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Programmed Cell Death during Pollination-Induced Petal Senescence in Petunia

机译:授粉引起的矮牵牛花瓣衰老过程中的程序性细胞死亡

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摘要

Petal senescence, one type of programmed cell death (PCD) in plants, is a genetically controlled sequence of events comprising its final developmental stage. We characterized the pollination-induced petal senescence process in Petunia inflata using a number of cell performance markers, including fresh/dry weight, protein amount, RNA amount, RNase activity, and cellular membrane leakage. Membrane disruption and DNA fragmentation with preferential oligonucleosomal cleavage, events characteristic of PCD, were found to be present in the advanced stage of petal senescence, indicating that plant and animal cell death phenomena share one of the molecular events in the execution phase. As in apoptosis in animals, both single-stranded DNase and double-stranded DNase activities are induced during petal cell death and are enhanced by Ca2+. In contrast, the release of cytochrome c from mitochondria, one commitment step in signaling of apoptosis in animal cells, was found to be dispensable in petal cell death. Some components of the signal transduction pathway for PCD in plants are likely to differ from those in animal cells.
机译:花瓣衰老是植物中程序性细胞死亡(PCD)的一种类型,是一种遗传控制的事件序列,包括其最终发育阶段。我们使用许多细胞性能指标,包括新鲜/干重,蛋白质量,RNA量,RNase活性和细胞膜渗漏,对矮牵牛授粉诱导的花瓣衰老过程进行了表征。人们发现,在花瓣衰老的晚期阶段,存在膜破裂和DNA片段化以及优先发生的寡核苷酸切割,这是PCD的特征性事件,表明植物和动物细胞死亡现象是整个执行阶段的分子事件之一。像动物凋亡一样,花瓣细胞死亡时会诱导单链DNase和双链DNase活性,并通过Ca 2 + 增强。相反,发现线粒体中细胞色素c的释放是动物细胞凋亡信号转导的一个重要步骤,在花瓣细胞死亡中是不可或缺的。植物中PCD信号转导途径的某些成分可能与动物细胞中的成分不同。

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