Department of Biological Sciences, Texas Tech University, Lubbock, TX 79409, USA.
Natural Science Research Laboratory, The Museum, Texas Tech University, Lubbock, TX 79409, USA.
Integr Comp Biol. 2017 Oct 1;57(4):743-755. doi: 10.1093/icb/icx011.
Host-associated microbiomes are integral components of host health, but microbiome community structure varies among and within hosts. Reconciling community variability with the apparent dependence of hosts on community function, and characterizing how functional divergence proceeds across niches, remains challenging. Here, through the study of gut microbiomes and diets of three insectivorous bat species we characterize how community structure is shaped by predicted functional properties of community members. We found that while host diet and microbiome community composition do not significantly relate to each other, host diet and metagenome function do, suggesting that diet directly selects metagenomic functions rather than communities. We use a novel inference framework to show how the discordance between community structure and functional variation derives from functional equivalence and is influenced by the continuum of shared and derived gene sets across microbial lineages. Our findings help clarify how metagenome community structure-function relationships contribute to deterministic processes in community assembly, and describe the basis for metagenomic differences across ecologically similar hosts.
宿主相关微生物组是宿主健康的组成部分,但微生物组群落结构在宿主之间和内部存在差异。将群落变异性与宿主对群落功能的明显依赖性相协调,并描述功能分歧如何在不同生态位中进行,仍然具有挑战性。在这里,通过对三种食虫蝙蝠的肠道微生物组和饮食的研究,我们描述了群落结构如何受到群落成员预测功能特性的影响。我们发现,尽管宿主饮食和微生物组群落组成之间没有显著的关系,但宿主饮食和宏基因组功能之间存在关系,这表明饮食直接选择宏基因组功能而不是群落。我们使用一种新的推理框架来展示群落结构和功能变异之间的不和谐如何源自功能等效性,并受到微生物谱系之间共享和衍生基因集的连续体的影响。我们的研究结果有助于阐明宏基因组群落结构-功能关系如何有助于群落组装中的确定性过程,并描述了在生态相似的宿主中存在宏基因组差异的基础。