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首页> 外文期刊>Systematic Biology >Host-symbiont stability and fast evolutionary rates in an ant-bacterium association: Cospeciation of Camponotus species and their endosymbionts, Candidatus Blochmannia
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Host-symbiont stability and fast evolutionary rates in an ant-bacterium association: Cospeciation of Camponotus species and their endosymbionts, Candidatus Blochmannia

机译:蚂蚁细菌协会中宿主共生体的稳定性和快速的进化速率:Camponotus物种和它们的共生共生体,念珠菌

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摘要

Bacterial endosymbionts are widespread across several insect orders and are involved in interactions ranging from obligate mutualism to reproductive parasitism. Candidatus Blochmannia gen. nov. ( Blochmannia) is an obligate bacterial associate of Camponotus and related ant genera ( Hymenoptera: Formicidae). The occurrence of Blochmannia in all Camponotus species sampled from field populations and its maternal transmission to host offspring suggest that this bacterium is engaged in a long-term, stable association with its ant hosts. However, evidence for cospeciation in this system is equivocal because previous phylogenetic studies were based on limited gene sampling, lacked statistical analysis of congruence, and have even suggested host switching. We compared phylogenies of host genes ( the nuclear EF-1alphaF2 and mitochondrial COI/II) and Blochmannia genes (16S ribosomalDNA[ rDNA], groEL, gidA, and rpsB), totaling more than 7 kilobases for each of 16 Camponotus species. Each data set was analyzed using maximum likelihood and Bayesian phylogenetic reconstruction methods. We found minimal conflict among host and symbiont phylogenies, and the few areas of discordance occurred at deep nodes that were poorly supported by individual data sets. Concatenated protein-coding genes produced a very well-resolved tree that, based on the Shimodaira - Hasegawa test, did not conflict with any host or symbiont data set. Correlated rates of synonymous substitution (d(S)) along corresponding branches of host and symbiont phylogenies further supported the hypothesis of cospeciation. These findings indicate that Blochmannia - Camponotus symbiosis has been evolutionarily stable throughout tens of millions of years. Based on inferred divergence times among the ant hosts, we estimated rates of sequence evolution of Blochmannia to be similar to0.0024 substitutions per site per million years (s/s/MY) for the 16S rDNA gene and similar to 0.1094 s/s/MY at synonymous positions of the genes sampled. These rates are several-fold higher than those for related bacteria Buchnera aphidicola and Escherichia coli. Phylogenetic congruence among Blochmannia genes indicates genome stability that typifies primary endosymbionts of insects.
机译:细菌内共生菌分布在多个昆虫纲中,并参与从专心的共生到生殖寄生的各种相互作用。念珠菌十一月(Blochmannia)是Camponotus和相关蚂蚁属(Hymenoptera:Formicidae)的专性细菌。从田间种群采样的所有Camponotus物种中都出现了Blochmannia及其母体向宿主后代的传播,这表明该细菌与其蚂蚁宿主长期稳定地联系在一起。但是,在此系统中进行共物种鉴定的证据是模棱两可的,因为以前的系统发育研究均基于有限的基因采样,缺乏对同余性的统计分析,甚至还建议进行宿主切换。我们比较了宿主基因(核EF-1alphaF2和线粒体COI / II)和Blochmannia基因(16S核糖体DNA [rDNA],groEL,gidA和rpsB)的系统发育,对于16个Camponotus物种,总计超过7个碱基。使用最大似然和贝叶斯系统发育重建方法分析每个数据集。我们发现宿主和共生系统发育之间的冲突极小,并且不一致的区域很少发生在个别数据集支持不充分的深层节点上。根据Shimodaira-Hasegawa测试,串联的蛋白质编码基因产生了一个分辨率很好的树,该树与任何宿主或共生体数据集都不冲突。沿宿主和共生系统发育的相应分支的同义替代率(d(S))的相关比率进一步支持了共构化的假设。这些发现表明,在数千万年的时间里,Blochmannia-Camponotus共生一直在进化上稳定。根据推论的蚂蚁宿主之间的分歧时间,我们估计Blochmannia的序列进化速率类似于16S rDNA基因每位每百万年0.0024个位点(s / s / MY),接近0.1094 s / s / MY位于所采样基因的同义词位置。这些比率比相关细菌蚜虫(Buchnera aphidicola)和大肠杆菌要高出几倍。 Blochmannia基因之间的系统发生一致性表明昆虫的主要内共生体的基因组稳定性。

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