厚壁菌
生物
拟杆菌
蛋白质细菌
梭杆菌门
鹅
肠道菌群
动物
门
梭菌目
微生物群
放线菌门
生态学
16S核糖体RNA
细菌
生物信息学
遗传学
免疫学
作者
Wang Wen,Yingbao Liu,Yongsheng Yang,Aizhen Wang,Kirill Sharshov,Yao Li,Mengyao Cao,Puzhen Mao,Laixing Li
标识
DOI:10.1002/jobm.201800060
摘要
In this study, we characterized for the first time the gut microbiota of Greylag geese ( Anser anser ) using high‐throughput 16S rRNA gene sequencing technology. The results showed that the phyla Firmicutes (78.55%), Fusobacteria (9.38%), Proteobacteria (7.55%), Bacteroidetes (1.82%), Cyanobacteria (1.44%), and Actinobacteria (0.61%) dominated the gut microbial communities in the Greylag geese. Then, the variations of gut microbial community structures and functions among the three geese species, Greylag geese, Bar‐headed geese ( Anser indicus ), and Swan geese ( Anser cygnoides ), were explored. The greatest gut microbial diversity was found in Bar‐headed geese group, while other two groups had the least. The dominant bacterial phyla across all samples were Firmicutes and Proteobacteria , but several characteristic bacterial phyla and genera associated with each group were also detected. At all taxonomic levels, the microbial community structure of Swan geese was different from those of Greylag geese and Bar‐headed geese, whereas the latter two groups were less different. Functional KEGG categories and pathways associated with carbohydrate metabolism, energy metabolism, and amino acid metabolism were differentially expressed among different geese species. Taken together, this study could provide valuable information to the vast, and yet little explored, research field of wild birds gut microbiome.
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