Institute of Crop Science, College of Agriculture and Biotechnology, Zhejiang University, Hangzhou 310058, China.
Jiangsu Collaborative Innovation Centre for Modern Crop Production, Nanjing 210000, China.
Int J Mol Sci. 2019 Jan 10;20(2):256. doi: 10.3390/ijms20020256.
Abiotic stresses trigger premature leaf senescence by affecting some endogenous factors, which is an important limitation for plant growth and grain yield. Among these endogenous factors that regulate leaf senescence, abscisic acid (ABA) works as a link between the oxidase damage of cellular structure and signal molecules responding to abiotic stress during leaf senescence. Considering the importance of ABA, we collect the latest findings related to ABA biosynthesis, ABA signaling, and its inhibitory effect on chloroplast structure destruction, chlorophyll (Chl) degradation, and photosynthesis reduction. Post-translational changes in leaf senescence end with the exhaustion of nutrients, yellowing of leaves, and death of senescent tissues. In this article, we review the literature on the ABA-inducing leaf senescence mechanism in rice and starting from ABA synthesis, transport, signaling receptors, and catabolism. We also predict the future outcomes of investigations related to other plants. Before changes in translation occur, ABA signaling that mediates the expression of , , and transcription factors (TFs) has been investigated to explain the inducing effect on senescence-associated genes. Various factors related to calcium signaling, reactive oxygen species (ROS) production, and protein degradation are elaborated, and research gaps and potential prospects are presented. Examples of gene mutation conferring the delay or induction of leaf senescence are also described, and they may be helpful in understanding the inhibitory effect of abiotic stresses and effective measures to tolerate, minimize, or resist their inducing effect on leaf senescence.
非生物胁迫通过影响一些内源性因素触发过早的叶片衰老,这是植物生长和籽粒产量的重要限制因素。在调节叶片衰老的这些内源性因素中,脱落酸 (ABA) 在叶片衰老过程中作为细胞结构氧化酶损伤和响应非生物胁迫的信号分子之间的联系。鉴于 ABA 的重要性,我们收集了与 ABA 生物合成、ABA 信号转导及其对叶绿体结构破坏、叶绿素 (Chl) 降解和光合作用减少的抑制作用相关的最新发现。叶片衰老的翻译后变化以营养物质枯竭、叶片变黄和衰老组织死亡为结束。在本文中,我们回顾了关于 ABA 诱导水稻叶片衰老机制的文献,从 ABA 合成、运输、信号受体和分解代谢开始。我们还预测了与其他植物相关的研究的未来结果。在翻译变化发生之前,已经研究了 ABA 信号转导,该信号转导介导 、 和 转录因子 (TF) 的表达,以解释对衰老相关基因的诱导作用。详细阐述了与钙信号转导、活性氧 (ROS) 产生和蛋白质降解相关的各种因素,并提出了研究差距和潜在前景。还描述了赋予叶片衰老延迟或诱导的基因突变的例子,它们可能有助于理解非生物胁迫的抑制作用以及有效措施来耐受、最小化或抵抗它们对叶片衰老的诱导作用。