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首页> 外文期刊>Plant and cell physiology >PRDA1, a novel chloroplast nucleoid protein, is required for early chloroplast development and is involved in the regulation of plastid gene expression in Arabidopsis.
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PRDA1, a novel chloroplast nucleoid protein, is required for early chloroplast development and is involved in the regulation of plastid gene expression in Arabidopsis.

机译:PRDA1是新型叶绿体核苷酸蛋白,是早期叶绿体发育所必需的,并且参与拟南芥中质体基因表达的调控。

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摘要

Chloroplast development requires accurate spatio-temporal expression of plastid genes. The regulation of plastid genes mediated by plastid-encoded RNA polymerase (PEP) is rather complex, and its related mechanism remains largely unclear. Here, we report the identification of a novel protein that is essential for plant development, PEP-Related Development Arrested 1 (PRDA1). Knock-out of PRDA1 in Arabidopsis (prda1 mutant) caused a seedling-lethal, albino phenotype and arrested the development of leaf chloroplasts. Localization analysis showed that PRDA1 was specifically targeted to chloroplasts and co-localized with chloroplast nucleoids, revealing that PRDA1 is a chloroplast nucleoid-associated protein. Gene expression analyses revealed that the PEP-dependent plastid transcript levels were greatly reduced in prda1. PRDA1 was co-expressed with most of the PEP-associated proteins. Protein interaction assays showed that PRDA1 clearly interacts with MRL7 and FSD2, both of which have been verified as essential for PEP-related chloroplast development. Reactive oxygen species scavenging through dimethylthiourea markedly alleviated the cotyledon-albino phenotypes of PRDA1 and MRL7 RNA interference seedlings. These results demonstrate that PRDA1 is required for early chloroplast development and involved in the regulation of plastid gene expression.
机译:叶绿体发育需要质体基因的准确时空表达。由质体编码的RNA聚合酶(PEP)介导的质体基因的调控是相当复杂的,其相关的机制仍不清楚。在这里,我们报告鉴定一种对植物发育必不可少的新型蛋白质,PEP相关发育抑制1(PRDA1)。 PRDA1的敲除在拟南芥中(prda1突变体)引起了幼苗致命的白化病表型,并阻止了叶绿体的发育。定位分析表明PRDA1专门针对叶绿体并与叶绿体核苷酸共定位,表明PRDA1是叶绿体核苷酸相关蛋白。基因表达分析表明,prda1中PEP依赖的质体转录物水平大大降低。 PRDA1与大多数PEP相关蛋白共表达。蛋白质相互作用测定表明PRDA1明显与MRL7和FSD2相互作用,这两者均已被证明对PEP相关叶绿体发育至关重要。通过二甲基硫脲清除活性氧可显着减轻PRDA1和MRL7 RNA干扰幼苗的子叶-白化病表型。这些结果表明PRDA1是早期叶绿体发育所必需的,并且参与质体基因表达的调节。

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