home.social

#hypotaurine — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #hypotaurine, aggregated by home.social.

  1. How brachyuran #crabs survive in highly acidic areas near shallow-water #HydrothermalVents phys.org/news/2023-01-brachyur

    Cellular mechanisms underlying extraordinary sulfide tolerance in a #crustacean #holobiont from hydrothermal vents royalsocietypublishing.org/doi

    The crabs have unique gills able to oxidize the #sulfide to #thiosulfate and to bind it to #hypotaurine, generating #thiotaurine. #Bacteria living in the gills absorb the thiotaurine—they use it as an energy source and make it even less #toxic.

  2. How brachyuran #crabs survive in highly acidic areas near shallow-water #HydrothermalVents phys.org/news/2023-01-brachyur

    Cellular mechanisms underlying extraordinary sulfide tolerance in a #crustacean #holobiont from hydrothermal vents royalsocietypublishing.org/doi

    The crabs have unique gills able to oxidize the #sulfide to #thiosulfate and to bind it to #hypotaurine, generating #thiotaurine. #Bacteria living in the gills absorb the thiotaurine—they use it as an energy source and make it even less #toxic.

  3. How brachyuran #crabs survive in highly acidic areas near shallow-water #HydrothermalVents phys.org/news/2023-01-brachyur

    Cellular mechanisms underlying extraordinary sulfide tolerance in a #crustacean #holobiont from hydrothermal vents royalsocietypublishing.org/doi

    The crabs have unique gills able to oxidize the #sulfide to #thiosulfate and to bind it to #hypotaurine, generating #thiotaurine. #Bacteria living in the gills absorb the thiotaurine—they use it as an energy source and make it even less #toxic.

  4. How brachyuran #crabs survive in highly acidic areas near shallow-water #HydrothermalVents phys.org/news/2023-01-brachyur

    Cellular mechanisms underlying extraordinary sulfide tolerance in a #crustacean #holobiont from hydrothermal vents royalsocietypublishing.org/doi

    The crabs have unique gills able to oxidize the #sulfide to #thiosulfate and to bind it to #hypotaurine, generating #thiotaurine. #Bacteria living in the gills absorb the thiotaurine—they use it as an energy source and make it even less #toxic.