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PUBMED FOR HANDHELDS

Journal Abstract Search


300 related items for PubMed ID: 17675444

  • 1. Establishment and development of ruminal hydrogenotrophs in methanogen-free lambs.
    Fonty G, Joblin K, Chavarot M, Roux R, Naylor G, Michallon F.
    Appl Environ Microbiol; 2007 Oct; 73(20):6391-403. PubMed ID: 17675444
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  • 3. Influence of the composition of the cellulolytic flora on the development of hydrogenotrophic microorganisms, hydrogen utilization, and methane production in the rumens of gnotobiotically reared lambs.
    Chaucheyras-Durand F, Masséglia S, Fonty G, Forano E.
    Appl Environ Microbiol; 2010 Dec; 76(24):7931-7. PubMed ID: 20971877
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  • 4. Establishment of hydrogen-utilizing bacteria in the rumen of the newborn lamb.
    Morvan B, Dore J, Rieu-Lesme F, Foucat L, Fonty G, Gouet P.
    FEMS Microbiol Lett; 1994 Apr 15; 117(3):249-56. PubMed ID: 8200502
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  • 6. Considerations in the use of fluorescence in situ hybridization (FISH) and confocal laser scanning microscopy to characterize rumen methanogens and define their spatial distributions.
    Valle ER, Henderson G, Janssen PH, Cox F, Alexander TW, McAllister TA.
    Can J Microbiol; 2015 Jun 15; 61(6):417-28. PubMed ID: 25924182
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  • 8. Effects of hop varieties on ruminal fermentation and bacterial community in an artificial rumen (rusitec).
    Narvaez N, Wang Y, Xu Z, Alexander T, Garden S, McAllister T.
    J Sci Food Agric; 2013 Jan 15; 93(1):45-52. PubMed ID: 22692875
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  • 10. Ruminal Methanogen Community in Dairy Cows Fed Agricultural Residues of Corn Stover, Rapeseed, and Cottonseed Meals.
    Wang P, Zhao S, Wang X, Zhang Y, Zheng N, Wang J.
    J Agric Food Chem; 2016 Jul 13; 64(27):5439-45. PubMed ID: 27322573
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  • 11. Changes in methane emission, rumen fermentation, and methanogenic community in response to silage and dry cornstalk diets.
    Chong L, Zhuping Z, Tongjun G, Yongming L, Hongmin D.
    J Basic Microbiol; 2014 Jun 13; 54(6):521-30. PubMed ID: 23696266
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  • 12. Rumen metagenome and metatranscriptome analyses of low methane yield sheep reveals a Sharpea-enriched microbiome characterised by lactic acid formation and utilisation.
    Kamke J, Kittelmann S, Soni P, Li Y, Tavendale M, Ganesh S, Janssen PH, Shi W, Froula J, Rubin EM, Attwood GT.
    Microbiome; 2016 Oct 19; 4(1):56. PubMed ID: 27760570
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  • 14. Growth and rumen function of gnotobiotic lambs fed on starchy diets.
    Hobson PN, Mann SO, Stewart CS.
    J Gen Microbiol; 1981 Sep 19; 126(1):219-20. PubMed ID: 7334333
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  • 16. Ruminal methane production: Associated microorganisms and the potential of applying hydrogen-utilizing bacteria for mitigation.
    Lan W, Yang C.
    Sci Total Environ; 2019 Mar 01; 654():1270-1283. PubMed ID: 30841400
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  • 17. Nitrate decreases ruminal methane production with slight changes to ruminal methanogen composition of nitrate-adapted steers.
    Zhao L, Meng Q, Li Y, Wu H, Huo Y, Zhang X, Zhou Z.
    BMC Microbiol; 2018 Mar 20; 18(1):21. PubMed ID: 29554875
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  • 18. In vitro H2 utilization by a ruminal acetogenic bacterium cultivated alone or in association with an archaea methanogen is stimulated by a probiotic strain of Saccharomyces cerevisiae.
    Chaucheyras F, Fonty G, Bertin G, Gouet P.
    Appl Environ Microbiol; 1995 Sep 20; 61(9):3466-7. PubMed ID: 7574654
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  • 19. Characterisation of the ruminal fermentation and microbiome in lambs supplemented with hydrolysable and condensed tannins.
    Salami SA, Valenti B, Bella M, O'Grady MN, Luciano G, Kerry JP, Jones E, Priolo A, Newbold CJ.
    FEMS Microbiol Ecol; 2018 May 01; 94(5):. PubMed ID: 29648587
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  • 20. A vaccine against rumen methanogens can alter the composition of archaeal populations.
    Williams YJ, Popovski S, Rea SM, Skillman LC, Toovey AF, Northwood KS, Wright AD.
    Appl Environ Microbiol; 2009 Apr 01; 75(7):1860-6. PubMed ID: 19201957
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