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Chloroplasts regulate leaf senescence: delayed senescence in transgenic ndhF-defective tobacco.

机译:叶绿体调节叶片衰老:转基因的ndhF缺陷型烟草的衰老延迟。

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Mitochondrial involvement has not been identified in the programmed cell death (PCD) of leaf senescence which suggests that processes such as those involving reactive oxygen species (ROS) are controlled by chloroplasts. We report that transgenic tobacco (DeltandhF), with the plastid ndhF gene knocked-out, shows low levels of the plastid Ndh complex, homologous to mitochondrial complex I, and more than a 30-day-delay in leaf senescence with respect to wt. The comparison of activities and protein levels and analyses of genetic and phenotypic traits of wtxDeltandhF crosses indicate that regulatory roles of mitochondria in animal PCD are assumed by chloroplasts in leaf senescence. The Ndh complex would increase the reduction level of electron transporters and the generation of ROS. Chloroplastic control of leaf senescence provides a nonclassical model of PCD and reveals an unexpected role of the plastid ndh genes that are present in most higher plants.
机译:尚未在叶片衰老的程序性细胞死亡(PCD)中发现线粒体的参与,这表明诸如涉及活性氧(ROS)的过程受叶绿体控制。我们报道转基因烟草(DeltandhF),与质体ndhF基因敲除,显示出低水平的质体Ndh复合物,与线粒体复合物I同源,并且在叶片衰老方面相对于wt延迟了30天以上。 wtxDeltandhF杂交的活性和蛋白质水平的比较以及遗传和表型性状的分析表明,线粒体在动物PCD中的调控作用是由叶绿体在叶片衰老中承担的。 Ndh复合物将增加电子转运体的还原水平和ROS的产生。叶衰老的叶绿体控制提供了PCD的非经典模型,并揭示了大多数高等植物中存在的质体ndh基因的出乎意料的作用。

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