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宿主系统发育在塑造低等白蚁后肠微生物多样性方面的作用各不相同。

The role of host phylogeny varies in shaping microbial diversity in the hindguts of lower termites.

作者信息

Tai Vera, James Erick R, Nalepa Christine A, Scheffrahn Rudolf H, Perlman Steve J, Keeling Patrick J

机构信息

Department of Botany, University of British Columbia, Vancouver, BC, Canada Integrated Microbial Biodiversity Program, Canadian Institute for Advanced Research, Toronto, ON, Canada

Department of Botany, University of British Columbia, Vancouver, BC, Canada.

出版信息

Appl Environ Microbiol. 2015 Feb;81(3):1059-70. doi: 10.1128/AEM.02945-14. Epub 2014 Dec 1.

Abstract

The hindguts of lower termites and Cryptocercus cockroaches are home to a distinct community of archaea, bacteria, and protists (primarily parabasalids and some oxymonads). Within a host species, the composition of these hindgut communities appears relatively stable, but the evolutionary and ecological factors structuring community composition and stability are poorly understood, as are differential impacts of these factors on protists, bacteria, and archaea. We analyzed the microbial composition of parabasalids and bacteria in the hindguts of Cryptocercus punctulatus and 23 species spanning 4 families of lower termites by pyrosequencing variable regions of the small-subunit rRNA gene. Especially for the parabasalids, these data revealed undiscovered taxa and provided a phylogenetic basis for a more accurate understanding of diversity, diversification, and community composition. The composition of the parabasalid communities was found to be strongly structured by the phylogeny of their hosts, indicating the importance of historical effects, although exceptions were also identified. Particularly, spirotrichonymphids and trichonymphids likely were transferred between host lineages. In contrast, host phylogeny was not sufficient to explain the majority of bacterial community composition, but the compositions of the Bacteroidetes, Elusimicrobia, Tenericutes, Spirochaetes, and Synergistes were structured by host phylogeny perhaps due to their symbiotic associations with protists. All together, historical effects probably resulting from vertical inheritance have had a prominent role in structuring the hindgut communities, especially of the parabasalids, but dispersal and environmental acquisition have played a larger role in community composition than previously expected.

摘要

低等白蚁和隐尾蠊的后肠是古菌、细菌和原生生物(主要是副基体和一些毛滴虫)独特群落的栖息地。在一个宿主物种内,这些后肠群落的组成似乎相对稳定,但构建群落组成和稳定性的进化和生态因素却知之甚少,这些因素对原生生物、细菌和古菌的不同影响也是如此。我们通过对小亚基rRNA基因可变区进行焦磷酸测序,分析了斑点隐尾蠊以及4个低等白蚁科的23个物种后肠中副基体和细菌的微生物组成。特别是对于副基体,这些数据揭示了未被发现的分类群,并为更准确地理解多样性、多样化和群落组成提供了系统发育基础。研究发现,副基体群落的组成在很大程度上由其宿主的系统发育所构建,这表明历史效应的重要性,不过也发现了一些例外情况。特别是,旋毛虫目和毛滴虫目可能在宿主谱系之间转移。相比之下,宿主系统发育不足以解释大多数细菌群落的组成,但拟杆菌门、厌氧微生物、柔膜菌门、螺旋体门和协同菌门的组成可能由于它们与原生生物的共生关系而由宿主系统发育所构建。总体而言,可能由垂直遗传导致的历史效应在构建后肠群落,尤其是副基体群落方面发挥了重要作用,但扩散和环境获取在群落组成中所起的作用比之前预期的更大。

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