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Recent Development on Plant Aldehyde Dehydrogenase Enzymes and Their Functions in Plant Development and Stress Signaling

机译:植物醛脱氢酶酶的最新发展及其在植物开发和应力信号中的功能

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摘要

Abiotic and biotic stresses induce the formation of reactive oxygen species (ROS), which subsequently causes the excessive accumulation of aldehydes in cells. Stress-derived aldehydes are commonly designated as reactive electrophile species (RES) as a result of the presence of an electrophilic α, β-unsaturated carbonyl group. Aldehyde dehydrogenases (ALDHs) are NAD(P)+-dependent enzymes that metabolize a wide range of endogenous and exogenous aliphatic and aromatic aldehyde molecules by oxidizing them to their corresponding carboxylic acids. The ALDH enzymes are found in nearly all organisms, and plants contain fourteen ALDH protein families. In this review, we performed a critical analysis of the research reports over the last decade on plant ALDHs. Newly discovered roles for these enzymes in metabolism, signaling and development have been highlighted and discussed. We concluded with suggestions for future investigations to exploit the potential of these enzymes in biotechnology and to improve our current knowledge about these enzymes in gene signaling and plant development.
机译:非生物和生物应力诱导反应性氧物质(ROS)的形成,随后导致醛在细胞中过量积累。由于电泳α,β-不饱和羰基的存在,通常称为反应性亲电子物种(RES)的应激衍生的醛。醛脱氢酶(ALDH)是NAD(P)+依赖性酶,其通过将它们氧化到它们的相应羧酸来代谢宽范围的内源和外源脂族和芳香族醛分子。在几乎所有生物体中发现ALDH酶,植物含有14个ALDH蛋白质。在本次审查中,我们对植物ALDHS的最后十年进行了对研究报告的关键分析。新发现的代谢中这些酶的作用,并讨论了信号和开发中的这些酶。我们结束了建议,以便将来调查利用生物技术中这些酶的潜力,并改善目前关于基因信号传导和植物发育中这些酶的知识。

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