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膜翅目寄生蜂(膜翅目:细腰亚目)线粒体基因组的快速进化是由寄生生活方式驱动的。

Rapid evolution of the mitochondrial genome in Chalcidoid wasps (Hymenoptera: Chalcidoidea) driven by parasitic lifestyles.

机构信息

Key Laboratory of Zoological Systematics and Evolution, Institute of Zoology, Chinese Academy of Sciences, Beijing, China.

出版信息

PLoS One. 2011;6(11):e26645. doi: 10.1371/journal.pone.0026645. Epub 2011 Nov 2.

Abstract

Among the Chalcidoids, hymenopteran parasitic wasps that have diversified lifestyles, a partial mitochondrial genome has been reported only from Nasonia. This genome had many unusual features, especially a dramatic reorganization and a high rate of evolution. Comparisons based on more mitochondrial genomic data from the same superfamily were required to reveal weather these unusual features are peculiar to Nasonia or not. In the present study, we sequenced the nearly complete mitochondrial genomes from the species Philotrypesis. pilosa and Philotrypesis sp., both of which were associated with Ficus hispida. The acquired data included all of the protein-coding genes, rRNAs, and most of the tRNAs, and in P. pilosa the control region. High levels of nucleotide divergence separated the two species. A comparison of all available hymenopteran mitochondrial genomes (including a submitted partial genome from Ceratosolen solmsi) revealed that the Chalcidoids had dramatic mitochondrial gene rearrangments, involved not only the tRNAs, but also several protein-coding genes. The AT-rich control region was translocated and inverted in Philotrypesis. The mitochondrial genomes also exhibited rapid rates of evolution involving elevated nonsynonymous mutations.

摘要

在膜翅目寄生蜂的缨翅目蜂类中,已经报道了部分线粒体基因组,但仅限于 Nasonia。该基因组具有许多不寻常的特征,特别是剧烈的重排和高进化率。需要基于来自同一超科的更多线粒体基因组数据进行比较,才能揭示这些不寻常的特征是否仅与 Nasonia 有关。在本研究中,我们从与榕属植物有关的 Philotrypesis pilosa 和 Philotrypesis sp. 物种中测序了几乎完整的线粒体基因组。获得的数据包括所有蛋白质编码基因、rRNA 和大多数 tRNA,以及 P. pilosa 的调控区。高核苷酸差异将两个物种区分开来。对所有可用的膜翅目线粒体基因组(包括 Ceratosolen solmsi 的提交部分基因组)的比较表明,缨翅目具有剧烈的线粒体基因重排,不仅涉及 tRNA,还涉及几个蛋白质编码基因。富含 AT 的调控区在 Philotrypesis 中转位和倒置。线粒体基因组还表现出快速进化的速度,涉及升高的非同义突变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c060/3206819/d866323ff21e/pone.0026645.g001.jpg

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