Diversity and Composition of Rumen Bacteria, Fungi, and Protozoa in Goats and Sheep Living in the Same High-Altitude Pasture
文献类型: 外文期刊
作者: Langda, Suo 1 ; Zhang, Chenguang 2 ; Zhang, Ke 2 ; Gui, Ba 1 ; Ji, De 1 ; Deji, Ciren 1 ; Cuoji, Awang 1 ; Wang, Xiaolong 2 ;
作者机构: 1.Tibet Acad Agr & Anim Husb Sci, Inst Anim Sci, Lhasa 850009, Peoples R China
2.Northwest A&F Univ, Coll Anim Sci & Technol, Yangling 712100, Shaanxi, Peoples R China
关键词: amplicon gene sequencing; adaptive evolution; high altitude; rumen microbes; ruminant; volatile fatty acids
期刊名称:ANIMALS ( 影响因子:2.752; 五年影响因子:2.942 )
ISSN: 2076-2615
年卷期: 2020 年 10 卷 2 期
页码:
收录情况: SCI
摘要: Simple Summary Tibetan goats and sheep graze together but have different growth performances, immune responses, and feeding preferences in the Tibetan pasture. Rumen microbiota composed of bacteria, fungi, and protozoa are necessary for a healthy ruminant. Therefore, in this study, we comprehensively describe composition and diversity of bacteria, fungi, and protozoa in the high- altitude rumen. Compared with sheep, the bacteria that degrade crude protein and produce volatile fatty acids (VFA) were increased in the rumen of goats (Saccharofermentans and Lachnospiraceae_XPB1014) (p < 0.05). In addition, when compared with goats, the fungi and protozoa that degrade fiber were increased in rumen of sheep (Neocallimastigaceae and Metadinium) (p < 0.05). Furthermore, VFA were significantly increased in the rumen of goats compared with sheep (p < 0.05). The VFA level was consistent with differences in the microbiota composition in the rumen between goats and sheep. Under mixed grazing conditions, goats tend to select a high-crude protein diet that is good for growth, whereas sheep tend to select a high-lignin diet that is difficult to digest. Therefore, the different microbiota in the rumen of goats and sheep may be explained by dietary preference. Environmental adaptation of ruminants was highly related to microbiota in the rumen. To investigate the diversity and composition of bacteria, fungi, and protozoa in the rumen of high-altitude animals, amplicon gene sequencing was performed using rumen fluid samples derived from both Tibetan goats and sheep at the same pasture in a highland (altitude > 4800 m). Between these two species, the ruminal bacteria and fungi were significantly different at multiple taxonomic levels. The alpha diversity of bacteria was significantly high in goats (p < 0.05). One hundred and sixty-four and 29 Operational Taxonomy Units (OTUs) with significant differences were detected in bacteria and fungi, respectively. The abundance of bacteria, fungi, and protozoa in the rumen was characterized at multiple taxonomic levels, and we determined that Firmicutes, Bacteroidetes, Neocallimastigomycota, and Ciliophora were the most abundant bacteria, fungi, and protozoa. The family Neocallimastigaceae and the genus Metadinium had cellulose degradation capacity in the rumen with high abundance, thereby, suggesting that fungi and protozoa played an essential role in rumen fermentation. In addition, by comparing microbiota in the rumen of goats and sheep it was found, that the fiber-degrading fungi genus (Cyllamyces) was increased in the rumen of sheep (p < 0.05) whereas VFA-producing bacteria (Saccharofermentans and Lachnospiraceae_XPB1014) were increased in the rumen of goats (p < 0.05). Interestingly, in the rumen, no differences in protozoa were observed between goats and sheep (p > 0.05). Furthermore, when compared to sheep, level of acetic acid, propionic acid, and total volatile fatty acid (TVFA) were significantly increased in the rumen of goats (p < 0.05). Taken together, these results suggested microbiota in the rumen drive goats to better adapt to high-altitude grazing conditions.
