We have developed a microfluidic device that allows the isolation and genome amplification of individual microbial cells, thereby enabling organism-level genomic analysis of complex microbial ecosystems without the need for culture. This device was used to perform a directed survey of the human subgingival crevice and to isolate bacteria having rod-like morphology. Several isolated microbes had a 16S rRNA sequence that placed them in candidate phylum TM7, which has no cultivated or sequenced members. Genome amplification from individual TM7 cells allowed us to sequence and assemble >1,000 genes, providing insight into the physiology of members of this phylum. This approach enables single-cell genetic analysis of any uncultivated minority...
© The Author(s), 2013. This article is distributed under the terms of the Creative Commons Attribut...
Currently available experimental tools such as microarrays and qRT-PCR for studying the genomes and ...
Isolating microbes carrying genes of interest from environmental samples is important for applicatio...
We have developed a microfluidic device that allows the isolation and genome amplification of indivi...
We have developed a microfluidic device that allows the isolation and genome amplification of indivi...
As of today, the majority of environmental microorganisms remain uncultured. They are therefore refe...
Single-cell sequencing is a powerful technology that provides the capability of analyzing a single c...
Genome sequencing enhances our understanding of the biological world by providing blueprints for the...
Recent progress in environmental microbiology has revealed vast populations of microbes in any given...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2018.Ca...
Single-cell genomics allows bypassing the culturing step and to directly access environmental microb...
Recent progress in environmental microbiology has revealed vast populations of microbes in any given...
This paper describes a microfluidics-based workflow for genetically targeted isolation and cultivati...
Microbial single-cell genomics represents an innovative approach to study microbial diversity and sy...
Bremges A. Assembling the microbial dark matter. Bielefeld: Universität Bielefeld; 2016.The vast maj...
© The Author(s), 2013. This article is distributed under the terms of the Creative Commons Attribut...
Currently available experimental tools such as microarrays and qRT-PCR for studying the genomes and ...
Isolating microbes carrying genes of interest from environmental samples is important for applicatio...
We have developed a microfluidic device that allows the isolation and genome amplification of indivi...
We have developed a microfluidic device that allows the isolation and genome amplification of indivi...
As of today, the majority of environmental microorganisms remain uncultured. They are therefore refe...
Single-cell sequencing is a powerful technology that provides the capability of analyzing a single c...
Genome sequencing enhances our understanding of the biological world by providing blueprints for the...
Recent progress in environmental microbiology has revealed vast populations of microbes in any given...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2018.Ca...
Single-cell genomics allows bypassing the culturing step and to directly access environmental microb...
Recent progress in environmental microbiology has revealed vast populations of microbes in any given...
This paper describes a microfluidics-based workflow for genetically targeted isolation and cultivati...
Microbial single-cell genomics represents an innovative approach to study microbial diversity and sy...
Bremges A. Assembling the microbial dark matter. Bielefeld: Universität Bielefeld; 2016.The vast maj...
© The Author(s), 2013. This article is distributed under the terms of the Creative Commons Attribut...
Currently available experimental tools such as microarrays and qRT-PCR for studying the genomes and ...
Isolating microbes carrying genes of interest from environmental samples is important for applicatio...