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Extremophiles · 2020 · Vol. 24 · Issue 3 · Springer
For osmoadaptation the halophilic bacterium Halomonas elongata synthesizes as its main compatible solute the aspartate derivative ectoine. H. elongata does not rely entirely on synthesis but can accumulate ectoine by uptake from the surrounding environment with the help of the osmoregulated transporter TeaABC. Disruption of the TeaABC-mediated ectoine uptake creates a strain that is constantly losing ectoine to the medium. How...
Environmental Microbiology · 2016 · Vol. 18 · Issue 2 · Wiley
Summary Live microbes have been isolated from rock salt up to P ermian age. Only obligatory cellular functions can be performed in halite‐buried cells. Consequently, their genomic sequences are likely to remain virtually unchanged. However, the available sequence information from these organisms is scarce and consists of mainly ribosomal 16S sequences. Here, live archaea were isolated from early C retaceous (∼123 million years...
Environmental Microbiology · 2013 · Vol. 15 · Issue 5 · Wiley
Summary Salt acclimation in moderately halophilic bacteria is the result of action of a grand interplay orchestrated by signals perceived from the environment. To elucidate the cellular players involved in sensing and responding to changing salinities we have determined the genome sequence of Halobacillus halophilus , a Gram‐positive moderate halophilic bacterium that has a strict requirement for the anion chloride. Halobacill...
Environmental Microbiology · 2011 · Vol. 13 · Issue 8 · Wiley
Summary The halophilic γ‐proteobacterium Halomonas elongata DSM 2581 T thrives at high salinity by synthesizing and accumulating the compatible solute ectoine. Ectoine levels are highly regulated according to external salt levels but the overall picture of its metabolism and control is not well understood. Apart from its critical role in cell adaptation to halophilic environments, ectoine can be used as a stabilizer for enzyme...