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首页> 外文期刊>Zeitschrift fur Naturforschung, C. A Journal of Biosciences >Darkness affects differentially the expression of plastid-encoded genes and delays the senescence-induced down-regulation of chloroplast transcription in cotyledons of Cucurbita pepo L. (Zucchini)
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Darkness affects differentially the expression of plastid-encoded genes and delays the senescence-induced down-regulation of chloroplast transcription in cotyledons of Cucurbita pepo L. (Zucchini)

机译:黑暗度不同地影响质体编码基因的表达,并延迟衰老诱导的南瓜子叶中叶绿体转录的下调。

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摘要

In contrast to differentiated leaves, the regulatory mechanisms of chloroplast gene expression in darkened cotyledons have not been elucidated. Although some results have been reported indicating accelerated senescence in Arabidopsis upon reillumination, the capacity of cotyledons to recover after dark stress remains unclear. We analysed the effect of twodays dark stress, applied locally or at the whole-plant level, on plastid gene expression in zucchini cotyledons. Our results showed that in the dark the overall chloroplast transcription rate was much more inhibited than the nuclear run-on transcription. While the activities of the plastid-encoded RNA polymerase (PEP) and nuclear RNA polymerase II were strongly reduced, the activities of the nuclear-encoded plastid RNA polymerase (NEP) and nuclear RNA polymerase I were less affected. During recovery upon reillumination, chloroplast transcription in the cotyledons was strongly stimulated (3-fold) compared with the naturally senescing controls, suggesting delayed senescence. Northern blot and dot blot analyses of the expression of key chloroplast-encoded photosynthetic genes showed that in contrast to psbA, which remained almost unaffected, both the transcription rate and mRNA content of psaB and rbcL were substantially decreased.
机译:与分化的叶片相反,在黑暗的子叶中叶绿体基因表达的调控机制尚未阐明。尽管已经报道了一些结果,表明在重新照明后拟南芥加速了衰老,但子叶在黑暗胁迫下恢复的能力仍然不清楚。我们分析了在本地或在整个植物水平上施加两天黑暗胁迫对西葫芦子叶中质体基因表达的影响。我们的结果表明,在黑暗中,总的叶绿体转录速率比核运行转录更受抑制。虽然质体编码的RNA聚合酶(PEP)和核RNA聚合酶II的活性大大降低,但核编码的质体RNA聚合酶(NEP)和核RNA聚合酶I的活性受到的影响较小。在重新照明后的恢复过程中,与天然感觉对照相比,子叶中的叶绿体转录受到了强烈刺激(3倍),表明衰老延迟。对主要叶绿体编码的光合作用基因的表达进行Northern印迹和点印迹分析表明,与几乎不受影响的psbA相比,psaB和rbcL的转录速率和mRNA含量均大大降低。

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