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Titlebook: Halophilic Microorganisms; Antonio Ventosa Book 2004 Springer-Verlag Berlin Heidelberg 2004 Evolution.Polysaccharid.archaea.biodiversity.e

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Genetics of Osmoadaptation by Accumulation of Compatible Solutes in the Moderate Halophile ,: Its Pssure within limits necessary for growth and multiplication (Brown 1990). This means that the organism must maintain its cytosolic solute concentration at a level sufficient to generate a positive turgor pressure without inhibiting cell function. Cell turgor is considered to be the driving force for
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Osmoregulated Solute Transport in Halophilic Bacteria,h inorganic ion concentration and the low water potential. Prokaryotes have developed two principal mechanisms to cope with these stress factors and counteract the outflow of cytoplasmic water, namely, the “salt-in-cytoplasm” mechanism and the organic-osmolyte mechanism.
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Understanding Archaeal Protein Translocation: , as a Model System,ed eukaryal and bacterial protein translocation systems, little is known about how proteins cross into and/or across the plasma membrane of Archaea. In Eukarya and Bacteria, protein translocation occurs at membrane sites composed of evolutionarily conserved core proteins acting together with other d
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Gas Vesicle Genes in Halophilic Archaea and Bacteria,nvironment (Walsby 1994). The possession of gas vesicles can be easily determined by phase contrast microscopy of the organisms where they appear as light refractile bodies inside the cells. The gas vesicle envelope consists of two proteins, namely, the small, hydrophobic GvpA protein (7 kDa) arrang
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Genome Sequences of the Head-Tail Haloviruses HF1 and HF2,ction by several different viruses, the diversity of these simple parasites is, by any calculation, simply enormous (for a broad review, see Wommack and Colwell 2000). They are a major driving force in host evolution and are likely to play a significant role in moving genes between host lineages (la
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Reporter Gene Systems for Halophilic Microorganisms,chemical changes in their environment and how cells manage to communicate with each other is indispensable for modern biological research in all living systems. In the post-genomics era the number of identified coding sequences with functions not easy to assay increases exponentially making their st
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