期刊
NATURE MICROBIOLOGY
卷 2, 期 10, 页码 1344-1349出版社
NATURE PUBLISHING GROUP
DOI: 10.1038/s41564-017-0010-9
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资金
- Gordon and Betty Moore Foundation [GBMF3801]
- Australian Research Council [DE160100636]
- Australian Research Council [DE160100636] Funding Source: Australian Research Council
Microbial interactions influence the productivity and biogeochemistry of the ocean, yet they occur in miniscule volumes that cannot be sampled by traditional oceanographic techniques. To investigate the behaviours of marine microorganisms at spatially relevant scales, we engineered an in situ chemotaxis assay (ISCA) based on microfluidic technology. Here, we describe the fabrication, testing and first field results of the ISCA, demonstrating its value in accessing the microbial behaviours that shape marine ecosystems.
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