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肠道先驱定植菌作为肉鸡回肠微生物组成和多样性的驱动因素

Intestinal Pioneer Colonizers as Drivers of Ileal Microbial Composition and Diversity of Broiler Chickens.

作者信息

Rodrigues Denise R, Winson Emily, Wilson Kim M, Briggs Whitney N, Duff Audrey F, Chasser Kaylin M, Bielke Lisa R

机构信息

Department of Animal Sciences, The Ohio State University, Columbus, OH, United States.

出版信息

Front Microbiol. 2020 Jan 9;10:2858. doi: 10.3389/fmicb.2019.02858. eCollection 2019.

Abstract

Given that recent advances in metagenomics have highlighted the importance of intestinal microbes for poultry health, there has been a corresponding search for early manipulation strategies of intestinal microbiota in order to advance immune system development and optimize functional properties of growth. In this study, we used the technique as an experimental model to address how early bacterial intestinal colonization could affect the development and establishment of the mature ileal microbiota. Inoculations containing one of the following: 0.2 mL of 0.9% sterile saline (S), approximately 10 cells of (CF), species (C2) or lactic acid bacteria mixture (L) were administered via into the amnion. Results showed that abundance was negatively correlated with aging, although its high population at day of hatch affected the microbiota composition, delaying mature microbiota establishment. L treatment increased colonization of butyrate-producing bacteria by 3 and 10 days, and segmented filamentous bacteria in the lower ileum by 10 days. On the other hand, L-probiotic decreased the population of . In addition, L and C2 microbial communities were less diverse at 10 than 3 days of age in the upper ileum. Importantly, these findings provide a valuable resource for a potential study model for interactions between microbial colonization and associated immune responses. In conclusion, our analysis demonstrates that intestinal pioneer colonizers play a critical role in driving the course of microbial community composition and diversity over time, in which early life exposure to L-based probiotic supported selection alongside greater colonization of symbiotic populations in the ileum of young broilers.

摘要

鉴于宏基因组学的最新进展突出了肠道微生物对家禽健康的重要性,人们相应地开始寻找肠道微生物群的早期调控策略,以促进免疫系统发育并优化生长功能特性。在本研究中,我们使用该技术作为实验模型,以探讨早期细菌在肠道的定殖如何影响成熟回肠微生物群的发育和建立。通过羊膜内接种以下之一:0.2 mL 0.9%无菌盐水(S)、约10个细胞的(CF)、物种(C2)或乳酸菌混合物(L)。结果表明,丰度与衰老呈负相关,尽管其在孵化日的高数量影响了微生物群组成,延迟了成熟微生物群的建立。L处理使回肠下段中产生丁酸盐的细菌在3天和10天时的定殖增加,使分节丝状菌在10天时的定殖增加。另一方面,L-益生菌降低了的数量。此外,在回肠上段,10日龄时L和C2微生物群落的多样性低于3日龄时。重要的是,这些发现为微生物定殖与相关免疫反应之间相互作用的潜在研究模型提供了宝贵资源。总之,我们的分析表明,肠道先驱定殖菌在推动微生物群落组成和多样性随时间变化的过程中起着关键作用,其中生命早期接触基于L的益生菌有助于选择,并促进年轻肉鸡回肠中共生菌的更多定殖。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3584/6962117/b1e90df6dbd5/fmicb-10-02858-g001.jpg

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