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首页> 外文期刊>Plant physiology >Involvement of protein kinase and extraplastidic serine/threonine protein phosphatases in signaling pathways regulating plastid transcription and the psbD blue light-responsive promoter in barley.
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Involvement of protein kinase and extraplastidic serine/threonine protein phosphatases in signaling pathways regulating plastid transcription and the psbD blue light-responsive promoter in barley.

机译:蛋白激酶和质外丝氨酸/苏氨酸蛋白磷酸酶参与调控大麦质体转录和psbD蓝光响应启动子的信号传导途径。

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摘要

The signalling pathways that control changes in plastid transcription in response to development and light were investigated. Plastid gene expression was analysed in dark-grown barley (Hordeum vulgare) cv. Excell seedlings treated in vivo with an inhibitor of protein phosphatases 1 and 2A, okadaic acid (OA), or an inhibitor of protein kinases (K252a), followed by exposure of the seedlings to either red, blue, or white light. OA prevented blue light from activating the plastid psbD blue-light-responsive promoter (BLRP) and prevented red and blue light from activating the expression of the plastid-encoded rbcL and psbA and the nuclear-encoded RbcS and Lhcb genes. OA reduced total plastid transcription activity in dark- and light-grown seedlings by 77 to 80%, indicating that OA prevented light-responsive transcription by reducing total plastid transcription. In contrast, K252a activated the accumulation of mRNAs arising from the BLRP. Blue light in combination with K252a increased psbD mRNA levels in an additive manner. The results indicate that protein phosphatases 1 and/or 2A, which reside external to the organelle, are required for proper function of plastid transcription and chloroplast development, whereas a protein kinase represses the BLRP in plants grown in the dark.
机译:研究了响应发育和光照控制质体转录变化的信号传导途径。在黑大麦(Hordeum vulgare)cv中分析质体基因表达。用蛋白磷酸酶1和2A抑制剂,冈田酸(OA)或蛋白激酶抑制剂(K252a)体内处理的Excell幼苗,然后将幼苗暴露于红,蓝或白光。 OA阻止了蓝光激活质体psbD蓝光响应启动子(BLRP),并且阻止了红光和蓝光激活质体编码的rbcL和psbA以及核编码的RbcS和Lhcb基因的表达。 OA使深色和浅色幼苗中的总质体转录活性降低77%至80%,这表明OA通过降低总质体转录阻止了光响应性转录。相反,K252a激活了BLRP产生的mRNA的积累。蓝光与K252a的组合可增加psbD mRNA的水平。结果表明,位于细胞器外部的蛋白磷酸酶1和/或2A是质体转录和叶绿体发育的正常功能所必需的,而蛋白激酶可抑制在黑暗中生长的植物中的BLRP。

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