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山梨醇脱氢酶在拟南芥中的作用。

The role of SORBITOL DEHYDROGENASE in Arabidopsis thaliana.

作者信息

Nosarzewski Marta, Downie A Bruce, Wu Benhong, Archbold Douglas D

机构信息

University of Kentucky, Department of Horticulture, N318 Agricultural Science Center North, Lexington, KY 40546, USA.

出版信息

Funct Plant Biol. 2012 Jun;39(6):462-470. doi: 10.1071/FP12008.

Abstract

SORBITOL DEHYDROGENASE (SDH, EC 1.1.1.14) catalyses the interconversion of polyols and ketoses (e.g. sorbitol ⟷ fructose). Using two independent Arabidopsis thaliana (L.) Heynh. sdh knockout mutants, we show that SDH (At5g51970) plays a primary role in sorbitol metabolism as well as an unexpected role in ribitol metabolism. Sorbitol content increased in both wild-type (WT) and mutant plant leaves during drought stress, but mutants showed a dramatically different phenotype, dying even if rewatered. The lack of functional SDH in mutant plants was accompanied by accumulation of foliar sorbitol and at least 10-fold more ribitol, neither of which decreased in mutant plants after rewatering. In addition, mutant plants were uniquely sensitive to ribitol in a concentration-dependent manner, which either prevented them from completing seed germination or inhibited seedling development, effects not observed with other polyols or with ribitol-treated WT plants. Ribitol catabolism may occur solely through SDH in A. thaliana, though at only 30% the rate of that for sorbitol. The results indicate a role for SDH in metabolism of sorbitol to fructose and in ribitol conversion to ribulose in A. thaliana during recovery from drought stress.

摘要

山梨醇脱氢酶(SDH,EC 1.1.1.14)催化多元醇和酮糖之间的相互转化(如山梨醇⟷果糖)。我们利用两个独立的拟南芥(Arabidopsis thaliana (L.) Heynh.)sdh基因敲除突变体,证明SDH(At5g51970)在山梨醇代谢中起主要作用,同时在核糖醇代谢中发挥了意想不到的作用。在干旱胁迫期间,野生型(WT)和突变体植物叶片中的山梨醇含量均增加,但突变体表现出截然不同的表型,即使重新浇水也会死亡。突变体植物中缺乏功能性SDH伴随着叶片中山梨醇的积累以及核糖醇含量至少增加10倍,重新浇水后突变体植物中的这两种物质均未减少。此外,突变体植物对核糖醇具有独特的浓度依赖性敏感性,这要么阻止它们完成种子萌发,要么抑制幼苗发育,而其他多元醇或核糖醇处理的野生型植物未观察到这种效应。在拟南芥中,核糖醇分解代谢可能仅通过SDH发生,但其速率仅为山梨醇分解代谢速率的30%。结果表明,在干旱胁迫恢复过程中,SDH在拟南芥山梨醇向果糖的代谢以及核糖醇向核糖酮的转化中发挥作用。

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