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Titlebook: Microbial Communities Utilizing Hydrocarbons and Lipids: Members, Metagenomics and Ecophysiology; Terry J. McGenity Reference work 2019 Sp

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Impact of Petroleum Contamination on Microbial Mats,ted after oil spills and have the capacity to grow on the spilled oil. Their crude oil degradation capacity is now well established in laboratory studies, demonstrating efficient degradation of model hydrocarbon compounds. However, their in situ degradation capacities are more controversial. In many
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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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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-Contaminated Desert Soils,ironmental conditions such as extreme temperatures, lack of water, nutrient deficiency, and the persistence of high concentrations of hydrocarbon compounds in soils. Over the past three decades, more attention has been directed to the study of oil-degrading microbial communities in oil-polluted dese
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Surface and Subsurface Coal Environments: From Environmental Formation and Chemistry to Microbial Cal/material processing. The mining and recovery of these resources have tremendous economic and environmental impacts in coal-rich nations. Coal-associated habitats (e.g., coalbeds, coal mines, and spoil heaps) are highly complex ecosystems that support a wide array of microbial life and biogeochemi
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