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新生犊牛小肠微生物组的分类和功能组成提供了理解早期生命肠道健康的框架。

Taxonomic and Functional Compositions of the Small Intestinal Microbiome in Neonatal Calves Provide a Framework for Understanding Early Life Gut Health.

机构信息

Department of Agricultural Food and Nutritional Science, University of Alberta, Edmonton, Alberta, Canada.

School of Public Health, University of Saskatchewan, Saskatoon, Saskatchewan, Canada.

出版信息

Appl Environ Microbiol. 2019 Mar 6;85(6). doi: 10.1128/AEM.02534-18. Print 2019 Mar 15.

Abstract

A lack of information on the intestinal microbiome of neonatal calves prevents the use of microbial intervention strategies to improve calf gut health. This study profiled the taxonomic and functional composition of the small intestinal luminal microbiome of neonatal calves using whole-genome sequencing of the metagenome, aiming to understand the dynamics of microbial establishment during early life. Despite highly individualized microbial communities, we identified two distinct taxonomy-based clusters from the collective luminal microbiomes comprising a high level of either or Among the clustered microbiomes, -dominant ileal microbiomes had significantly lower abundances of , , , , and compared to the -dominated ileal microbiomes. In addition, the upregulated ileal genes of the -dominant calves were related to leukocyte and lymphocyte chemotaxis, the cytokine/chemokine-mediated signaling pathway, and inflammatory responses, while the upregulated ileal genes of the -dominant calves were related to cell adhesion, response to stimulus, cell communication and regulation of mitogen-activated protein kinase cascades. The functional profiles of the luminal microbiomes also revealed two distinct clusters consisting of functions related to either high protein metabolism or sulfur metabolism. A lower abundance of and a higher abundance of sulfur-reducing bacteria (SRB) were observed in the sulfur metabolism-dominant cluster (0.2% ± 0.1%) compared to the protein metabolism-dominant cluster (12.6% ± 5.7%), suggesting an antagonistic relationship between SRB and , which both compete for cysteine. These distinct taxonomic and functional clusters may provide a framework to further analyze interactions between the intestinal microbiome and the immune function and health of neonatal calves. Dietary interventions to manipulate neonatal gut microbiota have been proposed to generate long-term impacts on hosts. Currently, our understanding of the early gut microbiome of neonatal calves is limited to 16S rRNA gene amplicon based microbial profiling, which is a barrier to developing dietary interventions to improve calf gut health. The use of a metagenome sequencing-based approach in the present study revealed high individual animal variation in taxonomic and functional abundance of intestinal microbiome and potential impacts of early microbiome on mucosal immune responses during the preweaning period. During this developmental period, age- and diet-related changes in microbial diversity, richness, density, and the abundance of taxa and functions were observed. A correlation-based approach to further explore the individual animal variation revealed potential enterotypes that can be linked to calf gut health, which may pave the way to developing strategies to manipulate the microbiome and improve calf health.

摘要

由于缺乏关于新生犊牛肠道微生物组的信息,因此无法利用微生物干预策略来改善犊牛肠道健康。本研究采用宏基因组全基因组测序的方法,对新生犊牛小肠腔微生物组的分类和功能组成进行了分析,旨在了解生命早期微生物定植的动态。尽管微生物群落具有高度的个体间差异,但我们从包含高水平 或 的集体腔微生物组中鉴定出了两个基于分类的不同聚类。在聚类微生物组中,与 - 主导的回肠微生物组相比,- 主导的回肠微生物组中 、 、 、 和 的丰度显著降低。此外,- 主导的犊牛回肠上调基因与白细胞和淋巴细胞趋化、细胞因子/趋化因子介导的信号通路和炎症反应有关,而 - 主导的犊牛回肠上调基因与细胞黏附、对刺激的反应、细胞通讯和调节丝裂原激活蛋白激酶级联有关。腔微生物组的功能谱还揭示了两个由与高蛋白质代谢或硫代谢相关的功能组成的不同聚类。在硫代谢主导的聚类中(0.2%±0.1%),观察到 丰度较低,硫还原菌(SRB)丰度较高,而在蛋白质代谢主导的聚类中(12.6%±5.7%),这表明 SRB 和 之间存在拮抗关系,它们都争夺半胱氨酸。这些不同的分类和功能聚类可能为进一步分析肠道微生物组与新生犊牛的免疫功能和健康之间的相互作用提供框架。已经提出了通过饮食干预来操纵新生犊牛肠道微生物群以产生对宿主的长期影响。目前,我们对新生犊牛早期肠道微生物组的了解仅限于基于 16S rRNA 基因扩增子的微生物分析,这是开发改善犊牛肠道健康的饮食干预措施的障碍。本研究中使用基于宏基因组测序的方法揭示了肠道微生物组在分类和功能丰度上具有高度的个体动物变异性,并可能对断奶前时期的黏膜免疫反应产生早期微生物组的影响。在这个发育阶段,观察到与年龄和饮食相关的微生物多样性、丰富度、密度以及分类和功能的丰度变化。通过相关性方法进一步探索个体动物的变异性,揭示了可能与犊牛肠道健康相关的潜在肠型,这可能为开发操纵微生物组和改善犊牛健康的策略铺平道路。

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