Ruminant Nutrition and Digestive Physiology, Legume Nitrogen Fixing Symbiosis, Turfgrass Adaptation and Management

Rumen microbial community composition varies with diet and host, but a core microbiome is found across a wide geographical range

Scientific Reports · 2015

GGemma Henderson·FFaith Cox·SSiva Ganesh·AArjan Jonker·WWayne Young·GGlobal Rumen Census Collaborators·LLeticia Abecia·EErika Angarita·PPaula Aravena·GGraciela Nora Arenas·CClaudia Ariza·GGraeme T. Attwood·JJose Mauricio Avila·JJorge Ávila–Stagno·AA. Bannink·RRolando Barahona Rosales·MMariano Batistotti·MMads F. Bertelsen·AAya Brown-Kav·AA. Carvajal·LLaura Cersosimo·AAlex V. Chaves·JJohn S. Church·NNicholas Clipson·MMario A. Cobos-Peralta·AAdrian L. Cookson·SSilvio Cravero·OOmar Cristobal-Carballo·KKatie Crosley·GG. D. Cruz·MMaría Esperanza Cerón‐Cucchi·RRodrigo de la Barra·AAlexandre B. de Menezes·EEdênio Detmann·KK. Dieho·JJ. Dijkstra·WWilliam Lima Santiago dos Reis·MM. E. R. Dugan·SSeyed Hadi Ebrahimi·EEmma Eythórsdóttir·FFabian Nde Fon·MMartín Fraga·FFrancisco Franco·CChris Friedeman·NNaoki Fukuma·DDragana Gagić·IIsabelle D.M. Gangnat·DDiego Grilli·LLe Luo Guan·VVahideh Heidarian Miri·EEmma Hernandez‐Sanabria·AAlma Ximena Ibarra Gomez·OO. A. Isah·SSuzanne L. Ishaq·EElie Jami·JJuan Jelincic·JJuha Kantanen·WWilliam J. Kelly·SSeon‐Ho Kim·AAthol V. Klieve·YYasuo Kobayashi·SSatoshi Koike·JJ Kopečný·TTorsten Nygaard Kristensen·SS.J. Krizsan·HHannah Lachance·MMedora Lachman·WW. R. Lamberson·SSuzanne C. Lambie·JJan Lassen·SSinead C. Leahy·SSang-Suk Lee·FFlorian Leiber·EE. Lewis·BBo Lin·RRaúl Lira·PPeter Lund·EEdgar Macipe·LLovelia L. Mamuad·HHilário Cuquetto Mantovani·GGisela Marcoppido·CCristian Márquez·CCécile Martin·GG. Martı́nez·MMaría Eugenia Martínez·OOlga Lucía Mayorga·TTim A. McAllister·CChristopher S. McSweeney·LLorena Mestre·EElena Minnée·MMakoto Mitsumori·IItzhak Mizrahi·IIsabel Molina·AA. Muenger·CCamila Muñoz·BBoštjan Murovec·JJ.R. Newbold·VVictor Nsereko·MM. O’Donovan·SSunday Adewale Okunade
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Abstract

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.

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