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Titlebook: Cellular Ecophysiology of Microbe: Hydrocarbon and Lipid Interactions; Tino Krell Living reference work 2020Latest edition

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发表于 2025-3-21 16:52:09 | 显示全部楼层 |阅读模式
书目名称Cellular Ecophysiology of Microbe: Hydrocarbon and Lipid Interactions
编辑Tino Krell
视频video
概述The 2nd ed. of the Handbook is an essential reference to a topic of great current concern and interest Five-volume reference offers exhaustive coverage.The definitive resource of current knowledge on
丛书名称Handbook of Hydrocarbon and Lipid Microbiology
图书封面Titlebook: Cellular Ecophysiology of Microbe: Hydrocarbon and Lipid Interactions;  Tino Krell Living reference work 2020Latest edition
描述"Water is life!" All active cellular systems require water as the medium and solvent of their metabolic activities. Hydrophobic compounds and structures, which tend to exclude water, though providing inter alia excellent sources of energy and a means of biological compartmentalization, present problems of cellular handling, poor bioavailability and, in some cases, toxicity. Microbes both synthesize and exploit a vast range of hydrophobic organics, especially petroleum oil hydrocarbons and industrial pollutants, and the underlying interactions not only have major consequences for the lifestyles of the microbes involved, but also for biogeochemistry, climate change, environmental pollution, human health and a range of biotechnological applications. The aim of this handbook is to be the definitive resource of current knowledge on the diverse and multifaceted aspects of these interactions, the microbial players, and the physiological mechanisms and adaptive strategies characteristic of themicrobial lifestyle that plays out at hydrophobic material: aqueous liquid interfaces.
出版日期Living reference work 2020Latest edition
doihttps://doi.org/10.1007/978-3-319-20796-4
isbn_ebook978-3-319-20796-4
The information of publication is updating

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https://doi.org/10.1007/978-3-322-97738-0ved in a series of cellular processes, some of them vital for mammals. Thus, DNA methylation has a role in the regulation of chromatin structure and promoter activity. It may silence the promoters of imprinted genes showing monoallelic expression as well as the promoters of transposons, and contribu
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,Organisationsveränderung für Mobilisierung,nse of energy production (Fig. 1). During fast growth in glucose or tryptone-based medium, . and several other organisms excrete acetate to regenerate NAD . and to recycle coenzyme A. The acetate acidifies the medium and can repress the production of both native and heterologous proteins. Upon deple
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https://doi.org/10.1007/978-3-322-97757-1ule that leads to changes in protein-protein and protein-nucleic acid interactions. A relevant example for nucleic acid modification is the methylation, while alkylation, lipidation, acetylation, and ubiquitination are frequent hydrophobic modifications of proteins.
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Unternehmensführung & Controlling oil to sink. Accumulation is thought to be by partitioning into the membrane lipid portion of the cell envelope for partial oxidation and trapping into the interior. One consequence of this “vectorial partitioning” is the liberation of partly oxidized hydrocarbon degradation products into the envir
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,Kritische Erfolgsfaktoren und Meßgrößen,ding suggests that the oil fly bacteria have an active efflux pump for aromatic hydrocarbons, due to the constant selective pressure of La Brea’s solvent-rich environment. We suggest that the oil fly bacteria and their genes for solvent tolerance may provide a microbial reservoir for antibiotic resi
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, Isomerase of Unsaturated Fatty Acids: An Immediate Bacterial Adaptive Mechanism to Cope with Emer typical of cytochrome .-type proteins is present in the predicted Cti polypeptide indicating a reaction mechanism that renounces temporary saturation of the double bond. Due to its direct correlation with toxicity, .isomerization is a potential biomarker for recording solvent stress or changes of o
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