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从前记忆从草履虫基因组中被检索到。

Remembrance of things past retrieved from the Paramecium genome.

机构信息

Centre de Génétique Moléculaire, CNRS UPR3404, Avenue de la Terrasse, 91198 Gif-sur-Yvette, France.

出版信息

Res Microbiol. 2011 Jul-Aug;162(6):587-97. doi: 10.1016/j.resmic.2011.02.012. Epub 2011 Mar 21.

Abstract

Paramecium and other ciliates are the only unicellular eukaryotes that separate germinal and somatic functions. A germline micronucleus transmits the genetic information to sexual progeny, while a somatic macronucleus expresses the genetic information during vegetative growth to determine the phenotype. At each sexual generation, a new macronucleus develops from the zygotic nucleus through programmed rearrangements of the germline genome. Paramecium tetraurelia somatic genome sequencing, reviewed here, has provided insight into the organization and evolution of the genome. A series of at least 3 whole genome duplications was detected in the Paramecium lineage and selective pressures that determine the fate of the gene duplicates analyzed. Variability in the somatic DNA was characterized and could be attributed to the genome rearrangement processes. Since, in Paramecium, alternative genome rearrangement patterns can be inherited across sexual generations by homology-dependent epigenetic mechanisms and can affect phenotype, I discuss the possibility that ciliate nuclear dimorphism buffers genetic variation hidden in the germline.

摘要

草履虫和其他纤毛虫是唯一具有生殖和体细胞功能分离的单细胞真核生物。生殖系微核将遗传信息传递给有性后代,而体细胞 Macronucleus 在营养生长过程中表达遗传信息以确定表型。在每一个有性世代中,一个新的 Macronucleus 从合子核通过生殖系基因组的程序性重排发育而来。这里回顾的草履虫体细胞基因组测序为基因组的组织和进化提供了线索。在草履虫谱系中检测到至少一系列 3 次全基因组重复,分析了决定基因重复命运的选择压力。对体细胞 DNA 的变异性进行了表征,并可归因于基因组重排过程。由于在草履虫中,通过同源依赖性表观遗传机制可以在有性世代中遗传替代的基因组重排模式,并可能影响表型,因此我讨论了纤毛虫核二态性缓冲生殖系中隐藏的遗传变异的可能性。

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