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Coordination of plastid and nuclear gene expression

机译:质体和核基因表达的协调

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The coordinated expression of genes distributed between the nuclear and plastid genomes is essential for the assembly of functional chloroplasts. Although the nucleus has a pre-eminent role in controlling chloroplast biogenesis, there is considerable evidence that the expression of nuclear genes encoding photosynthesis-related proteins is regulated by signals from plastids. Perturbation of several plastid-located processes, by inhibitors or in mutants, leads to decreased transcription of a set of nuclear photosynthesis-related genes. Characterization of arabidopsis gun (genomes uncoupled) mutants, which express nuclear genes in the presence of norflurazon or lincomycin, has provided evidence for two separate signalling pathways, one involving tetrapyrrole biosynthesis intermediates and the other requiring plastid protein synthesis. In addition, perturbation of photosynthetic electron transfer produces at least two different redox signals, as part of the acclimation to altered light conditions. The recognition of multiple plastid signals requires a reconsideration of the mechanisms of regulation of transcription of nuclear genes encoding photosynthesis-related proteins. [References: 80]
机译:在核和质体基因组之间分布的基因的协同表达对于功能性叶绿体的组装至关重要。尽管细胞核在控制叶绿体的生物发生中起着重要作用,但是有大量证据表明,编码光合作用相关蛋白的核基因的表达受质体信号调节。抑制剂或突变体对几个质体定位过程的扰动会导致一组核光合作用相关基因的转录降低。拟南芥枪(基因组未偶联)突变体的表征,在存在氟氟龙或林可霉素的情况下表达核基因,为两条单独的信号通路提供了证据,一条涉及四吡咯生物合成中间体,另一条需要质体蛋白合成。另外,作为对改变的光条件的适应的一部分,光合电子传递的扰动产生至少两个不同的氧化还原信号。多个质体信号的识别需要重新考虑编码光合作用相关蛋白的核基因转录调控机制。 [参考:80]

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