Performance evaluation of a new custom, multi-component DNA isolation method optimized for use in shotgun metagenomic sequencing-based aerosol microbiome research
暂无分享,去创建一个
Kari Oline Bøifot | Jostein Gohli | Line Victoria Moen | Marius Dybwad | M. Dybwad | J. Gohli | K. O. Bøifot | L. V. Moen
[1] K. Venkateswaran,et al. Microbial burden and diversity of commercial airline cabin air during short and long durations of travel , 2008, The ISME Journal.
[2] S. Mukhi,et al. Bioaerosol and surface sampling for the surveillance of influenza A virus in swine. , 2019, Transboundary and emerging diseases.
[3] M. Millar,et al. Comparison of DNA extraction methods for Aspergillus fumigatus using real-time PCR. , 2006, Journal of medical microbiology.
[4] G. Gray,et al. Bioaerosol Sampling in Clinical Settings: A Promising, Noninvasive Approach for Detecting Respiratory Viruses , 2016, Open forum infectious diseases.
[5] Luca Mantecchini,et al. Indoor Air Quality Real-Time Monitoring in Airport Terminal Areas: An Opportunity for Sustainable Management of Micro-Climatic Parameters , 2018, Sensors.
[6] E. Wagar. Bioterrorism and the Role of the Clinical Microbiology Laboratory , 2015, Clinical Microbiology Reviews.
[7] T. Gojobori,et al. Challenges and Opportunities of Airborne Metagenomics , 2015, Genome biology and evolution.
[8] E. Casamayor,et al. A long-term survey unveils strong seasonal patterns in the airborne microbiome coupled to general and regional atmospheric circulations , 2018, Proceedings of the National Academy of Sciences.
[9] Noah Alexander,et al. Geospatial Resolution of Human and Bacterial Diversity with City-Scale Metagenomics , 2015, Cell systems.
[10] G. Gray,et al. Aerosol Sampling in a Hospital Emergency Room Setting: A Complementary Surveillance Method for the Detection of Respiratory Viruses , 2018, Front. Public Health.
[11] R. Colwell,et al. Metagenome sequencing-based strain-level and functional characterization of supragingival microbiome associated with dental caries in children , 2018, Journal of oral microbiology.
[12] Graham E. Lau,et al. Low-Temperature Sulfidic-Ice Microbial Communities, Borup Fiord Pass, Canadian High Arctic , 2018, Front. Microbiol..
[13] Philip Hugenholtz,et al. A renaissance for the pioneering 16S rRNA gene. , 2008, Current opinion in microbiology.
[14] Shibu Yooseph,et al. A Metagenomic Framework for the Study of Airborne Microbial Communities , 2013, PloS one.
[15] K. Schleifer,et al. Phylogenetic identification and in situ detection of individual microbial cells without cultivation. , 1995, Microbiological reviews.
[16] W Eduard,et al. Methods for quantitative assessment of airborne levels of noninfectious microorganisms in highly contaminated work environments. , 1998, American Industrial Hygiene Association journal.
[17] Rob Knight,et al. Contamination in Low Microbial Biomass Microbiome Studies: Issues and Recommendations. , 2019, Trends in microbiology.
[18] Rachelle M. Jensen,et al. The ocean sampling day consortium , 2015, GigaScience.
[19] Maosheng Yao,et al. Bioaerosol: A bridge and opportunity for many scientific research fields , 2018 .
[20] Katherine H. Huang,et al. A framework for human microbiome research , 2012, Nature.
[21] Alexa B. R. McIntyre,et al. Genomic Methods and Microbiological Technologies for Profiling Novel and Extreme Environments for the Extreme Microbiome Project (XMP). , 2017, Journal of biomolecular techniques : JBT.
[22] Eddy J. Bautista,et al. Characterization of the bacterial and fungal microbiome in indoor dust and outdoor air samples: a pilot study. , 2016, Environmental science. Processes & impacts.
[23] H. Wösten,et al. Recovery of Fungal Cells from Air Samples: a Tale of Loss and Gain , 2019, Applied and Environmental Microbiology.
