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Titlebook: Microbial Communities Utilizing Hydrocarbons and Lipids: Members, Metagenomics and Ecophysiology; Terry J. McGenity Living reference work

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Methanotrophy in Acidic Soils, Including Northern Peatlands,otrophic communities in acidic environments have been examined using cultivation-based physiological analyses as well as cultivation-independent molecular approaches, including omic-technologies. Most investigations have focused on moderately acidophilic, aerobic methanotrophs belonging to the phylu
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Microbial Communities in Hydrocarbon-Polluted Harbors and Marinas,ophicated, variable, and complex environments where pollution is chronic and multifactorial (hydrocarbons, heavy metals, biocides, etc.). These environments sustain highly diverse communities, different in composition from those in surrounding areas. Known hydrocarbon degrading bacteria are in low p
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Microbial Communities Responding to Deep-Sea Hydrocarbon Spills, occur in a different setting than surface oil spills, and the organisms that respond must be adapted to this low-temperature, high-pressure environment. The hydrocarbon composition can also be quite different than at the sea surface, with high concentrations of dissolved hydrocarbons, including nat
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Microbial Ecology of Naphthenic Acid (NA) Degradation,o many organisms, and this toxicity is largely attributed to the presence of naphthenic acids (NAs). NAs are complex mixtures of organic compounds, including acyclic and cyclic, saturated and aromatic carboxylic acids, which traditionally fit the general formula C.H.O.. Di-, tri-, tetra-, and pentac
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Phototroph-Heterotroph Oil-Degrading Partnerships,s in oil-polluted sites suggested a possible contribution to hydrocarbon degradation; however, the exact role and interactions between phototrophs and heterotrophs in the degradation processes have only been recently evaluated. Experiments with axenic and non-axenic cultures of phototrophs suggested
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