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Identification of a Novel Chloroplast Protein AtNYE1 Regulating Chlorophyll Degradation during Leaf Senescence in Arabidopsis

机译:拟南芥叶片衰老过程中调节叶绿素降解的新型叶绿体蛋白AtNYE1的鉴定。

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摘要

A dramatic increase of chlorophyll (Chl) degradation occurs during senescence of vegetative plant organs and fruit ripening. Although the biochemical pathway of Chl degradation has long been proposed, little is known about its regulatory mechanism. Identification of Chl degradation-disturbed mutants and subsequently isolation of responsible genes would greatly facilitate the elucidation of the regulation of Chl degradation. Here, we describe a nonyellowing mutant of Arabidopsis (Arabidopsis thaliana), nye1-1, in which 50% Chl was retained, compared to less than 10% in the wild type (Columbia-0), at the end of a 6-d dark incubation. Nevertheless, neither photosynthesis- nor senescence-associated process was significantly affected in nye1-1. Characteristically, a significant reduction in pheophorbide a oxygenase activity was detected in nye1-1. However, no detectable accumulation of either chlorophyllide a or pheophorbide a was observed. Reciprocal crossings revealed that the mutant phenotype was caused by a monogenic semidominant nuclear mutation. We have identified AtNYE1 by positional cloning. Dozens of its putative orthologs, predominantly appearing in higher plant species, were identified, some of which have been associated with Chl degradation in a few crop species. Quantitative polymerase chain reaction analysis showed that AtNYE1 was drastically induced by senescence signals. Constitutive overexpression of AtNYE1 could result in either pale-yellow true leaves or even albino seedlings. These results collectively indicate that NYE1 plays an important regulatory role in Chl degradation during senescence by modulating pheophorbide a oxygenase activity.
机译:营养植物器官衰老和果实成熟期间,叶绿素(Chl)降解急剧增加。尽管长久以来就提出了Ch1降解的生化途径,但对其调控机制知之甚少。 Chl降解受干扰的突变体的鉴定以及随后负责基因的分离将大大有助于阐明Chl降解的调控。在这里,我们描述了拟南芥(Arabidopsis thaliana)的不泛黄突变体nye1-1,在6天结束时,其中保留了50%的Chl,相比之下,野生型(Columbia-0)中的Chl不到10%。黑暗的孵化。然而,在nye1-1中,光合作用和衰老相关过程均未受到明显影响。特征在于,在nye1-1中检测到脱镁叶绿酸加氧酶活性显着降低。然而,未观察到叶绿素a或脱镁叶绿素a的可检测积累。相互交叉显示突变表型是由单基因半显性核突变引起的。我们已经通过位置克隆鉴定了AtNYE1。鉴定了数十种主要在高等植物中出现的直系同源物,其中一些与少数农作物中的Chl降解有关。定量聚合酶链反应分析表明,衰老信号极大地诱导了AtNYE1。 AtNYE1的组成型过表达可能导致浅黄色真叶甚至白化病幼苗。这些结果共同表明,NYE1通过调节脱镁叶绿酸加氧酶的活性在衰老过程中的Chl降解中起重要的调节作用。

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