Zeng Bo, Han Shushu, Wang Ping, Wen Bin, Jian Wensu, Guo Wei, Yu Zhiju, Du Dan, Fu Xiangchao, Kong Fanli, Yang Mingyao, Si Xiaohui, Zhao Jiangchao, Li Ying
Farm Animal Genetic Resources Exploration and Innovation Key Laboratory of Sichuan Province, Sichuan Agricultural University, Chengdu, Sichuan, China.
Sichuan Academy of Grassland Science, Chengdu, Sichuan, China.
Sci Rep. 2015 Mar 20;5:9342. doi: 10.1038/srep09342.
Rex rabbit is an important small herbivore for fur and meat production. However, little is known about the gut microbiota in rex rabbit, especially regarding their relationship with different fecal types and growth of the hosts. We characterized the microbiota of both hard and soft feces from rex rabbits with high and low body weight by using the Illumina MiSeq platform targeting the V4 region of the 16S rDNA. High weight rex rabbits possess distinctive microbiota in hard feces, but not in soft feces, from the low weight group. We detected the overrepresentation of several genera such as YS2/Cyanobacteria, and Bacteroidales and underrepresentation of genera such as Anaeroplasma spp. and Clostridiaceae in high weight hard feces. Between fecal types, several bacterial taxa such as Ruminococcaceae, and Akkermansia spp. were enriched in soft feces. PICRUSt analysis revealed that metabolic pathways such as "stilbenoid, diarylheptanoid, gingerol biosynthesis" were enriched in high weight rabbits, and pathways related to "xenobiotics biodegradation" and "various types of N-glycan biosynthesis" were overrepresented in rabbit soft feces. Our study provides foundation to generate hypothesis aiming to test the roles that different bacterial taxa play in the growth and caecotrophy of rex rabbits.
獭兔是一种重要的小型食草动物,用于毛皮和肉类生产。然而,人们对獭兔的肠道微生物群了解甚少,尤其是它们与不同粪便类型和宿主生长之间的关系。我们使用Illumina MiSeq平台,针对16S rDNA的V4区域,对高体重和低体重獭兔的硬粪和软粪中的微生物群进行了表征。高体重獭兔的硬粪中拥有独特的微生物群,但与低体重组的软粪不同。我们检测到高体重硬粪中几个属的微生物过量表达,如YS2/蓝细菌和拟杆菌目,而厌氧支原体属和梭菌科等属的微生物表达不足。在不同粪便类型之间,一些细菌类群,如瘤胃球菌科和阿克曼氏菌属,在软粪中富集。PICRUSt分析表明,“芪类、二芳基庚烷类、姜辣素生物合成”等代谢途径在高体重獭兔中富集,与“外源生物降解”和“各种类型的N-聚糖生物合成”相关的途径在獭兔软粪中过量表达。我们的研究为提出假设奠定了基础,旨在测试不同细菌类群在獭兔生长和盲肠食粪症中所起的作用。