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首页> 外文期刊>Journal of Plant Molecular Breeding >Proline accumulation and osmotic stress: an overview of P5CS gene in plants
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Proline accumulation and osmotic stress: an overview of P5CS gene in plants

机译:脯氨酸积累和渗透胁迫:植物中P5CS基因的概述

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Under osmotic stresses, proline accumulation is an important response of plants to these conditions. Proline is a compatible osmolyte which affects many cellular and molecular aspects of plant in both normal and stressful situations. Proline is shown to be involved in plant development in normal condition and in conferring resistance to plant under biotic and abiotic stresses. Therefore, many surveys have already been designed to unveil its mechanisms and signaling pathway, so that it might be an insight into resolving growing challenge of agriculture, drought and soil salinity. Δ1-pyrroline-5-carboxylate synthetase (P5CS), one of two main enzymes in proline biosynthesis pathway from glutamate precursor, has been demonstrated to play significant role in proline accumulation in plants under water stresses. Regarding the role of P5CS under osmotic stress, there are controversial observations in various plants, hence making it still unknown, whether P5CS is rate-limiting enzyme in the pathway or not. Obviously, transgene P5CS is proved to give higher resistance to transgenic plants under drought and salinity, by elevating proline content. In this literature, proline and its identified various functions in plants, characteristics of P5CS enzyme, signals, inducers and inhibitors of P5CS gene, expression pattern of P5CS under differential conditions in studied plant species are discussed. Finally, we have reviewed generated transgenic plants overexpressing P5CS and consequences of these transformations.
机译:在渗透胁迫下,脯氨酸的积累是植物对这些条件的重要反应。脯氨酸是一种相容的渗透压剂,在正常和胁迫情况下都会影响植物的许多细胞和分子方面。已显示脯氨酸在正常条件下参与植物发育,并在生物和非生物胁迫下赋予植物抗性。因此,已经设计了许多调查来揭示其机制和信号传导途径,以便对解决日益严重的农业,干旱和土壤盐分挑战提出见解。 Δ1-吡咯啉-5-羧酸合成酶(P5CS)是脯氨酸从谷氨酸前体生物合成途径中的两个主要酶之一,已被证明在水分胁迫下在植物脯氨酸积累中起重要作用。关于P5CS在渗透胁迫下的作用,在各种植物中都有争议的观察结果,因此仍然不清楚P5CS是否是该途径中的限速酶。显然,通过增加脯氨酸含量,已证明转基因P5CS在干旱和盐碱下对转基因植物具有更高的抗性。在该文献中,讨论了脯氨酸及其在植物中的各种功能,P5CS酶的特性,P5CS基因的信号,诱导剂和抑制剂,P5CS在不同条件下在所研究植物物种中的表达模式。最后,我们综述了产生的过表达P5CS的转基因植物以及这些转化的后果。

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