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Bioprospecting Archaea: Focus on Extreme Halophiles

2016
In 1990, Woese et al. divided the Tree of Life into three separate domains: Eukarya, Bacteria, and Archaea. Archaea were originally perceived as little more than “odd bacteria” restricted to extreme environmental niches, but later discoveries challenged this assumption. Members of this domain populate a variety of unexpected environments (e.g.
Antunes, André   +5 more
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Enzyme diversity in halophilic archaea.

Microbiologia (Madrid, Spain), 1995
The halophilic archaea display a considerable extent of enzyme diversity. The presence or absence of certain enzymatic activities is closely linked with the taxonomic status of the strains investigated. Thus, Halobacterium species such as Hb. salinarium, Hb. halobium, and Hb.
openaire   +1 more source

The Enigma of Square and Triangular Halophilic Archaea

1999
An overview of the prokaryotic world shows that the morphological variety among bacteria is limited, and most prokaroytic microorganisms, whatever their taxonomic position or their physiological properties might be, can be classified in a very limited number of morphological types: rods, cocci, and spirilla.
openaire   +1 more source

BIODEGRADATION OF POLYCYCLİC AROMATIC HYDROCARBONS BY HALOPHİLİC BACTERİA AND HALOPHİLİC ARCHAEA

2016
Polycyclic aromatic hydrocarbons  are widespread in various ecosystems and arepollutants of great concern due to their potential toxicity, mutagenicity andcarcinogenicity. Because of their hydrophobic nature, most PAHs bind toparticulates in soil and sediments, rendering them less available forbiological uptake.
ERDOĞMUŞ, Sevim Feyza   +1 more
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Enzymes of Halophilic Archaea

2005
Toru Mizuki   +4 more
openaire   +1 more source

Halophilic archaea as beacon for exobiology

2019
Abhilash Sundarasami   +2 more
openaire   +1 more source

Taxonomic Study of Extreme Halophilic Archaea Isolated from the “Salar de Atacama”, Chile

Systematic and Applied Microbiology, 2001
Jürgen Weckesser   +2 more
exaly  

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