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在细菌基因组中发现完整的准种

Discovering Complete Quasispecies in Bacterial Genomes.

作者信息

Bertels Frederic, Gokhale Chaitanya S, Traulsen Arne

机构信息

Department of Evolutionary Theory, Max Planck Institute for Evolutionary Biology, 24306 Plön, Germany

Department of Evolutionary Theory, Max Planck Institute for Evolutionary Biology, 24306 Plön, Germany.

出版信息

Genetics. 2017 Aug;206(4):2149-2157. doi: 10.1534/genetics.117.201160. Epub 2017 Jun 19.

Abstract

Mobile genetic elements can be found in almost all genomes. Possibly the most common nonautonomous mobile genetic elements in bacteria are epetitive xtragenic alindromic doublets forming hairps (REPINs) that can occur hundreds of times within a genome. The sum of all REPINs in a genome can be viewed as an evolving population because REPINs replicate and mutate. In contrast to most other biological populations, we know the exact composition of the REPIN population and the sequence of each member of the population. Here, we model the evolution of REPINs as quasispecies. We fit our quasispecies model to 10 different REPIN populations from 10 different bacterial strains and estimate effective duplication rates. Our estimated duplication rates range from ∼5 × 10 to 15 × 10 duplications per bacterial generation per REPIN. The small range and the low level of the REPIN duplication rates suggest a universal trade-off between the survival of the REPIN population and the reduction of the mutational load for the host genome. The REPIN populations we investigated also possess features typical of other natural populations. One population shows hallmarks of a population that is going extinct, another population seems to be growing in size, and we also see an example of competition between two REPIN populations.

摘要

移动遗传元件几乎存在于所有基因组中。细菌中最常见的非自主移动遗传元件可能是形成发夹结构的重复性基因外回文双峰(REPINs),它们在一个基因组中可能出现数百次。基因组中所有REPINs的总和可被视为一个不断进化的群体,因为REPINs会复制和突变。与大多数其他生物群体不同,我们知道REPIN群体的确切组成以及群体中每个成员的序列。在这里,我们将REPINs的进化建模为准种。我们将准种模型应用于来自10种不同细菌菌株的10个不同REPIN群体,并估计有效复制率。我们估计的复制率范围为每个细菌世代每个REPIN约5×10至15×10次复制。REPIN复制率的小范围和低水平表明,在REPIN群体的生存与宿主基因组突变负荷的降低之间存在普遍的权衡。我们研究的REPIN群体还具有其他自然群体的典型特征。一个群体显示出即将灭绝的特征,另一个群体似乎在扩大规模,我们还看到了两个REPIN群体之间竞争的例子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c712/5560812/2b3edda92bdd/2149fig1.jpg

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