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Titlebook: Consequences of Microbial Interactions with Hydrocarbons, Oils, and Lipids: Biodegradation and Biore; Robert J. Steffan Reference work 201

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Oil Biodegradation in Deep Marine Basins,es may thrive. These distinct environmental parameters may act to constrain the extent of hydrocarbon degradation in these basins. Another potential constraint on hydrocarbon degradation is the extent of natural hydrocarbon seeps in the area. Though many basins have similar if not 16S rRNA identical
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Plant-Endophyte Partnerships to Assist Petroleum Hydrocarbon Remediation,taminated soils. In this chapter, we discuss on a number of beneficial effects of plant-endophyte partnerships, and highlight how new insights from genomics and metagenomics can assist soil remediation to enhance plant growth and ecosystem services of reclamated soil.
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Natural Attenuation of Hydrocarbon Compounds in Groundwater,sessments and, when combined with hydrochemical analyses, offer new possibilities to characterize contaminant sources, biodegradation pathways, redox processes, element cycling, the relative contribution of different attenuation processes, and quantify biodegradation of hydrocarbons in groundwater.
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Microbiology of Oil- and Natural Gas-Producing Shale Formations: An Overview,, very little is known about their origins in these formations. There are several plausible sources of microorganisms in shale, including the formation itself and the fluids that are used during the drilling and hydraulic fracturing processes. This chapter contains an overview of what is currently k
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Genomic Responses of , to Aromatic Hydrocarbons,m and as a detrimental hassle to keep at bay becomes necessary. A second issue is the metabolic jam caused by the coincident presence in the same cells of competing pathways for .-cleavage and .-cleavage of the intermediate catechols that degradation of aromatics must necessarily go through. Availab
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