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一个由 NAC 转录因子 ANAC092/AtNAC2/ORE1 调控的基因调控网络,在盐诱导衰老过程中发挥作用。

A gene regulatory network controlled by the NAC transcription factor ANAC092/AtNAC2/ORE1 during salt-promoted senescence.

机构信息

University of Potsdam, Institute of Biochemistry and Biology, Karl-Liebknecht-Strasse 24-25, Haus 20, 14476 Potsdam-Golm, Germany.

出版信息

Plant J. 2010 Apr;62(2):250-64. doi: 10.1111/j.1365-313X.2010.04151.x. Epub 2010 Jan 22.

Abstract

The onset and progression of senescence are under genetic and environmental control. The Arabidopsis thaliana NAC transcription factor ANAC092 (also called AtNAC2 and ORE1) has recently been shown to control age-dependent senescence, but its mode of action has not been analysed yet. To explore the regulatory network administered by ANAC092 we performed microarray-based expression profiling using estradiol-inducible ANAC092 overexpression lines. Approximately 46% of the 170 genes up-regulated upon ANAC092 induction are known senescence-associated genes, suggesting that the NAC factor exerts its role in senescence through a regulatory network that includes many of the genes previously reported to be senescence regulated. We selected 39 candidate genes and confirmed their time-dependent response to enhanced ANAC092 expression by quantitative RT-PCR. We also found that the majority of them (24 genes) are up-regulated by salt stress, a major promoter of plant senescence, in a manner similar to that of ANAC092, which itself is salt responsive. Furthermore, 24 genes like ANAC092 turned out to be stage-dependently expressed during seed growth with low expression at early and elevated expression at late stages of seed development. Disruption of ANAC092 increased the rate of seed germination under saline conditions, whereas the opposite occurred in respective overexpression plants. We also detected a delay of salinity-induced chlorophyll loss in detached anac092-1 mutant leaves. Promoter-reporter (GUS) studies revealed transcriptional control of ANAC092 expression during leaf and flower ageing and in response to salt stress. We conclude that ANAC092 exerts its functions during senescence and seed germination through partly overlapping target gene sets.

摘要

衰老的发生和发展受遗传和环境控制。拟南芥 NAC 转录因子 ANAC092(也称为 AtNAC2 和 ORE1)最近被证明控制着与年龄相关的衰老,但它的作用方式尚未得到分析。为了探索 ANAC092 管理的调控网络,我们使用雌二醇诱导的 ANAC092 过表达系进行了基于微阵列的表达谱分析。在 ANAC092 诱导下上调的 170 个基因中,约有 46%是已知的与衰老相关的基因,这表明 NAC 因子通过一个包括许多以前报道的与衰老调控相关的基因的调控网络发挥其在衰老中的作用。我们选择了 39 个候选基因,并通过定量 RT-PCR 证实了它们对增强的 ANAC092 表达的时间依赖性反应。我们还发现,它们中的大多数(24 个基因)在盐胁迫下被上调,盐胁迫是植物衰老的主要促进因素,其方式与 ANAC092 相似,而 ANAC092 本身对盐胁迫有反应。此外,像 ANAC092 一样,24 个基因在种子生长过程中表现出阶段依赖性表达,在种子发育的早期表达水平较低,晚期表达水平较高。在盐胁迫条件下,anac092-1 突变体的种子发芽率增加,而在相应的过表达植物中则相反。我们还检测到盐胁迫诱导的叶绿素丧失在离体 anac092-1 突变体叶片中延迟。启动子报告(GUS)研究表明,ANAC092 在叶片和花衰老过程中以及对盐胁迫的反应中受到转录调控。我们得出结论,ANAC092 通过部分重叠的靶基因集在衰老和种子萌发过程中发挥其功能。

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