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Fecal microbiota dynamics and its relationship to diarrhea and health in dairy calves

摘要Background: Diarrhea is a major cause of morbidity and mortality in young calves, resulting in considerable eco- nomic loss for dairy farms. To determine if some gut microbes might have resistance to dysbiotic process with calf diarrhea by dictating the microbial co-occurrence patterns from birth to post-weaning, we examined the dynamic development of the gut microbiota and diarrhea status using two animal trials, with the first trial having 14 Holstein dairy calves whose fecal samples were collected 18 times over 78 d from birth to 15 d post-weaning and the second trial having 43 Holstein dairy calves whose fecal samples were collected daily from 8 to 18 days of age corresponding to the first diarrhea peak of trial 1. Results: Metataxonomic analysis of the fecal microbiota showed that the development of gut microbiota had three age periods with birth and weaning as the separatrices. Two diarrhea peaks were observed during the transi- tion of the three age periods. Fusobacteriaceae was identified as a diarrhea-associated taxon both in the early stage and during weaning, and Clostridium_sensu_stricto_1 was another increased genus among diarrheic calves in the early stage. In the neonatal calves, Prevotella_2 (ASV4 and ASV26), Prevotella_9 (ASV43), and Alloprevotella (ASV14) were negatively associated with Clostridium_sensu_stricto_1 (ASV48), the keystone taxa of the diarrhea-phase mod-ule. During weaning, unclassified Muribaculaceae (ASV28 and ASV44), UBA1819 (ASV151), Barnesiella (ASV497), and Ruminococcaceae_UCG-005 (ASV254) were identified being associated with non-diarrheic status, and they aggregated in the non-diarrhea module of co-occurrence patterns wherein unclassified Muribaculaceae (ASV28) and Barnesiella (ASV497) had a direct negative relationship with the members of the diarrhea module. Conclusions: Taken together, our results suggest that the dynamic successions of calf gut microbiota and the inter-actions among some bacteria could influence calf diarrhea, and some species of Prevotella might be the core micro-biota in both neonatal and weaning calves, while species of Muribaculaceae might be the core microbiota in weaning calves for preventing calf diarrhea. Some ASVs affiliated with Prevotella_2 (ASV4 and ASV26), Prevotella_9 (ASV43), Alloprevotella (AVS14), unclassified Muribaculaceae (ASV28 and ASV44), UBA1819 (ASV151), Ruminococcaceae_UCG-005 (ASV254), and Barnesiella (ASV497) might be proper probiotics for preventing calf diarrhea whereas Clostridium_sensu_stricto_1 (ASV48) might be the biomarker for diarrhea risk in specific commercial farms.

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作者 Hongwei Chen [1] Yalu Liu [1] Kailang Huang [1] Bin Yang [1] Yuanyuan Zhang [1] Zhongtang Yu [2] Jiakun Wang [1] 学术成果认领
作者单位 Institute of Dairy Science,College of Animal Sciences,Zhejiang University,Hangzhou,China;MoE Key Laboratory of Molecular Animal Nutrition,Zheji-ang University,Hangzhou,China [1] Department of Animal Sciences,The Ohio State University,Columbus,OH,USA [2]
发布时间 2023-02-20(万方平台首次上网日期,不代表论文的发表时间)
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