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首页> 外文期刊>Frontiers in Chemistry >Drought Induced Signaling in Rice: Delineating Canonical and Non-canonical Pathways
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Drought Induced Signaling in Rice: Delineating Canonical and Non-canonical Pathways

机译:水稻中的干旱诱导信号传递:描述规范和非规范途径

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摘要

Drought induced stress is often a bottleneck of agricultural crop production. Invariably, all field crops across all agro-ecological regions succumb to it with an yield penalty. Drought massively affects the growth and harvestable yield in crops and has become an imminent problem necessitating breeding of tolerant crops. It induces myriad changes of biochemical, molecular, and physiological nature that manifest into aberrant plant morphology. The response to drought in plants incites a signaling cascade that involves perception and translation of drought signal leading to concomitant modulation of gene expression and de novo osmolyte synthesis. The intricate patterns of expression of these genes vary from early induction to late responsive genes. While one class of genes codes for products imparting osmotolerance and protection to plants, the second class predominantly modulates target gene expression by an intricate signal transduction mechanism. This review summarises both canonical and non-canonical cascades of drought stress response in plants, delineating the mechanism in rice (Oryza sativa) and emphasizes hydropenia induced lipid signaling.
机译:干旱引起的压力通常是农业作物生产的瓶颈。所有农业生态区域中的所有田间作物总是会屈服于产量损失。干旱极大地影响了作物的生长和可收获的单产,已经成为迫切需要培育耐性作物的难题。它诱导了生化,分子和生理性质的无数变化,这些变化表现为异常的植物形态。植物对干旱的反应引发了一个信号级联反应,该信号级联涉及干旱信号的感知和翻译,从而导致基因表达和从头渗透压合成的伴随调节。这些基因的复杂表达方式从早期诱导到晚期响应基因不等。一类基因编码赋予植物渗透压和保护作用的产品,而第二类则主要通过复杂的信号转导机制调节靶基因的表达。这篇综述总结了植物中干旱胁迫反应的典型和非典型级联,描述了水稻(Oryza sativa)的机制,并强调了水培诱导的脂质信号传导。

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