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断奶过渡期仔猪粪便微生物组的宏蛋白质组学分析。

A metaproteomic analysis of the piglet fecal microbiome across the weaning transition.

作者信息

Rivera Israel, Harlow KaLynn, Cole Robert N, O'Meally Robert, Garrett Wesley, Xiong Weili, Oliver William, Wells James E, Summers Katie Lynn, Chhetri Nisan, Postnikova Olga, Rempel Lea, Crouse Matt, Neville Bryan, Davies Cary Pirone

机构信息

Animal Biosciences and Biotechnology Laboratory, Beltsville Agricultural Research Center, ARS, U.S. Department of Agriculture, Beltsville, MD, United States.

Oak Ridge Institute for Science and Education, Agricultural Research Service Participation Program, Oak Ridge, TN, United States.

出版信息

Front Microbiol. 2025 May 2;16:1504433. doi: 10.3389/fmicb.2025.1504433. eCollection 2025.

Abstract

Microbiome analysis has relied largely on metagenomics to characterize microbial populations and predict their functions. Here, we used a metaproteomic analysis of the fecal microbiome in piglets before and after weaning to compare protein abundances as they pertain to microbial populations specific to either a milk- or plant-based diet. Fecal samples were collected from six piglets on the day of weaning and 4 weeks after transitioning to a standard nursery diet. Using the 12,554 protein groups identified in samples, we confirmed the shift in protein composition that takes place in response to the microbial succession following weaning and demonstrated the redundancy in metabolic processes between taxa. We identified taxa with roles as primary degraders based on corresponding proteins synthesized, thereby providing evidence for cross-feeding. Proteins associated with the breakdown of milk-specific carbohydrates were common among pre-weaned pigs, whereas the proteome of post-weaned piglets contained a greater abundance of proteins involved in the breaking down plant-specific carbohydrates. Furthermore, output revealed that production of propionate takes place via the propionaldehyde pathway in pre-weaned piglets, but changes to production via the succinate pathway in post-weaned piglets. Finally, a disproportionate quantity of carbohydrate-active enzymes (CAZymes) (~8%) were produced by fungi, which typically only represent ~0.1% of the microbiome taxa. Information gathered through this characterization of the metaproteome before and after weaning revealed important differences regarding the role of members in the microbial community, thereby providing information for the optimization of diets and products for both piglet and microbiome health.

摘要

微生物组分析在很大程度上依靠宏基因组学来表征微生物种群并预测其功能。在此,我们对断奶前后仔猪的粪便微生物组进行了宏蛋白质组分析,以比较与基于牛奶或植物的饮食所特有的微生物种群相关的蛋白质丰度。在断奶当天和过渡到标准育成日粮4周后,从6头仔猪采集粪便样本。利用在样本中鉴定出的12,554个蛋白质组,我们证实了断奶后因微生物演替而发生的蛋白质组成变化,并证明了不同分类群之间代谢过程的冗余性。我们根据合成的相应蛋白质鉴定出作为主要降解者的分类群,从而为交叉饲喂提供了证据。与分解牛奶特有的碳水化合物相关的蛋白质在断奶前的仔猪中很常见,而断奶后仔猪的蛋白质组中含有更多参与分解植物特有的碳水化合物的蛋白质。此外,结果显示断奶前的仔猪通过丙醛途径产生丙酸,但断奶后的仔猪则转变为通过琥珀酸途径产生丙酸。最后,真菌产生了不成比例数量的碳水化合物活性酶(CAZymes)(约8%),而真菌在微生物组分类群中通常仅占约0.1%。通过对断奶前后宏蛋白质组的这种表征所收集的信息揭示了微生物群落成员作用方面的重要差异,从而为优化有利于仔猪和微生物组健康的日粮和产品提供了信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85c7/12082470/32e1f2431cf4/fmicb-16-1504433-g001.jpg

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