Engineering of betaine biosynthesis and transport for abiotic stress tolerance in plants

被引:0
作者
Teruhiro Takabe
机构
[1] Meijo University,Research Institute
来源
Journal of Plant Biochemistry and Biotechnology | 2012年 / 21卷
关键词
Salt stress; Abiotic stress; Glycine betaine; Choline; Drought stress;
D O I
暂无
中图分类号
学科分类号
摘要
Drought and salinity are the major factors that decrease crop yield. Organisms thriving in osmotic stress environments need adaptive mechanisms for adjusting their intracellular environment to external osmotic stress conditions. One such mechanism, to prevent water loss from the cells is to accumulate large amounts of low molecular weight organic compatible solutes such as proline, betaine and polyols to balance internal osmolarity of the cells. Accumulation of compatible solutes can be achieved by enhanced synthesis and/or reduced catabolism. Certain plants synthesize betaine in chloroplasts via a two-step oxidation of choline and betaine accumulation is associated with enhanced stress tolerance. Many important crop plants have low levels of betaine or none at all. Hence, betaine biosynthetic pathway is a target for metabolic engineering to enhance stress tolerance in crops. Introduction of betaine synthesis pathway into betaine non-accumulating plants has often improved stress tolerance. However, betaine levels of the engineered plants were generally low. To further enhance the betaine accumulation levels, we need to diagnose factors limitng betaine accumulation in engineered plants. Here we discuss recent progress on metabolic engineering of choline precursors for abiotic stress tolerance in plants.
引用
收藏
页码:58 / 62
页数:4
相关论文
共 177 条
[1]  
Alia KY(1999)Enhanced tolerance to light stress of transgenic Plant Mol Biol 40 279-288
[2]  
Sakamoto A(2007) plants that express the J Exp Bot 58 4203-4212
[3]  
Nonaka H(2008) gene for a bacterial choline oxidase Physiol Plant 134 22-30
[4]  
Hayashi H(2002)Regulation of betaine synthesis by precursor supply and choline monooxygenase expression in J Biol Chem 277 41352-41360
[5]  
Saradhi PP(2000)Enzymatic characterization of peroxisomal and cytosolic betaine aldehyde dehydrogenases in barley J Exp Bot 51 177-185
[6]  
Chen THH(2000)Functional characterization of choline monooxygenase, an enzyme for betaine synthesis in plants Plant Physiol 122 747-756
[7]  
Murata N(1977)Improved tolerance to salinity and low temperature in transgenic tobacco producing glycine betaine J Biochem 82 1741-1749
[8]  
Bhuiyan NH(1996)Genetic engineering of glycinebetaine production toward enhancing stress tolerance in plants: metabolic limitations J Bacteriol 178 1655-1662
[9]  
Hamada A(2000)Purification and characterization of choline oxidase from Plant Physiol 123 371-380
[10]  
Yamada N(2000)The complex bet promoters of Escherichia coli: regulation by oxygen (ArcA), choline (BetI), and osmotic stress Plant Physiol 124 153-162