about
Diversity and community composition of methanogenic archaea in the rumen of Scottish upland sheep assessed by different methodsOral Samples as Non-Invasive Proxies for Assessing the Composition of the Rumen Microbial CommunityArchaeal abundance in post-mortem ruminal digesta may help predict methane emissions from beef cattleThe rumen microbial metaproteome as revealed by SDS-PAGEApplication of meta-omics techniques to understand greenhouse gas emissions originating from ruminal metabolismThe ruminal microbiome associated with methane emissions from ruminant livestock.Effect of Sunflower and Marine Oils on Ruminal Microbiota, In vitro Fermentation and Digesta Fatty Acid ProfileIsolation of Streptococcus thoraltensis from rabbit faeces.Differential recovery of bacterial and archaeal 16S rRNA genes from ruminal digesta in response to glycerol as cryoprotectant.Identification, Comparison, and Validation of Robust Rumen Microbial Biomarkers for Methane Emissions Using Diverse Bos Taurus Breeds and Basal Diets.Assembly of 913 microbial genomes from metagenomic sequencing of the cow rumen.Addressing Global Ruminant Agricultural Challenges Through Understanding the Rumen Microbiome: Past, Present, and FutureMAGpy: a reproducible pipeline for the downstream analysis of metagenome-assembled genomes (MAGs).Dietary supplemental plant oils reduce methanogenesis from anaerobic microbial fermentation in the rumenA heritable subset of the core rumen microbiome dictates dairy cow productivity and emissions
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description
investigador
@es
researcher
@en
wetenschapper
@nl
name
Tim J Snelling
@en
Tim J Snelling
@nl
type
label
Tim J Snelling
@en
Tim J Snelling
@nl
prefLabel
Tim J Snelling
@en
Tim J Snelling
@nl
P31
P496
0000-0002-8952-8826