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脱落酸通过蛋白磷酸酶 2C 依赖性激活核基因影响叶绿体基因的转录:鸟苷-3'-5'-双磷酸的抑制作用和 σ 因子 5 的激活作用。

Abscisic acid affects transcription of chloroplast genes via protein phosphatase 2C-dependent activation of nuclear genes: repression by guanosine-3'-5'-bisdiphosphate and activation by sigma factor 5.

机构信息

Institute of Biology-Genetics, Faculty of Life Sciences, Humboldt University, Chausseestrasse 117, 10115, Berlin, Germany.

出版信息

Plant J. 2015 Jun;82(6):1030-1041. doi: 10.1111/tpj.12876.

DOI:10.1111/tpj.12876
PMID:25976841
Abstract

Abscisic acid (ABA) represses the transcriptional activity of chloroplast genes (determined by run-on assays), with the exception of psbD and a few other genes in wild-type Arabidopsis seedlings and mature rosette leaves. Abscisic acid does not influence chloroplast transcription in the mutant lines abi1-1 and abi2-1 with constitutive protein phosphatase 2C (PP2C) activity, suggesting that ABA affects chloroplast gene activity by binding to the pyrabactin resistance (PYR)/PYR1-like or regulatory component of ABA receptor protein family (PYR/PYL/RCAR) and signaling via PP2Cs and sucrose non-fermenting protein-related kinases 2 (SnRK2s). Further we show by quantitative PCR that ABA enhances the transcript levels of RSH2, RSH3, PTF1 and SIG5. RelA/SpoT homolog 2 (RSH2) and RSH3 are known to synthesize guanosine-3'-5'-bisdiphosphate (ppGpp), an inhibitor of the plastid-gene-encoded chloroplast RNA polymerase. We propose, therefore, that ABA leads to an inhibition of chloroplast gene expression via stimulation of ppGpp synthesis. On the other hand, sigma factor 5 (SIG5) and plastid transcription factor 1 (PTF1) are known to be necessary for the transcription of psbD from a specific light- and stress-induced promoter (the blue light responsive promoter, BLRP). We demonstrate that ABA activates the psbD gene by stimulation of transcription initiation at BLRP. Taken together, our data suggest that ABA affects the transcription of chloroplast genes by a PP2C-dependent activation of nuclear genes encoding proteins involved in chloroplast transcription.

摘要

脱落酸(ABA)抑制质体基因的转录活性(通过运行试验确定),但野生型拟南芥幼苗和成熟莲座叶中的 psbD 和少数其他基因除外。在具有组成型蛋白磷酸酶 2C(PP2C)活性的突变体 abi1-1 和 abi2-1 中,ABA 不影响质体转录,这表明 ABA 通过与吡喃并嘧啶抗性(PYR)/PYR1 样或 ABA 受体蛋白家族的调节成分(PYR/PYL/RCAR)结合来影响质体基因活性,并通过 PP2Cs 和蔗糖非发酵蛋白相关激酶 2(SnRK2s)进行信号传递。此外,我们通过定量 PCR 表明 ABA 增强了 RSH2、RSH3、PTF1 和 SIG5 的转录水平。RelA/SpoT 同源物 2(RSH2)和 RSH3 已知合成鸟苷-3'-5'-双二磷酸(ppGpp),这是质体基因编码的质体 RNA 聚合酶的抑制剂。因此,我们提出 ABA 通过刺激 ppGpp 合成导致质体基因表达的抑制。另一方面,sigma 因子 5(SIG5)和质体转录因子 1(PTF1)已知是 psbD 从特定光和应激诱导启动子(蓝光反应启动子,BLRP)转录所必需的。我们证明 ABA 通过刺激 BLRP 处的转录起始来激活 psbD 基因。总之,我们的数据表明,ABA 通过激活参与质体转录的核基因编码蛋白的 PP2C 依赖性激活来影响质体基因的转录。

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