- 相关文献
作者其他论文 更多>>
-
Compendium of 5810 genomes of sheep and goat gut microbiomes provides new insights into the glycan and mucin utilization
作者:Zhang, Ke;Zhang, Ting;Xu, Yangbin;Lei, Yu;Liu, Gongwei;Qian, Quan;Mao, Yunrui;Kalds, Peter;Yang, Yuxin;Wang, Xiaolong;Chen, Yulin;He, Chong;Wang, Meili;Wang, Lei;Suo, Langda;Wu, Yujiang;Cuoji, Awang;Suo, Langda;Wu, Yujiang;Cuoji, Awang;Guo, Mengmeng;Guo, Jiazhong;Brugger, Daniel;Gan, Shangquan;Wang, Xiaolong;Chen, Yulin;Wang, Xiaolong;Chen, Yulin;Zhao, Fangqing
关键词:
-
Multi-omic Analyses Shed Light on The Genetic Control of High-altitude Adaptation in Sheep
作者:Li, Chao;Chen, Bingchun;Zhou, Shiwei;Kalds, Peter;Zhang, Ke;Huang, Shuhong;Li, Ran;Li, Yan;Fang, Wenwen;Cai, Yudong;Jiang, Yu;Chen, Yulin;Wang, Xiaolong;Li, Chao;Bhati, Meenu;Leonard, Alexander;Pausch, Hubert;Langda, Suo;Cuoji, Awang;Wu, Yujiang;Cuomu, Renqin;Gui, Ba;Pu, Peng;Zhu, Xiaojia;Wang, Xiran;Zhu, Haolin;Li, Ming;Wang, Yutao;Jia, Ting;Pu, Tianchun;Pan, Xiangyu;He, Chong;Zhou, Ping;Zhou, Ping;Han, Jian-Lin;Han, Jian-Lin
关键词:Environmental adaptation; High altitude; Hypoxia; Selection signature; Sheep
-
Age-specific composition of milk microbiota in Tibetan sheep and goats
作者:Cao, Xi;Fang, Yumeng;Chen, Yulin;Zhang, Ke;Bandan, Pingcuo;Suo, Langda;Jiacuo, Gesang;Wu, Yujiang;Cuoji, Awang;Zhuoga, Deqing;Ji, De;Quzhen, Ciren
关键词:Milk microbiota; Ruminant; Colostrum; Milk composition; Lactobacillus
-
Genome-wide association analysis of fleece traits in Northwest Xizang white cashmere goat
作者:Lu, Xiaotian;Suo, Langda;Ji, De;Cuomu, Renqing;Cuoji, Awang;Gui, Ba;Wu, Yujiang;Lu, Xiaotian;Yan, Xiaochun;Li, Wenze;Su, Yixin;Zhou, Bohan;Liu, Can;Yang, Lepu;Wang, Jiayin;Wang, Zhiying;Jiang, Wei;Su, Rui;Ji, De;Cuomu, Renqing;Cuoji, Awang;Gui, Ba;Wu, Yujiang;Su, Rui
关键词:Northwest Xizang white cashmere goat; genome-wide association analysis; cashmere trait; GGP_Goat_70K SNP chip; linear mixed model; Sanger sequencing
-
Stress adaptation in Tibetan cashmere goats is governed by inherent metabolic differences and manifested through variable cashmere phenotypes
作者:Zhao, Bingru;Zhao, Bingru;Chen, Tong;Tulafu, Hanikezi;Lu, Qingwei;Liu, Wenna;Fu, Xuefeng;Suo, Langda;Wu, Yujiang;Lu, Qingwei;Liu, Wenna;Sammad, Abdul;Wu, Cuiling
关键词:Tibetan cashmere goat; Stress adaptation; Metabolite; Multi-omics analysis; KEGG pathways
-
Early-life milk replacer feeding mediates lipid metabolism disorders induced by colonic microbiota and bile acid profiles to reduce body weight in goat model
作者:Zhang, Ke;Zhang, Ting;Cuoji, Awang;Xu, Yangbin;Zhao, Yitong;Yang, Yuxin;Wang, Xiaolong;Chen, Yulin;Guo, Mengmeng;Cuoji, Awang;Suo, Langda;Wu, Yujiang;Brugger, Daniel;Suo, Langda;Wu, Yujiang
关键词:Bile acid; Colon microbiota; Goat model; Lipid metabolism; Milk replacer
-
Bifidobacterium pseudolongum-Derived Bile Acid from Dietary Carvacrol and Thymol Supplementation Attenuates Colitis via cGMP-PKG-mTORC1 Pathway
作者:Zhang, Ke;Xu, Yangbin;Zheng, Yining;Zhang, Ting;Yan, Yiting;Lei, Yu;Cao, Xi;Wang, Xiaolong;Chen, Yulin;Deng, Lu;Yang, Yuxin;Wu, Yujiang;Yan, Frances;Lei, Zhaomin;Brugger, Daniel
关键词:12-ketodeoxycholic acid; bile acid; gut microbiota; inflammatory bowel disease; mTOR



