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High-throughput phenotyping of cell-to-cell interactions in gel microdroplet pico-cultures
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High-throughput phenotyping of cell-to-cell interactions in gel microdroplet pico-cultures

Juliette Ohan, Benjamin Pelle, Pulak Nath, J.-H. Huang, Blake Hovde, Momchilo Vuyisich, Armand E.K. DichosaShawn R. Starkenburg
BioTechniques, 卷.66(5), 頁碼.218-224
2019
PMID: 31050307

摘要

Algae Emulsion Encapsulation Flow cytometry High-throughput Microdroplet Microfluidics Picoculture Biotechnology Biochemistry Genetics and Molecular Biology (all)
Microbiomes exert significant influence on our planet's ecology. Elucidating the identities of individual microbes within these communities and how they interact is a vital research imperative. Using traditional plating and culturing methods, it is impractical to assess even a small fraction of the interactions that exist within microbial communities. To address this technology gap, we integrated gel micro-droplet technology with microfluidics to generate millions of microdroplet cultures (MDs) that sequester individual cells for phenotyping MDs, facilitating rapid analysis and viable recovery using flow cytometry. Herein, we describe a validated high-throughput phenotyping pipeline that elucidates cell-to-cell interactions for millions of combinations of microorganisms. Through iterative co-culturing of an algae and a pool of environmentally sourced microbes, we successfully isolated bacteria that improved algal growth.

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https://doi.org/10.2144/btn-2018-0124檢視
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