Appl Environ

Appl Environ Microbiol 2012, 78:8245–8253.PubMedCentralPubMedCYT387 CrossRef 18. Cheng YF, Edwards JE, Allison GG, Zhu WY, Theodorou MK: Diversity and activity of enriched ruminal cultures of anaerobic fungi and methanogens grown together in consecutive batch culture. Bioresour Technol 2009, 100:4821–4828.PubMedCrossRef

19. Jin W, Cheng YF, Mao SY, Zhu WY: Isolation of natural cultures of anaerobic fungi and indigenously associated methanogens from herbivores and their Saracatinib supplier bioconversion of lignocellulosic materials to methane. Bioresour Technol 2011, 102:7925–7931.PubMedCrossRef 20. Irbis C, Ushida K: Detection of methanogens and proteobacteria from a single cell of rumen ciliate protozoa. J Gen Appl Microbiol 2004, 50:203–212.PubMedCrossRef 21. Tokura M, Ushida K, Miyazaki K, Kojima Y: Methanogens associated with rumen ciliates. FEMS Microbiol Ecol 1997, 22:137–143.CrossRef 22. Wolin MJ, Miller TL, Stewart CS: Microbe-microbe

interactions. In The rumen microbial ecosystem. 2nd edition. Edited by: Hobson PN, Stewart CS. New York, NY: Blackie Academic and Professional; 1997:467–491.CrossRef 23. Ametaj BN, Zebeli Q, Saleem F, Psychogios N, Lewis MJ, Dunn SM, Xia J, Wishart DS: Metabolomics reveals unhealthy alterations in rumen metabolism with increased proportion of cereal grain in the diet of dairy cows. Metabolomics 2010, 6:583–594.CrossRef 24. Kasymalieva selleck chemical KK, Khidoyatov AA, Rakhimov DA, Ashubaeva ZD: Pectins of tobacco stems, rice

straw, and kenaf chaff. Chem Nat Compd 1990, 26:459–460.CrossRef 25. Kopecný J, Hodrová B: Pectinolytic enzymes of anaerobic fungi. Lett Appl Microbiol 1995, 20:312–316.PubMedCrossRef 26. Hook SE, Steele MA, Northwood KS, Wright ADG, McBride BW: Impact of high-concentrate feeding and low ruminal pH on methanogens and protozoa in the rumen of dairy cows. Microb Ecol 2011, 62:94–105.PubMedCrossRef 27. Legay-Carmier F, Bauchart D: Distribution of bacteria in the rumen contents of dairy cows given a diet supplemented with soya-bean soil. Br J Nutr 1989, 61:725–740.PubMedCrossRef 28. Huo W, Zhu WY, Mao SY: Impact of subacute ruminal acidosis on the diversity of liquid and solid-associated bacteria in the rumen of goats. World J Microbiol Biotechnol 2013, 30:669–680.PubMedCrossRef 29. Cheng YF, Etofibrate Mao SY, Pei CX, Liu JX, Zhu WY: Detection and diversity analysis of rumen methanogens in co-cultures with anaerobic fungi. Acta Microbiol Sin 2006, 46:879–883. 30. Bryant MP, Burkey LA: Cultural methods and some characteristics of some of the more numerous groups of bacteria in the bovine rumen. J Dairy Sci 1953, 36:205–217.CrossRef 31. Orpin CG: Studies on the rumen flagellate Neocallimastix frontalis . J Gen Microbiol 1975, 91:249–262.PubMedCrossRef 32. Wright ADG, Dehority BA, Lynn DH: Phylogeny of the rumen ciliates Entodinium, Epidinium and Polyplastron (Litostomatea: Entodiniomorphida) inferred from small subunit ribosomal RNA sequences.

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