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Metagenomic sequencing reveals high reproducibility of human donor microbiota transplanted into germ-free mice via lower gut route

摘要Human flora-associated(HFA)mice are often used to simulate the structure of human intestinal microbiota and to study the causal relationships between diseases and gut microbiota.However,several factors affect the colonization efficiency of human microbiota in germ-free(GF)mice,and the differential effects of gavage and lower gut transplantation on colonization are still unclear.In this study,we explored the reproducibility of the recipient-to-donor gut microbiota community structure and function under different transplantation routes and the differences in microbial colonization between recipients via gavage transplantation(GT_mice group)and lower gut transplantation(LGT_mice group).High-throughput sequencing of the metagenome was performed on the feces of each subject,and the composition of microbiome of each group was analyzed.As expected,the introduction of human fecal microbiota into GF mice via lower gut transplantation had a high transfer efficiency,which was evident from the similar species community structure to that of the donor(Adonis R2=0.713 960 for LGT_mice group?donor group;Adonis R2=0.774 095 for GT_mice group?donor group)and a higher bacterial colonization rate.The findings provide unique insights into improving the accuracy of constructing humanized microbiota transplantation models,aiding our understanding of the relationships between the human gut microbiota and disease.

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作者 Yapeng YANG [1] Xiang TAN [2] Zeyue ZHANG [2] Lifeng LIANG [3] Zhifeng WU [2] Jinhui HE [2] Yuqing WANG [4] Miaomiao DONG [2] Jixia ZHENG [2] Hang ZHANG [5] Shuaifei FENG [2] Wei CHENG [2] Bota CUI [6] Hong WEI [5] Qinjin LI [7] 学术成果认领
作者单位 College of Animal Sciences,Fujian Agriculture and Forestry University,Fuzhou 350002,China;State Key Laboratory of Agricultural Microbiology,College of Animal Sciences and Technology,Huazhong Agricultural University,Wuhan 430070,China;Central Laboratory,Clinical Medicine Scientific and Technical Innovation Park,Shanghai Tenth People's Hospital,Tongji University,Shanghai 200072,China [1] State Key Laboratory of Agricultural Microbiology,College of Animal Sciences and Technology,Huazhong Agricultural University,Wuhan 430070,China [2] Precision Medicine Institute,The First Affiliated Hospital,Sun Yat-sen University,Guangzhou 510080,China [3] State Key Laboratory of Agricultural Microbiology,College of Animal Sciences and Technology,Huazhong Agricultural University,Wuhan 430070,China;Central Laboratory,Clinical Medicine Scientific and Technical Innovation Park,Shanghai Tenth People's Hospital,Tongji University,Shanghai 200072,China [4] State Key Laboratory of Agricultural Microbiology,College of Animal Sciences and Technology,Huazhong Agricultural University,Wuhan 430070,China;Yu-Yue Pathology Scientific Research Center,Chongqing 401329,China [5] Medical Center for Digestive Diseases,The Second Affiliated Hospital of Nanjing Medical University,Nanjing 210003,China [6] College of Animal Sciences,Fujian Agriculture and Forestry University,Fuzhou 350002,China [7]
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DOI 10.1631/jzus.B2400495
发布时间 2026-05-06(万方平台首次上网日期,不代表论文的发表时间)
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浙江大学学报(英文版)(B辑:生物医学和生物技术)

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