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Contribution of mechanosensitive channels to osmoadaptation and ectoine excretion in Halomonas elongata

Jasmina Vandrich; Friedhelm Pfeiffer; Gabriela Alfaro-Espinoza; Hans Jörg Kunte
Extremophiles · Vol. 24, Issue 3 · pp. 421-432 · 2020

Abstract

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. However, the efflux mechanism of ectoine in H. elongata is not yet understood. H. elongata possesses four genes encoding mechanosensitive channels all of which belong to the small conductance type (MscS). Analysis by qRT-PCR revealed a reduction in transcription of the mscS genes with increasing salinity. The response of H. elongata to hypo- and hyperosmotic shock never resulted in up-regulation but rather in down-regulation of mscS transcription. Deletion of all four mscS genes created a mutant that was unable to cope with hypoosmotic shock. However, the knockout mutant grew significantly faster than the wildtype at high salinity of 2 M NaCl, and most importantly, still exported 80% of the ectoine compared to the wildtype. We thus conclude that a yet unknown system, which is independent of mechanosensitive channels, is the major export route for ectoine in H. elongata .

Bibliographic Information

JournalExtremophiles
PublisherSpringer
Publication Date2020-05-01
Publication Year2020
Volume24
Issue3
Pages421-432
Document TypeJournal Article
Print ISSN1431-0651
eISSN1433-4909
DOI10.1007/s00792-020-01168-y

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NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://www.springer.com/journal/792
Publisher PageOpen Publisher Page
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