KT metrics are calculated only from papers uploaded or published on KnowledgeTrend and citations matched between those KnowledgeTrend papers. Imported metadata and external citation counts are excluded.
Research interests
Research interests have not yet been added.
Academic profiles & contact
Publications
1 research record shown
Ruminant livestock are important sources of human food and global greenhouse gas emissions. Feed degradation and methane formation by ruminants rely on metabolic interactions between rumen microbes and affect ruminant productivity. Rumen and camelid foregut microbial community composition was determined in 742 samples from 32 animal species and 35 countries, to estimate if this was influenced by diet, host species, or geography. Similar bacteria and archaea dominated in nearly all samples, while protozoal communities were more variable. The dominant bacteria are poorly characterised, but the methanogenic archaea are better known and highly conserved across the world. This universality and limited diversity could make it possible to mitigate methane emissions by developing strategies that target the few dominant methanogens. Differences in microbial community compositions were predominantly attributable to diet, with the host being less influential. There were few strong co-occurrence patterns between microbes, suggesting that major metabolic interactions are non-selective rather than specific.
Read paperCo-authors
Agriculture and Agri-Food Canada
1 shared publicationAgResearch
1 shared publicationAgResearch
1 shared publicationAgResearch
1 shared publicationAgResearch
1 shared publicationAgResearch
1 shared publicationConsejo Superior de Investigaciones Científicas
1 shared publicationConsejo Superior de Investigaciones Científicas
1 shared publicationUniversity of Concepción
1 shared publicationUniversidad Nacional de Cuyo
1 shared publicationUniversidad Nacional de Cuyo
1 shared publicationAgResearch
1 shared publication