期刊
SOIL ECOLOGY LETTERS
卷 4, 期 3, 页码 213-223出版社
SPRINGERNATURE
DOI: 10.1007/s42832-021-0073-7
关键词
Microfluidics; Soil bacteria; Biofilms; Chemotaxis; Quorum sensing; Horizontal gene transfer
资金
- National Natural Science Foundation of China [41877029, 41961130383]
- Royal Society-Newton Advanced Fellowship [NAFR1191017]
- Wuhan Science and Technology Bureau [2019020701011469]
Microfluidics offers advantages in microbiological studies by accurately replicating soil micro- and nano-scale structures to simulate bacterial habitats, allowing researchers to understand spatial distribution and behaviors, and explore interactions in the soil microbiome.
Microfluidics confers unique advantages in microbiological studies as these devices can accurately replicate the micro- and even nano-scale structures of soil to simulate the habitats of bacteria. It not only helps us understand the spatial distribution of bacterial communities (such as biofilms), but also provides mechanistic insights into microbial behaviors including chemotaxis and horizontal gene transfer (HGT). Microfluidics provides a feasible means for real-time, in situ studies and enables indepth exploration of the mechanisms of interactions in the soil microbiome. This review aims to introduce the basic principles of microfluidic technology and summarize the recent progress in microfluidic devices to study bacterial spatial distribution and functions, as well as biological processes, such bacterial chemotaxis, biofilm streamers (BS), quorum sensing (QS), and HGT. The challenges in and future development of microfluidics for soil microbiological studies are also discussed. (C) Higher Education Press 2021
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