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Plant oxygen sensing is mediated by the N-end rule pathway: a milestone in plant anaerobiosis.

机译:植物氧感测由N端规则途径介导:这是植物厌氧生物的一个里程碑。

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摘要

Like all aerobic organisms, plants require molecular oxygen for respiratory energy production. In plants, hypoxic conditions can occur during natural events (e.g., flooding), during developmental processes (e.g., seed germination), and in cells of compact tissues with high metabolic rates. Plant acclimation responses to hypoxia involve a modulation of gene expression leading to various biochemical, physiological, and morphological changes that stave off eventual anoxia. In contrast with the animal kingdom, a direct oxygen-sensing mechanism in plants has been elusive so far. However, two recent independent studies show that oxygen sensing in plants operates via posttranslational regulation of key hypoxia response transcription factors by the N-end rule pathway. The N-end rule is an evolutionarily conserved pathway for protein degradation that relates the fate of a protein with the identity of its N-terminal residues. Results from these studies demonstrate that oxygen-dependent modification and targeted proteolysis of members of the ethylene response factor group VII transcription factor family regulate hypoxia-responsive gene expression in Arabidopsis thaliana. The discovery of this plant hypoxia-sensing mechanism sets the stage for further research on plant homeostatic response to oxygen, which could be relevant to understanding plant distributions in flood-prone ecosystems and improving hypoxia tolerance of crops.Digital Object Identifier http://dx.doi.org/10.1105/tpc.111.093880
机译:像所有有氧生物一样,植物需要分子氧来产生呼吸能。在植物中,低氧条件可能发生在自然事件(例如洪水),发育过程(例如种子发芽)以及高代谢率的致密组织细胞中。植物对缺氧的适应反应涉及基因表达的调节,导致各种生物化学,生理和形态变化,从而避免了最终的缺氧。与动物界相反,迄今为止,植物中直接的氧气感应机制还难以捉摸。但是,两项最近的独立研究表明,植物中的氧感测通过N端规则途径通过关键缺氧反应转录因子的翻译后调节来进行。 N末端规则是蛋白质降解的进化保守途径,其将蛋白质的命运与其N末端残基的身份相关联。这些研究的结果表明,乙烯反应因子VII转录因子家族成员的氧依赖性修饰和靶向蛋白水解调节了拟南芥(Arabidopsis thaliana)的缺氧响应基因表达。这种植物缺氧传感机制的发现为进一步研究植物对氧气的体内稳态反应奠定了基础,这可能有助于了解易生洪水生态系统中的植物分布并提高农作物的耐缺氧性。 .doi.org / 10.1105 / tpc.111.093880

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