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首页> 外文期刊>Frontiers in Plant Science >ROS-mediated abiotic stress-induced programmed cell death in plants
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ROS-mediated abiotic stress-induced programmed cell death in plants

机译:ROS介导的非生物胁迫诱导植物程序性细胞死亡

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During the course of their ontogenesis plants are continuously exposed to a large variety of abiotic stress factors which can damage tissues and jeopardize the survival of the organism unless properly countered. While animals can simply escape and thus evade stressors, plants as sessile organisms have developed complex strategies to withstand them. When the intensity of a detrimental factor is high, one of the defense programs employed by plants is the induction of programmed cell death (PCD). This is an active, genetically controlled process which is initiated to isolate and remove damaged tissues thereby ensuring the survival of the organism. The mechanism of PCD induction usually includes an increase in the levels of reactive oxygen species (ROS) which are utilized as mediators of the stress signal. Abiotic stress-induced PCD is not only a process of fundamental biological importance, but also of considerable interest to agricultural practice as it has the potential to significantly influence crop yield. Therefore, numerous scientific enterprises have focused on elucidating the mechanisms leading to and controlling PCD in response to adverse conditions in plants. This knowledge may help develop novel strategies to obtain more resilient crop varieties with improved tolerance and enhanced productivity. The aim of the present review is to summarize the recent advances in research on ROS-induced PCD related to abiotic stress and the role of the organelles in the process.
机译:在它们的本体发育过程中,除非适当加以对策,否则植物会持续暴露于多种非生物胁迫因素中,这些非生物胁迫因素可能会破坏组织并危及生物体的生存。尽管动物可以轻松逃脱并因此逃避压力源,但作为无柄生物的植物已经开发出了抵抗它们的复杂策略。当有害因子的强度很高时,植物采用的防御程序之一就是诱导程序性细胞死亡(PCD)。这是一个活跃的,遗传控制的过程,该过程开始于隔离和去除受损组织的过程,从而确保了生物的生存。 PCD诱导的机制通常包括增加活性氧(ROS)的水平,这些氧被用作应激信号的介体。非生物胁迫诱导的PCD不仅是具有重要生物学意义的过程,而且对于农业实践也具有相当大的意义,因为它有可能显着影响农作物的产量。因此,许多科学企业都致力于阐明响应植物中不利条件而导致和控制PCD的机制。这些知识可能有助于开发新颖的策略,以提高耐受性和生产力,从而获得更具抗逆性的作物品种。本综述的目的是总结ROS诱导的与非生物胁迫相关的PCD和细胞器在该过程中的作用的最新研究进展。

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