首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >The establishment of intracellular symbiosis in an ancestor of cockroaches and termites.
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The establishment of intracellular symbiosis in an ancestor of cockroaches and termites.

机译:在蟑螂和白蚁的祖先中建立细胞内共生。

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摘要

All cockroaches examined so far have been found to harbour a bacterial endosymbiont in specialized cells of the fat body, whereas Mastotermes darwiniensis is the only termite currently known to harbour an intracellular symbiont. The localization and mode of transmission of these bacteria are surprisingly similar, but so far no data have been published on their phylogenetic relationships. To address this issue, molecular sequence data were obtained from the genes encoding the small subunit ribosomal RNA of the M. darwiniensis endosymbiont, and compared with those obtained from endosymbionts of seven species of cockroaches. Molecular phylogenetic analysis unambiguously placed all these bacteria among the flavobacteria-bacteroides, indicating that the endosymbiont of M. darwiniensis is the sister group to the cockroach endosymbionts examined. Additionally, nucleotide divergence between the endosymbionts appears to be congruent with the palaeontological data on the hosts's evolution. These results support previous claims that the original infection occurred in an ancestor common to cockroaches and termites. A loss of endosymbionts should subsequently have occurred in all termite lineages, except that which gave rise to M. darwiniensis.
机译:迄今为止发现的所有蟑螂在脂肪体的特化细胞中都具有细菌内共生体,而达尔文长毛白蚁是目前已知唯一具有细胞内共生体的白蚁。这些细菌的定位和传播方式令人惊讶地相似,但是到目前为止,尚未有关于它们的系统发生关系的数据发表。为了解决这个问题,从编码达尔文分枝杆菌内共生菌小亚基核糖体RNA的基因中获得了分子序列数据,并将其与从七种蟑螂的内共生菌中获得的序列进行了比较。分子系统发育分析明确地将所有这些细菌置于黄细菌-类细菌中,表明达尔文分枝杆菌的内共生是蟑螂内共生的姊妹组。另外,内共生体之间的核苷酸差异似乎与宿主进化的古生物学数据一致。这些结果支持了先前的说法,即原始感染发生在蟑螂和白蚁共同的祖先中。除引起达尔文支原体的那些外,所有白蚁谱系随后都应发生共生共生体的丧失。

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