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Research Article

Ecology, Metabolism, and Genetics of Ruminal Selenomonads

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Pages 27-65 | Published online: 25 Sep 2008

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Read on this site (6)

D. K. Dittoe, R. C. Anderson, N. A. Krueger, R. B. Harvey, T. L. Poole, T. L. Crippen, T. R. Callaway & S. C. Ricke. (2023) Survival of Campylobacter jejuni during in vitro culture with mixed bovine ruminal microorganisms in the presence of methanogen inhibitors. Journal of Environmental Science and Health, Part B 58:12, pages 711-717.
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Seiji Kojima, Kanako Hayashi, Saeko Tochigi, Tomonobu Kusano, Jun Kaneko & Yoshiyuki Kamio. (2016) Peptidoglycan-associated outer membrane protein Mep45 of rumen anaerobe Selenomonas ruminantium forms a non-specific diffusion pore via its C-terminal transmembrane domain. Bioscience, Biotechnology, and Biochemistry 80:10, pages 1954-1959.
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J.A. Patterson & S.C. Ricke. (2015) Effect of ethanol and methanol on growth of ruminal bacteria Selenomonas ruminantium and Butyrivibrio fibrisolvens. Journal of Environmental Science and Health, Part B 50:1, pages 62-67.
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Suwat Saengkerdsub & Steven C. Ricke. (2014) Ecology and characteristics of methanogenic archaea in animals and humans. Critical Reviews in Microbiology 40:2, pages 97-116.
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R.S. Pinder, J.A. Patterson, C.A. O’Bryan, P.G. Crandall & S.C. Ricke. (2012) Dietary fiber content influences soluble carbohydrate levels in ruminal fluids. Journal of Environmental Science and Health, Part B 47:7, pages 710-717.
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Kingsley D. Dunkley, Todd R. Callaway, Corliss A. O'Bryan, Megan M. Kundinger, Claudia S. Dunkley, Robin C. Anderson, David J. Nisbet, Philip G. Crandall & Steven C. Ricke. (2012) Comparison of Real Time Polymerase Chain Reaction Quantification of Changes in hilA and rpoS Gene Expression of a Salmonella Typhimurium Poultry Isolate Grown at Fast Versus Slow Dilution Rates in an Anaerobic Continuous Culture System. Food Biotechnology 26:3, pages 239-251.
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Articles from other publishers (37)

