The yield and quality of cellular and bacterial DNA extracts from human oral rinse samples are variably affected by the cell lysis methodology.
暂无分享,去创建一个
M. Wei | L. Samaranayake | Mohsen Sohrabi | Li Zhang | Adnan Ahmetagic | R. Nair | David Good | Abu Hasanat Md Zulfiker
[1] J. Parkhill,et al. 16S rRNA gene-based profiling of the human infant gut microbiota is strongly influenced by sample processing and PCR primer choice , 2015, Microbiome.
[2] J. Ramond,et al. Impact of metagenomic DNA extraction procedures on the identifiable endophytic bacterial diversity in Sorghum bicolor (L. Moench). , 2015, Journal of microbiological methods.
[3] Jeffrey L. Curtis,et al. Analysis of the Upper Respiratory Tract Microbiotas as the Source of the Lung and Gastric Microbiotas in Healthy Individuals , 2015, mBio.
[4] M. W. Taylor,et al. Evaluating variation in human gut microbiota profiles due to DNA extraction method and inter-subject differences , 2015, Front. Microbiol..
[5] Xia Zhou,et al. Microbiota in the Throat and Risk Factors for Laryngeal Carcinoma , 2014, Applied and Environmental Microbiology.
[6] Karsten Kristiansen,et al. Choice of bacterial DNA extraction method from fecal material influences community structure as evaluated by metagenomic analysis , 2014, Microbiome.
[7] Adam B. Olshen,et al. Changes in Abundance of Oral Microbiota Associated with Oral Cancer , 2014, PloS one.
[8] H. Drummond,et al. The Impact of Different DNA Extraction Kits and Laboratories upon the Assessment of Human Gut Microbiota Composition by 16S rRNA Gene Sequencing , 2014, PloS one.
[9] Jie Zhang,et al. Pyrosequencing Analysis of Oral Microbiota Shifting in Various Caries States in Childhood , 2014, Microbial Ecology.
[10] Shi Huang,et al. Changes of saliva microbiota in nasopharyngeal carcinoma patients under chemoradiation therapy. , 2014, Archives of oral biology.
[11] G. Weinstock,et al. Comparison of Whole and Acellular Bronchoalveolar Lavage to Oral Wash Microbiomes. Should Acellular Bronchoalveolar Lavage Be the Standard , 2014 .
[12] R. Hayes,et al. Comparison of DNA extraction methods for human oral microbiome research. , 2014 .
[13] B. Hong,et al. Influence of DNA extraction on oral microbial profiles obtained via 16S rRNA gene sequencing , 2014, Journal of oral microbiology.
[14] Yan Wang,et al. Antiviral Activity of (+)-Rutamarin against Kaposi's Sarcoma-Associated Herpesvirus by Inhibition of the Catalytic Activity of Human Topoisomerase II , 2013, Antimicrobial Agents and Chemotherapy.
[15] Hong-Wei Zhou,et al. Comparison of direct boiling method with commercial kits for extracting fecal microbiome DNA by Illumina sequencing of 16S rRNA tags. , 2013, Journal of microbiological methods.
[16] K. Lloyd,et al. Meta-Analysis of Quantification Methods Shows that Archaea and Bacteria Have Similar Abundances in the Subseafloor , 2013, Applied and Environmental Microbiology.
[17] Peter H. Janssen,et al. Effect of DNA Extraction Methods and Sampling Techniques on the Apparent Structure of Cow and Sheep Rumen Microbial Communities , 2013, PloS one.
[18] Taeko Dohi,et al. Dysbiosis of Salivary Microbiota in Inflammatory Bowel Disease and Its Association With Oral Immunological Biomarkers , 2013, DNA research : an international journal for rapid publication of reports on genes and genomes.
[19] Heather J. Zar,et al. A comparison of the efficiency of five different commercial DNA extraction kits for extraction of DNA from faecal samples , 2013, Journal of microbiological methods.
[20] P. François,et al. Comparison of DNA Extraction Methods in Analysis of Salivary Bacterial Communities , 2013, PloS one.
[21] Nathan D. Olson,et al. DNA extract characterization process for microbial detection methods development and validation , 2012, BMC Research Notes.
[22] Levi Waldron,et al. Composition of the adult digestive tract bacterial microbiome based on seven mouth surfaces, tonsils, throat and stool samples , 2012, Genome Biology.
[23] Joshua N. Daly,et al. Comparison of DNA Extraction Methods for Microbial Community Profiling with an Application to Pediatric Bronchoalveolar Lavage Samples , 2012, PloS one.
[24] J. Ravel,et al. Evaluation of Methods for the Extraction and Purification of DNA from the Human Microbiome , 2012, PloS one.
[25] M. Saarela,et al. The currently used commercial DNA-extraction methods give different results of clostridial and actinobacterial populations derived from human fecal samples. , 2012, FEMS microbiology ecology.
[26] Chun Xing Li,et al. Preliminary characterization of the oral microbiota of Chinese adults with and without gingivitis , 2011, BMC oral health.
[27] G. Andersen,et al. Evaluation of Methods for the Extraction of DNA from Drinking Water Distribution System Biofilms , 2011, Microbes and environments.
[28] M. Hattori,et al. Assessment and Improvement of Methods for Microbial DNA Preparation from Fecal Samples , 2011 .
[29] J. Burgess,et al. Improvement of phylum- and class-specific primers for real-time PCR quantification of bacterial taxa. , 2011, Journal of microbiological methods.
