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Titlebook: Biodegradative Bacteria; How Bacteria Degrade Hideaki Nojiri,Masataka Tsuda,Yoichi Kamagata Book 2014 Springer Japan 2014 Biodegradation.Bi

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发表于 2025-3-21 19:16:44 | 显示全部楼层 |阅读模式
期刊全称Biodegradative Bacteria
期刊简称How Bacteria Degrade
影响因子2023Hideaki Nojiri,Masataka Tsuda,Yoichi Kamagata
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发行地址Presents recent landmarks in biodegradation researches.Covers genetics, genomics, enzymology, and ecology of biodegradative bacteria.Discusses biodegradative bacterial research from single cell to con
图书封面Titlebook: Biodegradative Bacteria; How Bacteria Degrade Hideaki Nojiri,Masataka Tsuda,Yoichi Kamagata Book 2014 Springer Japan 2014 Biodegradation.Bi
影响因子.Biodegradative Bacteria. highlights the novel nature of bacterial cell functions in the field of biodegradation by putting them into three parts: (1) Genetic and genomic systems, (2) Degradative enzyme systems, and (3) Bacterial behavior in natural environmental systems. The first part of the book includes cell functions as degradative machinery, genome systems for effective degradation, and the evolution of degradative systems by mobile genetic elements. The second part deals with the structure, function, evolution, diversity, and application of degradative and related enzymes. The third part presents cell or genomic behaviors of biodegradative bacteria in natural ecosystems..Bacterial metabolic capacity, which plays an important role in the global material cycle, contributes significantly to the buffering capacity for the huge and unintended release of various chemicals. Recently, however, the prosperity and globalization of material civilization has led not only to severe local contamination by hazardous chemicals, but also to continuous increment of contaminant concentrations worldwide. To solve such urgent global issues, bacterial functions that are involved in biodegradation
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书目名称Biodegradative Bacteria影响因子(影响力)




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David P. Farrington,Donald J. West, and the development of new catabolic properties but also of other properties linked to the survival in anthropogenic (mostly industrial) environments. The insights and knowledge in the genetics and genomics of the β-proteobacteria belonging to the closely related . and . genera, with some focus on the genome of . CH34, will be central.
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,Prüfungsmethoden und -werkzeuge,s among biodegradative bacteria that may be important to understand how organics (e.g., pollutants) are biodegraded in nature. We particularly focus on methanogenic and dechlorinating biodegradation with the expectation that scientists will more direct their studies toward syntrophic association among biodegradative bacteria.
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Adaptation to Xenobiotics and Toxic Compounds by , and , with Special Reference to , CH34 and Mobile, and the development of new catabolic properties but also of other properties linked to the survival in anthropogenic (mostly industrial) environments. The insights and knowledge in the genetics and genomics of the β-proteobacteria belonging to the closely related . and . genera, with some focus on the genome of . CH34, will be central.
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https://doi.org/10.1007/978-4-431-54520-0Biodegradation; Bioremediation; Ecology; Enzyme; Genome
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Kriminalpolitik in der Weimarer Republikerally each strain degrades only a limited set of compounds, suggesting that sphingomonads tend to be specialists for the degradation of extremely recalcitrant compounds. In this chapter, the appearance and evolution of γ-hexachlorocyclohexane (γ-HCH/γ-BHC/lindane)-degrading bacteria belonging to sp
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