Venkata Vinay Kumar Bandarupalli & Benoit St-Pierre. (2023) Metagenomics-Based Analysis of Candidate Lactate Utilizers from the Rumen of Beef Cattle. Microorganisms 11:3, pages 658.
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Jun Liu, Xia Li, Yanliang Xu, Yutian Wu, Ruili Wang, Xiujuan Zhang, Yaguang Hou, Haoli Qu, Li Wang, Mingxiong He, Anne Kupczok & Jing He. (2023) Highly efficient reduction of ammonia emissions from livestock waste by the synergy of novel manure acidification and inhibition of ureolytic bacteria. Environment International 172, pages 107768.
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Meng M. Li, S. Ghimire, B.A. Wenner, R.A. Kohn, J.L. Firkins, B. Gill & M.D. Hanigan. (2022) Effects of acetate, propionate, and pH on volatile fatty acid thermodynamics in continuous cultures of ruminal contents. Journal of Dairy Science 105:11, pages 8879-8897.
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Tian Xie, Fanlin Kong, Wei Wang, Yajing Wang, Hongjian Yang, Zhijun Cao & Shengli Li. (2022) In vitro and in vivo Studies of Soybean Peptides on Milk Production, Rumen Fermentation, Ruminal Bacterial Community, and Blood Parameters in Lactating Dairy Cows. Frontiers in Veterinary Science 9.
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Dana K. Dittoe, Elena G. Olson & Steven C. Ricke. (2022) Impact of the gastrointestinal microbiome and fermentation metabolites on broiler performance. Poultry Science 101:5, pages 101786.
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Xianju Wang, Changsheng Hu, Luming Ding, Yiguo Tang, Haiyan Wei, Cuixia Jiang, Qi Yan, Quanmin Dong & Abraham Allan Degen. (2021) Astragalus membranaceus Alters Rumen Bacteria to Enhance Fiber Digestion, Improves Antioxidant Capacity and Immunity Indices of Small Intestinal Mucosa, and Enhances Liver Metabolites for Energy Synthesis in Tibetan Sheep. Animals 11:11, pages 3236.
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Xiaoxia Dai, Timothy J. Hackmann, Richard R. Lobo & Antonio P. Faciola. (2020) Lipopolysaccharide Stimulates the Growth of Bacteria That Contribute to Ruminal Acidosis. Applied and Environmental Microbiology 86:4.
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Pablo S. Castagnino, Erick E. Dallantonia, Giovani Fiorentini, Elias San Vito, Juliana D. Messana, Laís O. Lima, Tiago A. Simioni & Telma T. Berchielli. (2018) Changes in ruminal fermentation and microbial population of feedlot Nellore cattle fed crude glycerin and virginiamycin. Animal Feed Science and Technology 242, pages 69-76.
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Maren Witzig, Melanie B. Lengowski, Karin H.R. Zuber, Jens Möhring & Markus Rodehutscord. (2018) Effects of supplementing corn silage with different nitrogen sources on ruminal fermentation and microbial populations in vitro. Anaerobe 51, pages 99-109.
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Cornelia B. Rath, Falko Schirmeister, Rudolf Figl, Peter H. Seeberger, Christina Schäffer & Daniel Kolarich. (2018) Flagellin Glycoproteomics of the Periodontitis Associated Pathogen Selenomonas sputigena Reveals Previously Not Described O-glycans and Rhamnose Fragment Rearrangement Occurring on the Glycopeptides. Molecular & Cellular Proteomics 17:4, pages 721-736.
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Steven C. Ricke. 2017. Producing Safe Eggs. Producing Safe Eggs 323 345 .
Jiachao Zhang, Qisong Hu, Chuanbiao Xu, Sixin Liu & Congfa Li. (2016) Key Microbiota Identification Using Functional Gene Analysis during Pepper (Piper nigrum L.) Peeling. PLOS ONE 11:10, pages e0165206.
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Yogesh S. Shouche, Abhijit S. Dighe, Dhiraj P. Dhotre, Milind S. Patole & Dilip R. Ranade. 2015. Bergey's Manual of Systematics of Archaea and Bacteria. Bergey's Manual of Systematics of Archaea and Bacteria 1 12 .
S.C. Ricke. (2015) Potential of fructooligosaccharide prebiotics in alternative and nonconventional poultry production systems. Poultry Science 94:6, pages 1411-1418.
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Javad Gharechahi, Hossein Shahbani Zahiri, Kambiz Akbari Noghabi & Ghasem Hosseini Salekdeh. (2015) In-depth diversity analysis of the bacterial community resident in the camel rumen. Systematic and Applied Microbiology 38:1, pages 67-76.
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Steven C. Ricke. 2015. Food Safety. Food Safety 395 419 .
J. Felsberg, M. Jelínková, P. Kubizniaková & D. Matoulková. (2014) Development of a species-specific PCR assay for identification of the strictly anaerobic bacterium Selenomonas lacticifex found in biofilm-covered surfaces in brewery bottling halls . Journal of Applied Microbiology 117:5, pages 1328-1335.
