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Insights into Plant Programmed Cell Death Induced by Heavy Metals—Discovering a

机译:由重金属诱导的植物编程细胞死亡的见解 - 发现一个

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摘要

Programmed cell death (PCD) is a process that plays a fundamental role in plant development and responses to biotic and abiotic stresses. Knowledge of plant PCD mechanisms is still very scarce and is incomparable to the large number of studies on PCD mechanisms in animals. Quick and accurate assays, e.g., the TUNEL assay, comet assay, and analysis of caspase-like enzyme activity, enable the differentiation of PCD from necrosis. Two main types of plant PCD, developmental (dPCD) regulated by internal factors, and environmental (ePCD) induced by external stimuli, are distinguished based on the differences in the expression of the conserved PCD-inducing genes. Abiotic stress factors, including heavy metals, induce necrosis or ePCD. Heavy metals induce PCD by triggering oxidative stress via reactive oxygen species (ROS) overproduction. ROS that are mainly produced by mitochondria modulate phytotoxicity mechanisms induced by heavy metals. Complex crosstalk between ROS, hormones (ethylene), nitric oxide (NO), and calcium ions evokes PCD, with proteases with caspase-like activity executing PCD in plant cells exposed to heavy metals. This pathway leads to very similar cytological hallmarks of heavy metal induced PCD to PCD induced by other abiotic factors. The forms, hallmarks, mechanisms, and genetic regulation of plant ePCD induced by abiotic stress are reviewed here in detail, with an emphasis on plant cell culture as a suitable model for PCD studies. The similarities and differences between plant and animal PCD are also discussed.
机译:编程的细胞死亡(PCD)是一种在植物开发中发挥基本作用的过程,以及对生物和非生物胁迫的反应。植物PCD机制的知识仍然很少稀缺,并且对动物的PCD机制的大量研究是无比的。快速准确的测定,例如TUNEL测定,彗星测定和胱天蛋白酶样酶活性的分析,使PCD与坏死的分化。由外部刺激诱导的内部因子和环境(EPCD)调节的两种主要类型的植物PCD,由外部刺激引起的环境(EPCD),基于保守的PCD诱导基因表达的差异来区分。非生物压力因子,包括重金属,诱导坏死或EPCD。重金属通过通过反应性氧(ROS)过量产生氧化胁迫诱导PCD。主要由线粒体产生的ROS调节重金属诱导的植物毒性机制。在ROS,激素(乙烯),一氧化氮(NO)和钙离子之间的复杂串扰唤起PCD,蛋白酶在暴露于重金属的植物细胞中执行PCD。该途径导致重金属诱导的PCD与其他非生物因子诱导的PCD非常相似的细胞学标志。本文详细审查了非生物胁迫诱导的植物EPCD的形式,标志,机制和遗传调节,重点是植物细胞培养为PCD研究的合适模型。还讨论了植物和动物PCD之间的相似性和差异。

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