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性别特异性与蜱虫肠道微生物组的分类和功能特征之间的联系。

Sex-Specific Linkages Between Taxonomic and Functional Profiles of Tick Gut Microbiomes.

机构信息

Center for Nuclear Energy in Agriculture, University of São Paulo, Piracicaba, Brazil.

School of Environmental Sciences, University of Guelph, Guelph, ON, Canada.

出版信息

Front Cell Infect Microbiol. 2019 Aug 14;9:298. doi: 10.3389/fcimb.2019.00298. eCollection 2019.

Abstract

Ticks transmit the most diverse array of disease agents and harbor one of the most diverse microbial communities. Major progress has been made in the characterization of the taxonomic profiles of tick microbiota. However, the functional profiles of tick microbiome have been comparatively less studied. In this proof of concept we used state-of-the-art functional metagenomics analytical tools to explore previously reported datasets of bacteria found in male and female , and . Results showed that both taxonomic and functional profiles have differences between sexes of the same species. KEGG pathway analysis revealed that male and female of the same species had major differences in the abundance of genes involved in different metabolic pathways including vitamin B, amino acids, carbohydrates, nucleotides, and antibiotics among others. Partial reconstruction of metabolic pathways using KEGG enzymes suggests that tick microbiome form a complex metabolic network that may increase microbial community resilience and adaptability. Linkage analysis between taxonomic and functional profiles showed that among the KEGG enzymes with differential abundance in male and female ticks only 12% were present in single bacterial genera. The rest of these enzymes were found in more than two bacterial genera, and 27% of them were found in five up to ten bacterial genera. Comparison of bacterial genera contributing to the differences in the taxonomic and functional profiles of males and females revealed that while a small group of bacteria has a dual-role, most of the bacteria contribute only to functional or taxonomic differentiation between sexes. Results suggest that the different life styles of male and female ticks exert sex-specific evolutionary pressures that act independently on the phenomes (set of phenotypes) and genomes of bacteria in tick gut microbiota. We conclude that functional redundancy is a fundamental property of male and female tick microbiota and propose that functional metagenomics should be combined with taxonomic profiling of microbiota because both analyses are complementary.

摘要

蜱虫传播的疾病病原体种类最多,其所携带的微生物群落也最为多样。蜱虫微生物组的分类特征已经取得了重大进展。然而,蜱虫微生物组的功能特征研究相对较少。在本概念验证研究中,我们使用了最先进的功能宏基因组学分析工具,来探索先前报道的雄性和雌性 和 蜱虫中细菌的数据集。结果表明,同一物种的雌雄蜱虫在分类和功能特征上存在差异。KEGG 途径分析显示,同一物种的雌雄蜱虫在不同代谢途径中参与的基因丰度存在显著差异,包括维生素 B、氨基酸、碳水化合物、核苷酸和抗生素等。使用 KEGG 酶对代谢途径进行部分重建表明,蜱虫微生物组形成了一个复杂的代谢网络,可能增加了微生物群落的弹性和适应性。分类和功能特征之间的关联分析表明,在雌雄蜱虫中丰度存在差异的 KEGG 酶中,只有 12%存在于单一细菌属中。其余这些酶存在于两个以上的细菌属中,其中 27%存在于五个到十个细菌属中。对导致雌雄蜱虫分类和功能特征差异的细菌属进行比较,发现虽然一小部分细菌具有双重作用,但大多数细菌仅对雌雄蜱虫的功能或分类分化有贡献。结果表明,雌雄蜱虫不同的生活方式对蜱虫肠道微生物组的细菌施加了特异性的进化压力,这些压力独立作用于细菌的表型和基因组。我们得出结论,功能冗余是雌雄蜱虫微生物组的一个基本特征,并提出功能宏基因组学应该与微生物组的分类分析相结合,因为这两种分析是互补的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8cd4/6702836/12db80d44a20/fcimb-09-00298-g0001.jpg

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