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- W3084183781 abstract "Abstract Archaea have evolved to survive in some of the most extreme environments on earth. Life in extreme, nutrient-poor conditions gives the opportunity to probe fundamental energy limitations on movement and response to stimuli, two essential markers of living systems. Here we use three-dimensional holographic microscopy and computer simulations to reveal that halophilic archaea achieve chemotaxis with power requirements one hundred-fold lower than common eubacterial model systems. Their swimming direction is stabilised by their flagella (archaella), enhancing directional persistence in a manner similar to that displayed by eubacteria, albeit with a different motility apparatus. Our experiments and simulations reveal that the cells are capable of slow but deterministic chemotaxis up a chemical gradient, in a biased random walk at the thermodynamic limit." @default.
- W3084183781 created "2020-09-14" @default.
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- W3084183781 date "2020-09-08" @default.
- W3084183781 modified "2023-10-17" @default.
- W3084183781 title "Haloarchaea swim slowly for optimal chemotactic efficiency in low nutrient environments" @default.
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- W3084183781 doi "https://doi.org/10.1038/s41467-020-18253-7" @default.
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