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Abscisic acid represses the transcription of chloroplast genes.

机译:脱落酸抑制叶绿体基因的转录。

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Numerous studies have shown effects of abscisic acid (ABA) on nuclear genes encoding chloroplast-localized proteins. ABA effects on the transcription of chloroplast genes, however, have not been investigated yet thoroughly. This work, therefore, studied the effects of ABA (75 micro M) on transcription and steady-state levels of transcripts in chloroplasts of basal and apical segments of primary leaves of barley (Hordeum vulgare L.). Basal segments consist of young cells with developing chloroplasts, while apical segments contain the oldest cells with mature chloroplasts. Exogenous ABA reduced the chlorophyll content and caused changes of the endogenous concentrations not only of ABA but also of cytokinins to different extents in the basal and apical segments. It repressed transcription by the chloroplast phage-type and bacteria-type RNA polymerases and lowered transcript levels of most investigated chloroplast genes drastically. ABA did not repress the transcription of psbD and a few other genes and even increased psbD mRNA levels under certain conditions. The ABA effects on chloroplast transcription were more pronounced in basal vs. apical leaf segments and enhanced by light. Simultaneous application of cytokinin (22 micro M 6-benzyladenine) minimized the ABA effects on chloroplast gene expression. These data demonstrate that ABA affects the expression of chloroplast genes differentially and points to a role of ABA in the regulation and coordination of the activities of nuclear and chloroplast genes coding for proteins with functions in photosynthesis.
机译:大量研究表明,脱落酸(ABA)对编码叶绿体定位蛋白的核基因有影响。然而,尚未完全研究ABA对叶绿体基因转录的影响。因此,这项工作研究了ABA(75 micro M)对大麦(Hordeum vulgare L.)初级叶的基部和顶端部分叶绿体中转录和稳态转录水平的影响。基底节由具有发育叶绿体的年轻细胞组成,而顶端节包含具有成熟叶绿体的最老细胞。外源ABA降低叶绿素含量,不仅引起ABA的内源浓度变化,而且引起基底和根尖内细胞分裂素的内源浓度变化程度不同。它通过叶绿体噬菌体型和细菌型RNA聚合酶抑制转录,并大大降低了大多数研究的叶绿体基因的转录水平。在某些条件下,ABA不会抑制psbD和其他一些基因的转录,甚至不会增加psbD mRNA的水平。 ABA对叶绿体转录的影响在基础叶和顶端叶段中更为明显,并通过光照增强。同时应用细胞分裂素(22 micro M 6-苄基腺嘌呤)可最大程度地降低ABA对叶绿体基因表达的影响。这些数据表明,ABA差异地影响叶绿体基因的表达,并指出ABA在调节和协调编码具有光合作用功能的蛋白质的核和叶绿体基因活性中的作用。

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