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叶片发育与衰老之间的隐藏联系。

A hidden link between leaf development and senescence.

机构信息

Bioorganic Research Institute Suntory Foundation for Life Sciences, Japan.

出版信息

Plant Sci. 2018 Nov;276:105-110. doi: 10.1016/j.plantsci.2018.08.006. Epub 2018 Aug 17.

Abstract

Leaf senescence is the final step of leaf development and is usually accompanied by visible color changes from green to yellow or brown. Unlike the senescence of the whole body of animals and unicellular organisms, which is often associated with death, leaf senescence in plants requires highly integrative processes towards cell death with nutrient recycling and storage. Since leaf senescence plays pivotal roles in the production of plant biomass and grain yield, the mechanisms of degradation and relocation of macromolecules as well as the regulation of signaling and biosynthetic pathways have received much attention. The importance of the plant hormone ethylene in the onset of leaf senescence has been clearly documented. However, research has increasingly demonstrated that the function of ethylene in the regulation of leaf senescence is dependent on leaf development. This review raises the issue of how ethylene requires developmental regulators and focuses on the developmental aspect of leaf senescence. It also emphasizes the remarkable impact that developmental regulators have on regulating the onset of leaf senescence.

摘要

叶片衰老是叶片发育的最后一个阶段,通常伴随着从绿色到黄色或棕色的可见颜色变化。与动物和单细胞生物整个身体的衰老不同,衰老通常与死亡有关,植物的叶片衰老需要高度整合的细胞死亡过程,同时进行养分回收和储存。由于叶片衰老在植物生物量和谷物产量的产生中起着关键作用,因此大分子的降解和重定位以及信号和生物合成途径的调节机制受到了广泛关注。植物激素乙烯在叶片衰老开始时的重要性已得到明确证实。然而,研究越来越多地表明,乙烯在调节叶片衰老中的功能依赖于叶片的发育。本综述提出了乙烯如何需要发育调节剂的问题,并重点关注叶片衰老的发育方面。它还强调了发育调节剂对调节叶片衰老开始的显著影响。

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