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Oliver Deusch, Ciaran O’Flynn, Alison Colyer, Penelope Morris, David Allaway, Paul G. Jones & Kelly S. Swanson. (2014) Deep Illumina-Based Shotgun Sequencing Reveals Dietary Effects on the Structure and Function of the Fecal Microbiome of Growing Kittens. PLoS ONE 9:7, pages e101021.
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Ruiyang Zhang, Weiyun Zhu, Wen Zhu, Jianxin Liu & Shengyong Mao. (2014) Effect of dietary forage sources on rumen microbiota, rumen fermentation and biogenic amines in dairy cows. Journal of the Science of Food and Agriculture 94:9, pages 1886-1895.
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Steven L. Foley, Timothy J. Johnson, Steven C. Ricke, Rajesh Nayak & Jessica Danzeisen. (2013) Salmonella Pathogenicity and Host Adaptation in Chicken-Associated Serovars. Microbiology and Molecular Biology Reviews 77:4, pages 582-607.
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Si Hong Park, Irene Hanning, William Gilbert, Michelle Munro, Latha Devareddy & Steven C. Ricke. (2013) Feeding mice aged and fresh blackberries powder supplements result in shifts in the gastrointestinal microflora. Food Bioscience 1, pages 66-72.
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Edward Schwartz, Johannes Fritsch & Bärbel Friedrich. 2013. The Prokaryotes. The Prokaryotes 119 199 .
Lívia Fecskeová, Jozef Ivan, Peter Javorský & Peter Pristaš. (2012) Variability of putative rep gene cassettes in Selenomonas ruminantium plasmids . FEMS Microbiology Letters 336:2, pages 98-103.
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Gregory R. Siragusa & Steven C. Ricke. 2012. Organic Meat Production and Processing. Organic Meat Production and Processing 329 349 .
Xiaogang Gu, Sung G. Lee & Maor Bar-Peled. (2011) Biosynthesis of UDP-xylose and UDP-arabinose in Sinorhizobium meliloti 1021: first characterization of a bacterial UDP-xylose synthase, and UDP-xylose 4-epimerase. Microbiology 157:1, pages 260-269.
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Peter Pristas, Jozef Ivan & Peter Javorsky. (2010) Structural instability of small rolling circle replication plasmids from Selenomonas ruminantium. Plasmid 64:2, pages 74-78.
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L. Fecskeová, M. Piknová, P. Javorský & P. Pristaš. (2010) Lactate dehydrogenase gene variability among predominant lactate utilizing ruminal bacteria. Folia Microbiologica 55:4, pages 315-318.
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L. P. Andersen, P. Lange & M. Tvede. (2010) Selenomonas may puzzle the diagnosis of Helicobacter pylori in gastric mucosa. European Journal of Clinical Microbiology & Infectious Diseases 29:7, pages 891-892.
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J.A. Patterson, V.I. Chalova, R.B. Hespell & S.C. Ricke. (2010) Dilution rates influence ammonia-assimilating enzyme activities and cell parameters of Selenomonas ruminantium strain D in continuous (glucose-limited) culture. Journal of Applied Microbiology 108:1, pages 357-365.
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T.G. Nagaraja & Kelly F. Lechtenberg. (2007) Acidosis in Feedlot Cattle. Veterinary Clinics of North America: Food Animal Practice 23:2, pages 333-350.
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T.G. Nagaraja & E.C. Titgemeyer. (2007) Ruminal Acidosis in Beef Cattle: The Current Microbiological and Nutritional Outlook. Journal of Dairy Science 90, pages E17-E38.
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Edward Schwartz & Bärbel Friedrich. 2006. The Prokaryotes. The Prokaryotes 496 563 .
Adriana Sprincova, Peter Javorsky & Peter Pristas. (2005) pSRD191, a new member of RepL replicating plasmid family from Selenomonas ruminantium. Plasmid 54:1, pages 39-47.
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Takahiro YOSHII, Narito ASANUMA & Tsuneo HINO. (2003) Number of nitrate- and nitrite-reducing Selenomonas ruminantium in the rumen, and possible factors affecting its growth. Animal Science Journal 74:6, pages 483-491.
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Narito ASANUMA, Miwa IWAMOTO, Masaru KAWATO & Tsuneo HINO. (2002) Numbers of nitrate‐reducing bacteria in the rumen as estimated by competitive polymerase chain reaction. Animal Science Journal 73:3, pages 199-205.
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L. J. Yanke, L. B. Selinger & K. ‐J. Cheng. (2002) Phytase activity of Selenomonas ruminantium : a preliminary characterization . Letters in Applied Microbiology 29:1, pages 20-25.
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L. J. Yanke, H. D. Bae, L. B. Selinger & K. J. Cheng. (1998) Phytase activity of anaerobic ruminal bacteria. Microbiology 144:6, pages 1565-1573.
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