[24] Maliha Aziz,et al. BactQuant: An enhanced broad-coverage bacterial quantitative real-time PCR assay , 2012, BMC Microbiology.
[25] Jingkun Jiang,et al. Optimized DNA extraction and metagenomic sequencing of airborne microbial communities , 2015, Nature Protocols.
[26] J. Ravel,et al. Evaluation of Methods for the Extraction and Purification of DNA from the Human Microbiome , 2012, PloS one.
[27] E. Madsen,et al. Evaluation and Optimization of DNA Extraction and Purification Procedures for Soil and Sediment Samples , 1999, Applied and Environmental Microbiology.
[28] Niklas Krumm,et al. One Codex: A Sensitive and Accurate Data Platform for Genomic Microbial Identification , 2015, bioRxiv.
[29] E. Casamayor,et al. Bioaerosols in the Barcelona subway system , 2017, Indoor air.
[30] M. Veillette,et al. Bioaerosol sampling and detection methods based on molecular approaches: No pain no gain. , 2017, The Science of the total environment.
[31] Rob Knight,et al. Earth Microbiome Project and Global Systems Biology , 2018, mSystems.
[32] E. Zaikova,et al. Antarctic Relic Microbial Mat Community Revealed by Metagenomics and Metatranscriptomics , 2019, Front. Ecol. Evol..
[33] M. Dybwad,et al. Comparative Testing and Evaluation of Nine Different Air Samplers: End-to-End Sampling Efficiencies as Specific Performance Measurements for Bioaerosol Applications , 2014 .
[34] A. Nevalainen,et al. Personal exposures and microenvironmental concentrations of particles and bioaerosols. , 2002, Journal of environmental monitoring : JEM.
[35] Gary L Andersen,et al. Development of a high‐volume aerosol collection system for the identification of air‐borne micro‐organisms , 2002, Letters in applied microbiology.
[36] Andy Liaw,et al. Classification and Regression by randomForest , 2007 .
[37] O. Magand,et al. Methods to Investigate the Global Atmospheric Microbiome , 2019, Front. Microbiol..
[38] Sharon L. Norris,et al. The Airplane Cabin Microbiome , 2018, Microbial Ecology.
[39] H. Buckley,et al. Methods for the extraction, storage, amplification and sequencing of DNA from environmental samples , 2018 .
[40] Alexander S. Honeyman,et al. Regional fresh snowfall microbiology and chemistry are driven by geography in storm-tracked events, Colorado, USA , 2018, PeerJ.
[41] A. Bressan,et al. Ultrastructural detection of an unusual intranuclear bacterium in Pentastiridius leporinus (Hemiptera: Cixiidae). , 2008, Journal of invertebrate pathology.
[42] Alexander F. Auch,et al. MEGAN analysis of metagenomic data. , 2007, Genome research.
[43] V. Chang,et al. Protocol Improvements for Low Concentration DNA-Based Bioaerosol Sampling and Analysis , 2015, PloS one.
[44] Patrick K. H. Lee,et al. Indoor-Air Microbiome in an Urban Subway Network: Diversity and Dynamics , 2014, Applied and Environmental Microbiology.
[45] T. Hackl,et al. Marine microbial metagenomes sampled across space and time , 2018, Scientific Data.
[46] B. Hong,et al. Influence of DNA extraction on oral microbial profiles obtained via 16S rRNA gene sequencing , 2014, Journal of oral microbiology.
[47] G. Tang,et al. Indian Hedgehog: A Mechanotransduction Mediator in Condylar Cartilage , 2004, Journal of dental research.
[48] Paula King,et al. Longitudinal Metagenomic Analysis of Hospital Air Identifies Clinically Relevant Microbes , 2016, PloS one.
[49] Susan Holmes,et al. phyloseq: An R Package for Reproducible Interactive Analysis and Graphics of Microbiome Census Data , 2013, PloS one.
[50] Wenjun Jiang,et al. Inhalable Microorganisms in Beijing’s PM2.5 and PM10 Pollutants during a Severe Smog Event , 2014, Environmental science & technology.
[51] Katherine H. Huang,et al. Structure, Function and Diversity of the Healthy Human Microbiome , 2012, Nature.