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Organization, developmental dynamics, and evolution of plastid nucleoids.

机译:质体核苷的组织,发育动力学和进化。

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摘要

The plastid is a semiautonomous organelle essential in photosynthesis and other metabolic activities of plants and algae. Plastid DNA is organized into the nucleoid with various proteins and RNA, and the nucleoid is subject to dynamic changes during the development of plant cells. Characterization of the major DNA-binding proteins of nucleoids revealed essential differences in the two lineages of photosynthetic eukaryotes, namely nucleoids of green plants contain sulfite reductase as a major DNA-binding protein that represses the genomic activity, whereas the prokaryotic DNA-binding protein HU is abundant in plastid nucleoids of the rhodophyte lineage. In addition, current knowledge on DNA-binding proteins, as well as the replication and transcription systems of plastids, is reviewed from comparative and evolutionary points of view. A revised hypothesis on the discontinuous evolution of plastid genomic machinery is presented: despite the cyanobacterial origin of plastids, the genomic machinery of the plastid genome is fundamentally different from its counterpart in cyanobacteria.
机译:质体是植物和藻类的光合作用和其他代谢活动必不可少的半自治细胞器。质体DNA与各种蛋白质和RNA一起组织成核仁,并且该核仁在植物细胞发育过程中会发生动态变化。核苷酸的主要DNA结合蛋白的表征揭示了光合作用真核生物的两个谱系之间的本质差异,即绿色植物的核苷酸含有亚硫酸盐还原酶作为抑制基因组活性的主要DNA结合蛋白,而原核DNA结合蛋白HU在红藻系的质体核苷中含量丰富。另外,从比较和进化的观点回顾了关于DNA结合蛋白以及质体的复制和转录系统的当前知识。提出了关于质体基因组机制的不连续进化的修正假说:尽管质体是蓝细菌的起源,但质体基因组的基因组机制与蓝细菌中的对应体在本质上是不同的。

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