[30] R. Hayes,et al. Oral Microbiome Profiles: 16S rRNA Pyrosequencing and Microarray Assay Comparison , 2011, PloS one.
[31] C. Cerniglia,et al. In Vitro Culture Conditions for Maintaining a Complex Population of Human Gastrointestinal Tract Microbiota , 2011, Journal of biomedicine & biotechnology.
[32] Patrick M. Gillevet,et al. Characterization of the Oral Fungal Microbiome (Mycobiome) in Healthy Individuals , 2010, PLoS pathogens.
[33] D. Mackey,et al. Quality of DNA Extracted from Mouthwashes , 2009, PloS one.
[34] V. Beneš,et al. The MIQE guidelines: minimum information for publication of quantitative real-time PCR experiments. , 2009, Clinical chemistry.
[35] V. Mai,et al. Recent advances and remaining gaps in our knowledge of associations between gut microbiota and human health. , 2009, World journal of gastroenterology.
[36] U. Sagaram,et al. In planta distribution of 'Candidatus Liberibacter asiaticus' as revealed by polymerase chain reaction (PCR) and real-time PCR. , 2008, Phytopathology.
[37] Y. Hara-Kudo,et al. Rapid detection of enterotoxigenic Staphylococcus aureus harbouring genes for four classical enterotoxins, SEA, SEB, SEC and SED, by loop‐mediated isothermal amplification assay , 2007, Letters in applied microbiology.
[38] A. Weeraratna,et al. Interleukin-1 alpha mediates the growth proliferative effects of transforming growth factor-beta in p21 null MCF-10A human mammary epithelial cells , 2006, Oncogene.
[39] M. Pop,et al. Metagenomic Analysis of the Human Distal Gut Microbiome , 2006, Science.
[40] C. J. Fu,et al. Comparison of agar plate and real‐time PCR on enumeration of Lactobacillus, Clostridium perfringens and total anaerobic bacteria in dog faeces , 2006, Letters in applied microbiology.
[41] I. Badiola,et al. Quantification of total bacteria, enterobacteria and lactobacilli populations in pig digesta by real-time PCR. , 2006, Veterinary microbiology.
[42] T. Ezaki,et al. Lytic enzyme, labiase for a broad range of Gram-positive bacteria and its application to analyze functional DNA/RNA. , 2005, Journal of microbiological methods.
[43] W. Vollmer,et al. Why are pathogenic staphylococci so lysozyme resistant? The peptidoglycan O‐acetyltransferase OatA is the major determinant for lysozyme resistance of Staphylococcus aureus , 2004, Molecular microbiology.
[44] Tania Nolan,et al. Pitfalls of quantitative real-time reverse-transcription polymerase chain reaction. , 2004, Journal of biomolecular techniques : JBT.
[45] Sébastien Flavier,et al. Establishment of a Real-Time PCR-Based Approach for Accurate Quantification of Bacterial RNA Targets in Water, Using Salmonella as a Model Organism , 2004, Applied and Environmental Microbiology.
[46] A. Salmi,et al. Low copy number detection of herpes simplex virus type 1 mRNA and mouse Th1 type cytokine mRNAs by Light Cycler quantitative real-time PCR. , 2003, Journal of virological methods.
[47] E. Topp,et al. Evaluation of QIAamp DNA Stool Mini Kit for ecological studies of gut microbiota. , 2003, Journal of microbiological methods.
[48] A. Alves,et al. Evaluation of methods for molecular typing and identification of members of the genus Brevibacterium and other related species. , 2002, FEMS microbiology letters.
[49] A. Bird,et al. A comparison of five methods for extraction of bacterial DNA from human faecal samples. , 2002, Journal of microbiological methods.
[50] R. Borrow,et al. Contamination and Sensitivity Issues with a Real-Time Universal 16S rRNA PCR , 2000, Journal of Clinical Microbiology.
[51] U. Göbel,et al. Determination of microbial diversity in environmental samples: pitfalls of PCR-based rRNA analysis. , 1997, FEMS microbiology reviews.
[52] W. Liesack,et al. Potential risks of gene amplification by PCR as determined by 16S rDNA analysis of a mixed-culture of strict barophilic bacteria , 1991, Microbial Ecology.
[53] J. Freney,et al. Achromopeptidase for rapid lysis of oral anaerobic gram-positive rods. , 1988, Oral microbiology and immunology.
[54] L. Samaranayake,et al. A comparison of oral rinse and imprint sampling techniques for the detection of yeast, coliform and Staphylococcus aureus carriage in the oral cavity. , 1986, Journal of oral pathology.
[55] T. Ezaki,et al. Achromopeptidase for lysis of anaerobic gram-positive cocci , 1982, Journal of clinical microbiology.
[56] S. Horinouchi,et al. A New Isolation Method of Plasmid Deoxyribonucleic Acid from Staphylococcus aureus Using a Lytic Enzyme of Achromobacter lyticus , 1977 .
[57] P. Gruss,et al. Repetitive primate DNA containing the recognition sequences for two restriction endonucleases which generate cohesive ends , 1975, FEBS letters.
[58] C. Laczny,et al. This Provisional PDF corresponds to the article as it appeared upon acceptance. Fully formatted PDF and full text (HTML) versions will be made available soon. VizBin - an application for reference-independent visualization and human- augmented binning of metagenomic data , 2015 .
[59] M. Hattori,et al. An Improved DNA Isolation Method for Metagenomic Analysis of the Microbial Flora of the Human Intestine , 2007 .