halophilic$33545$ - определение. Что такое halophilic$33545$
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Что (кто) такое halophilic$33545$ - определение

CLASS OF ARCHAEA
Halobacteria; Halomebacteria; Halophilic bacteria

Haloarchaea         
Haloarchaea (halophilic archaea, halophilic archaebacteria, halobacteria) are a class of the Euryarchaeota,See the NCBI webpage on Halobacteria. Data extracted from the found in water saturated or nearly saturated with salt.
Halophile         
ORGANISMS THAT LIVE IN HIGH SALT CONCENTRATIONS
Halophilia; Halophilism (microbiology); Halophilic; Halophiles; Extreme halophile
The halophiles, named after the Greek word for "salt-loving", are extremophiles that thrive in high salt concentrations. While most halophiles are classified into the domain Archaea, there are also bacterial halophiles and some eukaryotic species, such as the alga Dunaliella salina and fungus Wallemia ichthyophaga.
halophile         
ORGANISMS THAT LIVE IN HIGH SALT CONCENTRATIONS
Halophilia; Halophilism (microbiology); Halophilic; Halophiles; Extreme halophile
['hal?(?)f??l, 'he?l-]
¦ noun Biology an organism that grows in or can tolerate saline conditions.
Derivatives
halophilic adjective

Википедия

Haloarchaea

Haloarchaea (halophilic archaea, halophilic archaebacteria, halobacteria) are a class of the Euryarchaeota, found in water saturated or nearly saturated with salt. Halobacteria are now recognized as archaea rather than bacteria and are one of the largest groups. The name 'halobacteria' was assigned to this group of organisms before the existence of the domain Archaea was realized, and while valid according to taxonomic rules, should be updated. Halophilic archaea are generally referred to as haloarchaea to distinguish them from halophilic bacteria.

These microorganisms are among the halophile organisms, that they require high salt concentrations to grow, with most species requiring more than 2.0M NaCl for growth and survival. They are a distinct evolutionary branch of the Archaea distinguished by the possession of ether-linked lipids and the absence of murein in their cell walls.

Haloarchaea can grow aerobically or anaerobically. Parts of the membranes of haloarchaea are purplish in color, and large blooms of haloarchaea appear reddish, from the pigment bacteriorhodopsin, related to the retinal pigment rhodopsin, which it uses to transform light energy into chemical energy by a process unrelated to chlorophyll-based photosynthesis.

Haloarchaea have a potential to solubilize phosphorus. Phosphorus-solubilizing halophilic archaea may well play a role in P (phosphorus) nutrition to vegetation growing in hypersaline soils. Haloarchaea may also have applications as inoculants for crops growing in hypersaline regions.