Review

Diversity of Rumen Epithelial Adherent Bacteria and Its Influencing Factors

  • DAI Wenting ,
  • ZHENG Nan ,
  • ZHAO Shengguo ,
  • WANG Jiaqi
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  • 1. Ministry of Agriculture-Milk Risk Assessment Laboratory, Institute of Animal Sciences, Chinese Academy of Agricultural Sciences, Beijing 100193, China;
    2. College of Animal Science, Jilin University, Changchun 130062, China;
    3. Ministry of Agriculture-Milk and Dairy Product Inspection Center, Beijing 100193, China;
    4. Institute of Animal Sciences, Chinese Academy of Agricultural Sciences, State Key Laboratory of Animal Nutrition, Beijing 100193, China

Received date: 2013-09-06

  Online published: 2014-01-27

Abstract

For the limitation of isolation method, we have a relatively less knowledge of the community structures and functions of rumen epithelial adherent bacteria flora. However, with the rapid development of molecular biology and bioinformatics, especially the application of 16S rDNA library and polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE), systematic study on the species and diversity of the adherent bacteria has made progress. This review summarized the species, diversity and influencing factors of the rumen epithelial adherent bacteria.

Cite this article

DAI Wenting , ZHENG Nan , ZHAO Shengguo , WANG Jiaqi . Diversity of Rumen Epithelial Adherent Bacteria and Its Influencing Factors[J]. Chinese Journal of Animal Nutrition, 2014 , 26(2) : 304 -310 . DOI: 10.3969/j.issn.1006-267x.2014.02.003

References

[1] CHENG K J, MCCOWAN R P, COSTERTON J W.Adherent epithelial bacteria in ruminants and their roles in digestive tract function[J].The American Journal of Clinical Nutrition, 1979, 32(1):139-148.

[2] MCCOWAN R P, CHENG K J, BAILEY C B, et al.Adhesion of bacteria to epithelial cell surfaces within the reticulo-rumen of cattle[J].Applied and Environmental Microbiology, 1978, 35(1):149-155.

[3] RIEU F, FONTY G, GAILLARD B, et al.Electron microscopy study of the bacteria adherent to the rumen wall in young conventional lambs[J].Canadian Journal of Microbiology, 1990, 36(2):140-144.  

[4] RUSSELL J B, GARNER M R, FLINT J P, et al.Allisonella histaminiformans gen.nov., sp.nov:a novel bacterium that produces histamine, utilizes histidine as its sole energy source, and could play a role in bovine and equine laminitis[J].Systematic and Applied Microbiology, 2002, 25(4):498-506.  

[5] SEMJN G, GLFI P.Factors influencing the adherence of strains of Streptococcus bovis and Escherichia coli isolated from ruminal epithelium[J].Veterinary Research Communications, 1990, 14(3):181-191.  

[6] STYRIAK I, GALFI P, KMET V, et al.Adherence of ruminal Streptococcus bovis and Lactobacillus strains to primary and secondary cultures of rumen epithelium[J].Acta Microbiologica et Immunologica Hungarica, 1992, 39(3/4):323-325.

[7] ŠTYRIAK I, GALFI P, KMET V, et al.The adherence of three Streptococcus bovis strains to cells of rumen epithelium primoculture under various conditions[J].Arch für Tierernahr, 1994, 46(4):357-365.  

[8] MEAD L J, JONES G A.Isolation and presumptive identification of adherent epithelial bacteria(‘epimural'bacteria)from the ovine rumen wall[J].Applied and Environmental Microbiology, 1981, 41(4):1020-1028.

[9] KMET V, BOD'A K, KRAVJANSKŸ I.Adherence of bacteria to epithelial cells of the rumen wall[J].Veterinary Medicine(Prague), 1984, 29(8):473-477.

[10] SADET S, MARTIN C, MEUNIER B, et al.PCR-DGGE analysis reveals a distinct diversity in the bacterial population attached to the rumen epithelium[J].Animal, 2007, 1(7):939-944.  

[11] SADET-BOURGETEAU S, MARTIN C, MORGAVI D P.Bacterial diversity dynamics in rumen epithelium of wethers fed forage and mixed concentrate forage diets[J].Veterinary Microbiology, 2010, 46(1/2):98-104.

[12] GÁLFI P, NEOGRÁDY S, SEMJÉN G, et al.Attachment of different Escherichia coli strains to cultured rumen epithelial cells[J].Veterinary Microbiology, 1998, 61(3):191-197.  

[13] WALLACE R J, CHENG K J, DINSDALE D, et al.An independent microbial flora of the epithelium and its role in the ecomicrobiology of the rumen[J].Nature, 1979, 279(5712):424-426.  

[14] LUKÁS F, SIMÜNEK J, MRÁZEK J, et al.PCR-DGGE analysis of bacterial population attached to the bovine rumen wall[J].Folia microbiologica, 2010, 55(4):345-348.  

[15] PETRI R M, SCHWAIGER T, PENNER G B, et al.Changes in the rumen epimural bacterial diversity of beef cattle as affected by diet and induced ruminal acidosis[J].Applied and Environmental Microbiology, 2013, 79(12):3744-3755.  

[16] CHO S J, CHO K M, SHIN E C, et al.16S rDNA analysis of bacterial diversity in three fractions of cow rumen[J].Microbiology and Biotechnology, 2006, 16(1):92-101.

[17] CHEN Y H, PENNER G B, LI M, et al.Changes in bacterial diversity associated with epithelial tissue in the beef cow rumen during the transition to a high-grain diet[J].Applied and Environmental Microbiology, 2011, 77(16):5770-5781.  

[18] LI M, ZHOU M, ADAMOWICZ E, et al.Characterization of bovine ruminal epithelial bacterial communities using 16S rRNA sequencing, PCR-DGGE, and qRT-PCR analysis[J].Veterinary Microbiology, 2012, 155(1):72-80.  

[19] 刘开朗, 卜登攀, 王加启, 等.六个不同品种牛的瘤胃微生物群落的比较分析[J].中国农业大学学报, 2009, 14(1):13-18.

[20] WELLS J M, LOONEN L M, KARCZEWSKI J M, et al.The role of innate signaling in the homeostasis of tolerance and immunity in the intestine[J].Medical Microbiology, 2010, 300(1):41-48.

[21] STER C, LOISELLE M C, LACASSE P, et al.Effect of postcalving serum nonesterified fatty acids concentration on the functionality of bovine immune cells[J].Journal of Dairy Science, 2012, 95(2):708-717.  

[22] CHEN Y H, OBA M, GUAN L L.Variation of bacterial communities and expression of Toll-like receptor genes in the rumen of steers differing in susceptibility to subacute ruminal acidosis[J].Veterinary Microbiology, 2012, 159(3/4):451-459.
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