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对绵羊红细胞抗体效价进行差异选择的来航鸡品系,其小肠微生物群的差异表明共生菌在宿主体液免疫反应中发挥作用。

Differences in the microbiome of the small intestine of Leghorn lines divergently selected for antibody titer to sheep erythrocytes suggest roles for commensals in host humoral response.

作者信息

Nolin Shelly J, Siegel Paul B, Ashwell Christopher M

机构信息

Prestage Department of Poultry Science, North Carolina State University, Raleigh, NC, United States.

School of Animal Science, Virginia Polytechnic Institute and State University, Blacksburg, VA, United States.

出版信息

Front Physiol. 2024 Jan 8;14:1304051. doi: 10.3389/fphys.2023.1304051. eCollection 2023.

Abstract

For forty generations, two lines of White Leghorn chickens have been selected for high (HAS) or low (LAS) antibody response to a low dose injection of sheep red blood cells (SRBCs). Their gut is home to billons of microorganisms and the largest number of immune cells in the body; therefore, the objective of this experiment was to gain understanding of the ways the microbiome may influence the differential antibody response observed in these lines. We achieved this by characterizing the small intestinal microbiome of HAS and LAS chickens, determining their functional microbiome profiles, and by using machine learning to identify microbes which best differentiate HAS from LAS and associating the abundance of those microbes with host gene expression. Microbiome sequencing revealed greater diversity in LAS but statistically higher abundance of several strains, particularly those of in HAS. Enrichment of microbial metabolites implicated in immune response such as lactic acid, short chain fatty acids, amino acids, and vitamins were different between HAS and LAS. The abundance of several microbial strains corresponds to enriched host gene expression pathways related to immune response. These data provide a compelling argument that the microbiome is both likely affected by host divergent genetic selection and that it exerts influence on host antibody response by various mechanisms.

摘要

四十代以来,对白来航鸡的两个品系进行了选育,一个品系对低剂量注射绵羊红细胞(SRBC)具有高(HAS)抗体反应,另一个品系具有低(LAS)抗体反应。它们的肠道是数十亿微生物的家园,也是体内免疫细胞数量最多的地方;因此,本实验的目的是了解微生物群可能影响这些品系中观察到的差异抗体反应的方式。我们通过对HAS和LAS鸡的小肠微生物群进行特征分析,确定它们的功能微生物群谱,并使用机器学习来识别最能区分HAS和LAS的微生物,并将这些微生物的丰度与宿主基因表达相关联,从而实现了这一目标。微生物群测序显示LAS的多样性更高,但在统计学上,HAS中几种菌株的丰度更高,特别是那些……的菌株。HAS和LAS之间,与免疫反应相关的微生物代谢产物如乳酸、短链脂肪酸、氨基酸和维生素的富集情况有所不同。几种微生物菌株的丰度与宿主中与免疫反应相关的富集基因表达途径相对应。这些数据有力地证明,微生物群既可能受到宿主不同遗传选择的影响,也可能通过各种机制对宿主抗体反应产生影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9790/10800846/43ea78bfdf99/fphys-14-1304051-g001.jpg

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