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新型转录激活因子 BrNAC055 通过调节活性氧产生和叶绿素降解调控白菜叶片衰老。

BrNAC055, a Novel Transcriptional Activator, Regulates Leaf Senescence in Chinese Flowering Cabbage by Modulating Reactive Oxygen Species Production and Chlorophyll Degradation.

出版信息

J Agric Food Chem. 2018 Sep 12;66(36):9399-9408. doi: 10.1021/acs.jafc.8b02309. Epub 2018 Aug 29.

DOI:10.1021/acs.jafc.8b02309
PMID:30133277
Abstract

Both NAC transcription factors (TFs) and reactive oxygen species (ROS) are known to be involved in leaf senescence. However, how NAC TFs modulate ROS metabolism associated with leaf senescence remains largely uncharacterized, especially during leaf senescence of postharvest economically leafy vegetables such as Chinese flowering cabbage. Here, we found that expression levels of two genes BrRbohB and BrRbohC-like encoding ROS-producing enzymes respiratory burst oxidase homologues (RBOHs) were increased consistently with the progression of postharvest leaf senescence, exhibiting a good correlation with ROS accumulation and chlorophyll degradation, as well as expressions of two chlorophyll catabolic genes ( CCGs), BrNYC1 and BrNYE1. Significantly, a novel, nuclear-localized transcriptional activator BrNAC055 was identified, and observed to show a similar expression pattern with BrRbohB, BrRbohC-like, BrNYC1 and BrNYE1. Further gel mobility shift and dual luciferase reporter assays confirmed that BrNAC055 bound directly to the NAC binding sequence (NACBS) in BrRbohB, BrRbohC-like, BrNYC1, and BrNYE1 promoters, and activated their activities. Moreover, transient overexpression of BrNAC055 in tobacco leaves made an increased ROS level and accelerated chlorophyll degradation via the up-regulation of NbRbohA and NbSGR1, resulting in the promoted leaf senescence. On the basis of these findings, we conclude that BrNAC055 acts as a transcriptional activator of ROS production and chlorophyll degradation by activating the transcriptions of RBOHs and CCGs and thereby accelerates leaf senescence in Chinese flowering cabbage.

摘要

NAC 转录因子(TFs)和活性氧(ROS)都已知参与叶片衰老。然而,NAC TFs 如何调节与叶片衰老相关的 ROS 代谢仍然在很大程度上未被描述,特别是在采后经济叶菜如花椰菜的叶片衰老过程中。在这里,我们发现编码 ROS 产生酶呼吸爆发氧化酶同源物(RBOHs)的两个基因 BrRbohB 和 BrRbohC-like 的表达水平随着采后叶片衰老的进展而持续增加,与 ROS 积累和叶绿素降解以及两个叶绿素降解基因(CCGs) BrNYC1 和 BrNYE1 的表达呈良好相关性。重要的是,鉴定出了一个新的核定位转录激活因子 BrNAC055,并且观察到其与 BrRbohB、BrRbohC-like、BrNYC1 和 BrNYE1 的表达模式相似。进一步的凝胶迁移率变动和双荧光素酶报告基因分析证实,BrNAC055 直接结合到 BrRbohB、BrRbohC-like、BrNYC1 和 BrNYE1 启动子中的 NAC 结合序列(NACBS),并激活它们的活性。此外,BrNAC055 在烟草叶片中的瞬时过表达导致 ROS 水平升高和叶绿素降解加速,这是通过上调 NbRbohA 和 NbSGR1 实现的,从而促进了叶片衰老。基于这些发现,我们得出结论,BrNAC055 通过激活 RBOHs 和 CCGs 的转录,作为 ROS 产生和叶绿素降解的转录激活因子,从而加速花椰菜的叶片衰老。

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