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Titlebook: Extremophiles in Deep-Sea Environments; Koki Horikoshi (Director General),Kaoru Tsujii (Te Book 1999 Springer Japan 1999 biology.microbiol

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https://doi.org/10.1007/978-94-009-5498-4 extreme thermophiles, a group of thermophiles whose optimum growing temperatures are above 80°C. They are the so called hyperthermophiles, which can grow at temperatures up to the boiling point of water (100°C or 212°F).
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Isolation and Characterization of Microorganisms from Deep-Sea Mude bathypelagic zone (.; .). However, little information is available on bacterial diversity in sediments of the deep-sea floor because most marine biologists have focused on barophilic and psychrophilic inhabitants of the deep-sea environment (.).
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Taxonomy and Biotransformation Activities of Deep-Sea Actinomycetes0 m, the inventory of microorganisms in the deep-sea is very incomplete. Recent surveys of the open oceans, hydrothermal vents, and the deepest ocean floor (.; .; .) have revealed unsuspected diversity and novelty in their microbiota. Our research has focused on bacteria of soft deep-sea sediments.
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Genome Analysis of Facultatively Alkaliphilic , C-125lkaliphilic bacteria containing . strains have been isolated from even deep-sea sediment collected at depths of 1000-10 000 m depth at a frequency of 0.2 x 10. to 2.3 x 10. per colonies g.’ dry sea mud (.).
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cation of microorganisms retrieved from the Mariana Trench, Many organisms in deep-sea environments are extremophiles thriving in extreme conditions: high pressure, high or low temperature, or high concentrations of inorganic compounds. This book presents the microbiology of extremophiles living in
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George Baciu,Wingo Sai-Keung Wong0 m, the inventory of microorganisms in the deep-sea is very incomplete. Recent surveys of the open oceans, hydrothermal vents, and the deepest ocean floor (.; .; .) have revealed unsuspected diversity and novelty in their microbiota. Our research has focused on bacteria of soft deep-sea sediments.
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