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年龄多型性驱动了培菌白蚁黑翅土白蚁肠道细菌微生物群的群落结构。

Age polyethism drives community structure of the bacterial gut microbiota in the fungus-cultivating termite Odontotermes formosanus.

作者信息

Li Hongjie, Dietrich Carsten, Zhu Na, Mikaelyan Aram, Ma Bin, Pi Ruoxi, Liu Yu, Yang Mengyi, Brune Andreas, Mo Jianchu

机构信息

Ministry of Agriculture Key Laboratory of Agricultural Entomology, Institute of Insect Sciences, Zhejiang University, Hangzhou, China.

Department of Biogeochemistry, Max Planck Institute for Terrestrial Microbiology, Marburg, Germany.

出版信息

Environ Microbiol. 2016 May;18(5):1440-51. doi: 10.1111/1462-2920.13046. Epub 2015 Oct 14.

Abstract

Fungus-cultivating termites (Macrotermitinae) possess an elaborate strategy of lignocellulose digestion. It involves a lignocellulose-degrading fungal symbiont (genus Termitomyces), a diverse gut microbiota and a characteristic labour division in food processing. In this study, using pyrotag sequencing and electron microscopy, we analysed the bacterial microbiota in the hindgut of Odontotermes formosanus and its fungus comb to investigate the spatial organization, establishment and temporal succession of the bacterial communities colonizing specific microhabitats. Our results document strong differences between the communities at the hindgut epithelium and the luminal fluid of newly moulted, young and old worker termites. The differences in community structure were consistent with the density, morphology and spatial distribution of bacterial cells and the pools of microbial metabolites in the hindgut compartment, underlining that both gut development and the age-specific changes in diet affect the composition and functional role of their gut microbiota. These findings provide strong support for the concept that changes in diet and gut environment are important determinants of community structure because they create new niches for microbial symbionts.

摘要

培菌白蚁(大白蚁亚科)拥有一套复杂的木质纤维素消化策略。该策略涉及一种能降解木质纤维素的真菌共生体(鸡枞菌属)、多样的肠道微生物群以及食物加工过程中独特的劳动分工。在本研究中,我们运用焦磷酸测序和电子显微镜技术,分析了黑翅土白蚁后肠及其菌圃中的细菌微生物群,以探究定殖于特定微生境的细菌群落的空间组织、形成过程及时间演替。我们的研究结果表明,新蜕皮的、年轻的和年老的工蚁后肠上皮和肠腔液中的群落存在显著差异。群落结构的差异与后肠隔室中细菌细胞的密度、形态和空间分布以及微生物代谢产物库一致,这突出表明肠道发育和特定年龄阶段的饮食变化都会影响其肠道微生物群的组成和功能作用。这些发现为饮食和肠道环境变化是群落结构的重要决定因素这一概念提供了有力支持,因为它们为微生物共生体创造了新的生态位。

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