants ~ {oliar spray ~ photosynthesis efficiency ~ stress tolerance
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参考文献41

  • 1GHADIMKHANI G,DE TACCONI N R,CHANMANEE W,et al.Efficient solar photoelectrosynthesis of methanol from carbon dioxide using hybrid CuO-Cu2O semiconductor nanorod arrays[J] .Chemical Communications,2013,49:1 297-1 299.
  • 2徐迪,陈丽梅,年洪娟,梅岩.高等植物中一碳化合物代谢研究进展[J].西北植物学报,2009,29(6):1284-1289. 被引量:10
  • 3NEMECEK-MARSHALL M,MACDONALD R C,FRANZEN J J,et al.Methanol emission from leaves (Enzymatic detection of gas-phase methanol and relation of methanol fluxes to stomatal conductance and leaf development)[J] .Plant Physiology,1995,108:1 359-1 368.
  • 4FALL R,BENSON AA.Leaf methanol-the simplest natural product from plants[J] .Trends in Plant Science,1996,9(3):296-301.
  • 5VOINICIUC C,DEAN G H,GRIFFITHS J S,et al.FLYING SAUCER1 is a transmembrane RING E3 ubiquitin ligase that regulates the degree of pectin methylesterification in Arabidopsis seed mucilage[J] .The Plant Cell,2013,25(3):944-959.
  • 6DIXIT S,UPADHYAY SK,SINGH H,et al.Enhanced methanol production in plants provides broad spectrum insect resistance[J] .PLoS ONE,2013,8(11):e79664.doi:10.1371/journal.pone.0079664.
  • 7RAM(I)REZ I,DORTA F,ESPINOZA V,et al.Effects of foliar and root applications of methanol on the growth of Arabidopsis,tobacco,and tomato plants[J] .Journalof Plant Growth Regulation,2006,25(1):30-44.
  • 8TIEMAN D M,HARRIMAN R W,RAMAMOHAN G,etal.An antisense pectin methylesterase gene alters pectin chemistry and soluble solids in tomato fruit[J] .The Plant Cell,1992,4:667-679.
  • 9FRENKEL C,PPTERS J S,TIEMAN D M,et al.Pectin methylesterase regulates methanol and ethanol accumulation in ripening tomato (Lycopersicon esculentum) fruit[J] .Journal of Biological Chemistry,1998,273:4 293-4 295.
  • 10GAFFE J,TIEMAN D M,HANDA A K.Pectin methylesterase isoforms in tomato (Lycopersieon esculentum) tissues.Effects of expression of a pectin methylesterase antisense gene[J] .Plant Physiology,1994,105.:199-203.

二级参考文献53

  • 1逯明辉,宋慧,李晓明,陈劲枫.冷害过程中黄瓜叶片SOD、CAT和POD活性的变化[J].西北植物学报,2005,25(8):1570-1573. 被引量:105
  • 2FUKUSAKI E, IKEDA T, SHIRAISHI T, NISHIKAWA T, KOBAYASHI A. Formate dehydrogenase gene of Arabidopsis thaliana is indueed by formaldehyde and not by formic acid[J]. J. Biosci. Bioeng. ,2000,90(6) :691--693.
  • 3HANSON A D, ROJE S. One-carbon metabolism in higher plants[J]. Annu. Rev. Plant Physiol. Plant Mol. Biol. , 2001,52: 119-- 137.
  • 4FALL R,BENSON A A. Leaf methanol-the simplest natural product from plants[J]. Trends in Plant Science,1996,1(9):296--301.
  • 5MASON R P,SANDERS JEREMY K M,GIDLEY M J. NMR visualization of free asparagine in potato tissue using adduct formation with [^13C] formaldehyde[J]. Phytochemistry, 1986,25(7) : 1 567-- 1 571.
  • 6NEMECEK-MARSHALL M, MACDONALD R C,et al. Methanol emission from leaves (enzymatic detection of gas-phase methanol and relation of methanol fluxes to stomatal conductance and leaf development)[J]. Plant Physiol. , 1995,108(4) :1 359--1 368.
  • 7GOUT E, AUBERT S, BLIGNY R, REBEILLE F, NONOMURA A R, BENSON A A, DOUCE R. Metabolism of methanol in plant cells. Carbon-13 nuclear magnetic resonance studies[J]. Plant Physiol. , 2000,123 (1) : 287 -- 296.
  • 8HAVIR E A, MCHALE N A. Purification and characterization of an isozyme of catalase with enhanced-peroxidatic activity from leaves of Nicotiana sylvestris[J]. Arch Biochem. Biophys. , 1990,283(2) :491--5.
  • 9KWON S I,LEE H S,CHUNG S A. Differential expression of three catalase genes in the small radish (Rhaphanus sativus L. var. sativus) [J]. Mol. Cells,2007,24(1) :37--44.
  • 10GOULAS E,SCHUBERT M,KIESELBACH T,et al. The chloroplast lumen and stromal proteomes of Arabidopsis thaliana show differential sensitivity to short2 and long2term exposure to low temperature[J]. Plant J. , 2006,47(5) :720-734.

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