Validating the Use of Bovine Buccal Sampling as a Proxy for the Rumen Microbiota by Using a Time Course and Random Forest Classification Approach is a research paper published in Applied and Environmental Microbiology (2020). On theSindex it has a DataRank of 0. It has been cited 40 times.
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HHS | National Institutes of Health
Grant: T32 GM07215
USDA | National Institute of Food and Agriculture
Grant: 2019-05592
USDA | National Institute of Food and Agriculture
Grant: 2015-67015-22970
U.S. Department of Agriculture
Grant: 5090-31000-026-00-D
U.S. Department of Agriculture
Grant: 5090-31000-025-00D
U.S. Department of Agriculture
Grant: 8042-31000-001-00-D
U.S. Department of Agriculture
Grant: 8042-31000-002-00-D
NIGMS NIH HHS
Grant: T32 GM007215
National Institutes of Health
Grant: 2T32GM007215-36
Graduate Training in Molecular Biosciences
Influential Citations
2
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 1 of Microbiota members from body sites of dairy cows are largely shared within individual hosts throughout lactation but sharing is limited in the herd
Additional file 1 of Microbiota members from body sites of dairy cows are largely shared within individual hosts throughout lactation but sharing is limited in the herd
Additional file 2 of Microbiota members from body sites of dairy cows are largely shared within individual hosts throughout lactation but sharing is limited in the herd
Additional file 2 of Microbiota members from body sites of dairy cows are largely shared within individual hosts throughout lactation but sharing is limited in the herd
Additional file 3 of Microbiota members from body sites of dairy cows are largely shared within individual hosts throughout lactation but sharing is limited in the herd
Additional file 3 of Microbiota members from body sites of dairy cows are largely shared within individual hosts throughout lactation but sharing is limited in the herd
Additional file 5 of Microbiota members from body sites of dairy cows are largely shared within individual hosts throughout lactation but sharing is limited in the herd
Additional file 5 of Microbiota members from body sites of dairy cows are largely shared within individual hosts throughout lactation but sharing is limited in the herd
Additional file 6 of Microbiota members from body sites of dairy cows are largely shared within individual hosts throughout lactation but sharing is limited in the herd
Additional file 6 of Microbiota members from body sites of dairy cows are largely shared within individual hosts throughout lactation but sharing is limited in the herd
Additional file 10 of Microbiota members from body sites of dairy cows are largely shared within individual hosts throughout lactation but sharing is limited in the herd
Additional file 10 of Microbiota members from body sites of dairy cows are largely shared within individual hosts throughout lactation but sharing is limited in the herd
Additional file 2 of An artificial intelligence approach of feature engineering and ensemble methods depicts the rumen microbiome contribution to feed efficiency in dairy cows
Additional file 2 of An artificial intelligence approach of feature engineering and ensemble methods depicts the rumen microbiome contribution to feed efficiency in dairy cows
Additional file 9 of Microbiota members from body sites of dairy cows are largely shared within individual hosts throughout lactation but sharing is limited in the herd
Additional file 13 of Microbiota members from body sites of dairy cows are largely shared within individual hosts throughout lactation but sharing is limited in the herd
Additional file 11 of Microbiota members from body sites of dairy cows are largely shared within individual hosts throughout lactation but sharing is limited in the herd
Additional file 13 of Microbiota members from body sites of dairy cows are largely shared within individual hosts throughout lactation but sharing is limited in the herd
Additional file 7 of Microbiota members from body sites of dairy cows are largely shared within individual hosts throughout lactation but sharing is limited in the herd
Additional file 8 of Microbiota members from body sites of dairy cows are largely shared within individual hosts throughout lactation but sharing is limited in the herd