Development of an assay to quantify rumen ciliate protozoal biomass in cows using real-time PCR.
暂无分享,去创建一个
[1] A Bach,et al. Nitrogen metabolism in the rumen. , 2005, Journal of dairy science.
[2] W. Bergen. Quantitative determination of rumen ciliate protozoal biomass with real-time PCR. , 2004, The Journal of nutrition.
[3] Satoshi Koike,et al. Molecular ecological analysis of the gastrointestinal microbiota: a review. , 2004, The Journal of nutrition.
[4] David L. Wheeler,et al. GenBank: update , 2004, Nucleic Acids Res..
[5] G. Sayler,et al. Power Analysis for Real-Time PCR Quantification of Genes in Activated Sludge and Analysis of the Variability Introduced by DNA Extraction , 2003, Applied and Environmental Microbiology.
[6] J. Hafid,et al. Influence of the quantity of nonspecific DNA and repeated freezing and thawing of samples on the quantification of DNA by the Light Cycler. , 2003, Journal of microbiological methods.
[7] R. Mackie,et al. Establishing populations of Megasphaera elsdenii YE 34 and Butyrivibrio fibrisolvens YE 44 in the rumen of cattle fed high grain diets , 2003, Journal of applied microbiology.
[8] R. Rutkowski,et al. RT-PCR technique and its applications.State-of the-art , 2003 .
[9] Sara K. Davis,et al. Cross‐linking of Histone Proteins to DNA by UV Illumination of Chromatin Stained with Hoechst 33342 ¶ , 2003, Photochemistry and photobiology.
[10] C. Criddle,et al. Understanding bias in microbial community analysis techniques due to rrn operon copy number heterogeneity. , 2003, BioTechniques.
[11] J. T. Sylvester,et al. Technical note: Specific PCR amplification of protozoal 18S rDNA sequences from DNA extracted from ruminal samples of cows. , 2003, Journal of animal science.
[12] Sara K. Davis,et al. Rapid Communication Cross-linking of Histone Proteins to DNA by UV Illumination of Chromatin Stained with Hoechst 33342¶ , 2003 .
[13] F. Dini,et al. In Situ Identification by Fluorescently Labeled Oligonucleotide Probes of Morphologically Similar, Closely Related Ciliate Species , 2003, Microbial Ecology.
[14] A. Bird,et al. A comparison of five methods for extraction of bacterial DNA from human faecal samples. , 2002, Journal of microbiological methods.
[15] R. Forster,et al. Enumeration of Megasphaera elsdenii in rumen contents by real‐time Taq nuclease assay , 2002, Journal of applied microbiology.
[16] G. Attwood,et al. Design and Use of 16S Ribosomal DNA-Directed Primers in Competitive PCRs to Enumerate Proteolytic Bacteria in the Rumen , 2002, Microbial Ecology.
[17] S. Koike,et al. Development and use of competitive PCR assays for the rumen cellulolytic bacteria: Fibrobacter succinogenes, Ruminococcus albus and Ruminococcus flavefaciens. , 2001, FEMS microbiology letters.
[18] Y. Benno,et al. Diet-Dependent Shifts in the Bacterial Population of the Rumen Revealed with Real-Time PCR , 2001, Applied and Environmental Microbiology.
[19] L. Blackall,et al. DNA extraction from coral reef sediment bacteria for the polymerase chain reaction. , 2000, Journal of microbiological methods.
[20] J. Firkins,et al. Effects of degree of fat saturation on fiber digestion and microbial protein synthesis when diets are fed twelve times daily. , 2000, Journal of animal science.
[21] R. Mackie,et al. Use of 16S-rRNA Based Techniques to Investigate the Ecological Succession of Microbial Populations in the Immature Lamb Rumen: Tracking of a Specific Strain of Inoculated Ruminococcus and Interactions with Other Microbial Populations in Vivo , 1999, Microbial Ecology.
[22] B. Dalrymple,et al. 16S rDNA sequencing of Ruminococcus albus and Ruminococcus flavefaciens: design of a signature probe and its application in adult sheep. , 1999, Microbiology.
[23] C. Martin,et al. Influence of sampling site on concentrations and carbohydrate-degrading enzyme activities of protozoa and bacteria in the rumen. , 1999, Journal of animal science.
[24] N. St-Pierre,et al. Modeling ruminal digestibility of carbohydrates and microbial protein flow to the duodenum. , 1998, Journal of dairy science.
[25] J. Dijkstra,et al. Quantification of the recycling of microbial nitrogen in the rumen using a mechanistic model of rumen fermentation processes , 1998, The Journal of Agricultural Science.
[26] M. Yao,et al. Regulatory sequences for the amplification and replication of the ribosomal DNA minichromosome in Tetrahymena thermophila , 1997, Molecular and cellular biology.
[27] A. Bannink,et al. Comparison of mechanistic rumen models on mathematical formulation of extramicrobial and microbial processes. , 1997, Journal of dairy science.
[28] J. Doré,et al. Effect of concentrates in a hay diet on the contribution of anaerobic fungi, protozoa and bacteria to nitrogen in rumen and duodenal digesta in sheep , 1997 .
[29] D. Stahl,et al. Molecular Ecology of Gastrointestinal Ecosystems , 1997 .
[30] M. Morrison,et al. Do ruminal bacteria exchange genetic material? , 1996, Journal of dairy science.
[31] C. Martin,et al. Isolation and characteristics of the protozoal and bacterial fractions from bovine ruminal contents. , 1994, Journal of animal science.
[32] B. Johansson,et al. Modifications of human and viral deoxyribonucleic acid by formaldehyde fixation. , 1994, Laboratory investigation; a journal of technical methods and pathology.
[33] G. Broderick,et al. Markers for quantifying microbial protein synthesis in the rumen. , 1992, Journal of dairy science.
[34] G. Coleman,et al. The Rumen Protozoa , 1992, Brock/Springer Series in Contemporary Bioscience.
[35] R. T. Brandt,et al. Dynamics of ruminal ciliated protozoa in feedlot cattle , 1990, Applied and environmental microbiology.
[36] B. A. Dehority,et al. Factors Affecting the Migration and Sequestration of Rumen Protozoa in the Family Isotrichidae , 1989 .
[37] G. Coleman. The cellulase content of 15 species of entodiniomorphid protozoa, mixed bacteria and plant debris isolated from the ovine rumen , 1985, The Journal of Agricultural Science.
[38] B. A. Dehority. Evaluation of subsampling and fixation procedures used for counting rumen protozoa , 1984, Applied and environmental microbiology.
[39] H Shindo,et al. Nucleic Acids , 1932, Nature.