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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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書目名稱Extremophiles in Deep-Sea Environments
編輯Koki Horikoshi (Director General),Kaoru Tsujii (Te
視頻videohttp://file.papertrans.cn/321/320093/320093.mp4
概述This book presents the microbiology of extremophiles living in the deep sea and describes the isolation, cultivation, and taxonomic identification of microorganisms retrieved from the Mariana Trench,
圖書封面Titlebook: Extremophiles in Deep-Sea Environments;  Koki Horikoshi (Director General),Kaoru Tsujii (Te Book 1999 Springer Japan 1999 biology.microbiol
描述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 the deep sea and describes the isolation, cultivation, and taxonomic identification of microorganisms retrieved from the Mariana Trench, the world‘s deepest point. Also explained are techniques for recovering pressure-loving bacteria, the barophiles (piezophiles), and for whole genome analysis of .Bacillus halodurans. C-125. Physiological analysis of the pressure effect in .Saccharomyces cerevisiae. and .Escherichia coli. is used to answer the question of how deep-sea organisms survive under high hydrostatic pressure. These research results are useful in both basic science and industrial applications. Readers discover a new microbial world in the ocean depths, with state-of-the-science information on extremophiles.
出版日期Book 1999
關(guān)鍵詞biology; microbiology; microorganism; physiology; taxonomy
版次1
doihttps://doi.org/10.1007/978-4-431-67925-7
isbn_softcover978-4-431-68008-6
isbn_ebook978-4-431-67925-7
copyrightSpringer Japan 1999
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Barophiles (Piezophiles)locations (.). In 1949 ZoBell and Johnson started work on the effect of hydrostatic pressure on microbial activities. The term “barophilic” was first used, defined today as optimal growth at pressure higher than 0.1 MPa or by a requirement of increased pressure for growth. Many microorganisms in the
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estion of how deep-sea organisms survive under high hydrostatic pressure. These research results are useful in both basic science and industrial applications. Readers discover a new microbial world in the ocean depths, with state-of-the-science information on extremophiles.978-4-431-68008-6978-4-431-67925-7
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David L. Lovett,Kathryn A. HaringRecent findings of the deep-sea vestimentiferan tubeworms that live on sulfur oxidation gave a Copernican change to the view of life. The worms have a unique strategy of life, wherein they lack digestive organs but harbor chemosynthetic (mainly sulfide oxidizing, or thiotrophic) bacteria in a specialized bag-like tissue, the trophosome (.;.).
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