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Host genetic variation and its microbiome interactions within the Human Microbiome Project

机译:人类微生物组计划中的宿主遗传变异及其微生物组相互作用

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BackgroundDespite the increasing recognition that microbial communities within the human body are linked to health, we have an incomplete understanding of the environmental and molecular interactions that shape the composition of these communities. Although host genetic factors play a role in these interactions, these factors have remained relatively unexplored given the requirement for large population-based cohorts in which both genotyping and microbiome characterization have been performed. MethodsWe performed whole-genome sequencing of 298 donors from the Human Microbiome Project (HMP) healthy cohort study to accompany existing deep characterization of their microbiomes at various body sites. This analysis yielded an average sequencing depth of 32x, with which we identified 27 million (M) single nucleotide variants and 2.3?M insertions-deletions. ResultsTaxonomic composition and functional potential of the microbiome covaried significantly with genetic principal components in the gastrointestinal tract and oral communities, but not in the nares or vaginal microbiota. Example associations included validation of known associations between FUT2 secretor status, as well as a variant conferring hypolactasia near the LCT gene, with Bifidobacterium longum abundance in stool. The associations of microbial features with both high-level genetic attributes and single variants were specific to particular body sites, highlighting the opportunity to find unique genetic mechanisms controlling microbiome properties in the microbial communities from multiple body sites. ConclusionsThis study adds deep sequencing of host genomes to the body-wide microbiome sequences already extant from the HMP healthy cohort, creating a unique, versatile, and well-controlled reference for future studies seeking to identify host genetic modulators of the microbiome.
机译:背景技术尽管人们越来越认识到人体中的微生物群落与健康有关,但我们对塑造这些群落组成的环境和分子相互作用尚不完全了解。尽管宿主遗传因素在这些相互作用中发挥着作用,但是鉴于需要进行基于基因组分型和微生物组表征的大型人群研究,这些因素仍然相对未被开发。方法我们对人类微生物组计划(HMP)健康队列研究中的298个供体进行了全基因组测序,以对其在各个身体部位的微生物群进行现有的深入表征。该分析得出的平均测序深度为32倍,由此我们鉴定出2700万(M)个单核苷酸变异和2.3?M插入-缺失。结果微生物组的分类组成和功能潜能与胃肠道和口腔群落的遗传主要成分显着相关,但在鼻孔或阴道微生物群中则没有。关联的例子包括验证FUT2分泌者状态与LCT基因附近的假性泌乳样变体与粪便中长双歧杆菌丰度之间的已知关联。微生物特征与高水平遗传属性和单一变异的关联特定于特定的身体部位,从而突出显示了从多个身体部位找到控制微生物群落中微生物组特性的独特遗传机制的机会。结论本研究将宿主基因组的深度测序添加到HMP健康人群已经存在的全身微生物组序列中,为寻求鉴定微生物组宿主遗传调节剂的未来研究提供了独特,通用且控制良好的参考。

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