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NOL 介导的多年生黑麦草(Lolium perenne L.)功能持绿特性涉及多方面的分子因子和调节叶片衰老的代谢途径。

NOL-mediated functional stay-green traits in perennial ryegrass (Lolium perenne L.) involving multifaceted molecular factors and metabolic pathways regulating leaf senescence.

机构信息

College of Agro-grassland Science, Nanjing Agricultural University, Nanjing, 210095, PR China.

Department of Plant Biology, Rutgers, the State University of New Jersey, New Brunswick, NJ, 08901, USA.

出版信息

Plant J. 2021 Jun;106(5):1219-1232. doi: 10.1111/tpj.15204. Epub 2021 May 15.

Abstract

Loss of chlorophyll (Chl) is a hallmark of leaf senescence, which may be regulated by Chl catabolic genes, including NON-YELLOW COLORING 1 (NYC1)-like (NOL). The objective of this study was to determine molecular factors and metabolic pathways underlying NOL regulation of leaf senescence in perennial grass species. LpNOL was cloned from perennial ryegrass (Lolium perenne L.) and found to be highly expressed in senescent leaves. Transient overexpression of LpNOL accelerated leaf senescence and Chl b degradation in Nicotiana benthamiana. LpNOL RNA interference (NOLi) in perennial ryegrass not only significantly blocked Chl degradation in senescent leaves, but also delayed initiation and progression of leaf senescence. This study found that NOL, in addition to functioning as a Chl b reductase, could enact the functional stay-green phenotype in perennial grass species, as manifested by increased photosynthetic activities in NOLi plants. Comparative transcriptomic analysis revealed that NOL-mediated functional stay-green in perennial ryegrass was mainly achieved through the modulation of Chl catabolism, light harvesting for photosynthesis, photorespiration, cytochrome respiration, carbohydrate catabolism, oxidative detoxification, and abscisic acid biosynthesis and signaling pathways.

摘要

叶绿素(Chl)的丧失是叶片衰老的一个标志,而叶片衰老可能受到 Chl 降解基因的调控,包括 NON-YELLOW COLORING 1(NYC1)样(NOL)基因。本研究的目的是确定 NOL 调控多年生草本植物叶片衰老的分子因子和代谢途径。从多年生黑麦草(Lolium perenne L.)中克隆出 LpNOL,并发现其在衰老叶片中高度表达。瞬时过表达 LpNOL 可加速拟南芥叶片衰老和 Chl b 的降解。多年生黑麦草中的 LpNOL RNA 干扰(NOLi)不仅显著阻止了衰老叶片中 Chl 的降解,还延迟了叶片衰老的起始和进程。本研究发现,NOL 除了作为 Chl b 还原酶发挥作用外,还可以在多年生草本植物中表现出功能性持绿表型,表现在 NOLi 植株中的光合作用活性增加。比较转录组分析表明,NOL 介导的多年生黑麦草功能性持绿主要是通过调节 Chl 降解、光合作用的光捕获、光呼吸、细胞色素呼吸、碳水化合物分解代谢、氧化解毒以及脱落酸生物合成和信号通路来实现的。

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