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木虱主要细菌内共生体的共分化与宿主转换及其次生细菌内共生体的替代

Codivergence of the primary bacterial endosymbiont of psyllids versus host switches and replacement of their secondary bacterial endosymbionts.

作者信息

Hall Aidan A G, Morrow Jennifer L, Fromont Caroline, Steinbauer Martin J, Taylor Gary S, Johnson Scott N, Cook James M, Riegler Markus

机构信息

Hawkesbury Institute for the Environment, Western Sydney University, Penrith, NSW 2751, Australia.

Department of Ecology, Environment & Evolution, La Trobe University, Melbourne, VIC 3084, Australia.

出版信息

Environ Microbiol. 2016 Sep;18(8):2591-603. doi: 10.1111/1462-2920.13351. Epub 2016 May 26.

Abstract

Coevolution between insects and bacterial endosymbionts contributes to the success of many insect lineages. For the first time, we tested for phylogenetic codivergence across multiple taxonomic scales, from within genera to superfamily between 36 psyllid species of seven recognised families (Hemiptera: Psylloidea), their exclusive primary endosymbiont Carsonella and more diverse secondary endosymbionts (S-endosymbionts). Within Aphalaridae, we found that Carsonella and S-endosymbionts were fixed in one Glycaspis and 12 Cardiaspina populations. The dominant S-endosymbiont was Arsenophonus, while Sodalis was detected in one Cardiaspina species. We demonstrated vertical transmission for Carsonella and Arsenophonus in three Cardiaspina species. We found strong support for strict cospeciation and validated the informative content of Carsonella as extended host genome for inference of psyllid relationships. However, S-endosymbiont and host phylogenies were incongruent, and displayed signs of host switching and endosymbiont replacement. The high incidence of Arsenophonus in psyllids and other plant sap-feeding Hemiptera may be due to repeated host switching within this group. In two psyllid lineages, Arsenophonus and Sodalis genes exhibited accelerated evolutionary rates and AT-biases characteristic of long-term host associations. Together with strict vertical transmission and 100% prevalence within host populations, our results suggest an obligate, and not facultative, symbiosis between psyllids and some S-endosymbionts.

摘要

昆虫与其细菌内共生体之间的协同进化促进了许多昆虫谱系的成功。我们首次在多个分类尺度上测试了系统发育共分化,范围从属内到七个公认科(半翅目:木虱总科)的36种木虱物种之间的超科,它们唯一的初级内共生体卡氏菌以及更多样化的次级内共生体(S-内共生体)。在蚜木虱科中,我们发现卡氏菌和S-内共生体在一个吉氏木虱属和12个卡氏木虱属种群中是固定存在的。占主导地位的S-内共生体是嗜菌属,而在一个卡氏木虱属物种中检测到了索氏菌属。我们在三种卡氏木虱属物种中证明了卡氏菌和嗜菌属的垂直传播。我们发现了对严格共物种形成的有力支持,并验证了卡氏菌作为扩展宿主基因组用于推断木虱关系的信息含量。然而,S-内共生体和宿主的系统发育不一致,并显示出宿主转换和内共生体替代的迹象。嗜菌属在木虱和其他吸食植物汁液的半翅目中的高发生率可能是由于该群体内反复的宿主转换。在两个木虱谱系中,嗜菌属和索氏菌属的基因表现出加速的进化速率和长期宿主关联所特有的AT偏向性。连同严格的垂直传播和在宿主种群中的100%流行率,我们的结果表明木虱与一些S-内共生体之间存在专性而非兼性共生关系。

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