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Yingyu Mu

Showing results (1-10 of 7) with videos related to

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Msystems|January 25, 2022
Multi-omics Analysis Revealed Coordinated Responses of Rumen Microbiome and Epithelium to High-Grain-Induced Subacute Rumen Acidosis in Lactating Dairy CowsYingyu Mu, Wangpan Qi, Tao Zhang, et al.
Journal of Animal Science and Biotechnology|May 3, 2023
Coordinated response of milk bacterial and metabolic profiles to subacute ruminal acidosis in lactating dairy cowsYingyu Mu, Wangpan Qi, Tao Zhang, et al.
Msystems|December 12, 2023
Fecal microbial gene transfer contributes to the high-grain diet-induced augmentation of aminoglycoside resistance in dairy cattleTao Zhang, Yingyu Mu, Yunlong Gao, et al.
Microbiologyopen|October 3, 2018
High-production dairy cattle exhibit different rumen and fecal bacterial community and rumen metabolite profile than low-production cattleYingyu Mu, Xueyan Lin, Zhonghua Wang, et al.
Microbiologyopen|December 27, 2018
Determination of microbiological characteristics in the digestive tract of different ruminant speciesTian Zhang, Yingyu Mu, Deqing Zhang, et al.
Animal Nutrition (Zhongguo Xu Mu Shou Yi Xue Hui)|January 13, 2022
Responsive changes of rumen microbiome and metabolome in dairy cows with different susceptibility to subacute ruminal acidosisTao Zhang, Yingyu Mu, Ruiyang Zhang, et al.
The Journal of Nutritional Biochemistry|December 6, 2025
Pre-but not post-natal nutritional restriction promotes mammary developmentXusheng Dong, Qiuling Hou, Yingyu Mu, et al.
Pageof 1

Showing results (1-10 of 7) with videos related to

Sort By:
Pageof 1
Msystems|January 25, 2022
Multi-omics Analysis Revealed Coordinated Responses of Rumen Microbiome and Epithelium to High-Grain-Induced Subacute Rumen Acidosis in Lactating Dairy CowsYingyu Mu, Wangpan Qi, Tao Zhang, et al.
Journal of Animal Science and Biotechnology|May 3, 2023
Coordinated response of milk bacterial and metabolic profiles to subacute ruminal acidosis in lactating dairy cowsYingyu Mu, Wangpan Qi, Tao Zhang, et al.
Msystems|December 12, 2023
Fecal microbial gene transfer contributes to the high-grain diet-induced augmentation of aminoglycoside resistance in dairy cattleTao Zhang, Yingyu Mu, Yunlong Gao, et al.
Microbiologyopen|October 3, 2018
High-production dairy cattle exhibit different rumen and fecal bacterial community and rumen metabolite profile than low-production cattleYingyu Mu, Xueyan Lin, Zhonghua Wang, et al.
Microbiologyopen|December 27, 2018
Determination of microbiological characteristics in the digestive tract of different ruminant speciesTian Zhang, Yingyu Mu, Deqing Zhang, et al.
Animal Nutrition (Zhongguo Xu Mu Shou Yi Xue Hui)|January 13, 2022
Responsive changes of rumen microbiome and metabolome in dairy cows with different susceptibility to subacute ruminal acidosisTao Zhang, Yingyu Mu, Ruiyang Zhang, et al.
The Journal of Nutritional Biochemistry|December 6, 2025
Pre-but not post-natal nutritional restriction promotes mammary developmentXusheng Dong, Qiuling Hou, Yingyu Mu, et al.
Pageof 1