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Aging and Senescence of the Leaf Organ

机译:叶器官的衰老和衰老

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Leaf senescence is a sequence of biochemical and physiological events comprising the final stage in leaf development. It encompasses the period from a fully expanded mature state up to the death, thereby limiting longevity. The changes occurring during leaf senescence are very complex but highly regulated, and are genetically programmed with actions coordinated at the cellular, tissue, organ, and organism levels. A major breakthrough in our molecular understanding of this phenomenon has been achievedthrough the characterization of various mutants and senescence-associated genes, including regulatory genes. In particular, a genetic screening and assay system for leaf senescence has been well established in Arabidopsis, which ied leaf senescence intothe realm of genetic subject along with the rich genetic and genomic resources in this model plant. These advances have not only revealed the existence of a complex regulatory network of senescence-associated signaling pathways, but have also allowed usto postulate the molecular mechanisms for signal perception, execution, and regulation. The key regulatory genes identified to date encode a variety of proteins, including transcription regulators and signal-trans-duction proteins, regulators of proteindegradation, proteins associated with phytohormone pathways, and regulators of metabolism. Elucidation of their roles in leaf senescence and analyses of senescence regulatory pathways, including systems-level approaches, will increase our knowledge of the networks involved in senescence activity.
机译:叶片衰老是一系列生物化学和生理事件,包括叶片发育的最后阶段。它涵盖了从完全扩展的成熟状态到死亡的时期,从而限制了寿命。叶片衰老过程中发生的变化非常复杂,但受到高度调控,并且通过在细胞,组织,器官和生物体水平上协调一致的作用进行遗传编程。通过对各种突变体和衰老相关基因(包括调节基因)进行表征,我们在对该现象的分子理解上取得了重大突破。特别地,已经在拟南芥中建立了用于叶片衰老的遗传筛选和测定系统,其将叶片衰老与该模型植物中丰富的遗传和基因组资源一起引入了遗传对象的领域。这些进展不仅揭示了衰老相关信号通路的复杂调控网络的存在,而且还使我们能够推测信号感知,执行和调控的分子机制。迄今为止确定的关键调控基因编码多种蛋白质,包括转录调控因子和信号转导蛋白,蛋白质降解调控因子,与植物激素途径相关的蛋白质以及代谢调控因子。阐明它们在叶片衰老中的作用以及对衰老调节途径的分析,包括系统水平的方法,将增加我们对衰老活性所涉及的网络的了解。

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