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Titlebook: Microbiology of Extreme Soils; Patrice Dion,Chandra Shekhar Nautiyal Book 2008 Springer-Verlag Berlin Heidelberg 2008 Bioremediation.Deser

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The Microbiological Promises of Extreme Soilse soils. There may be at least two reasons for this. First, any soil may be considered as extreme for the colonizing microbes constantly facing starvation, desiccation, predation, and other attacks. In this sense, the notion of “extreme soil” would appear pleonastic. A second reason for the uncommon
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Microbial Diversity, Life Strategies, and Adaptation to Life in Extreme Soilsmmalian life appear as normal, and conditions deviating from these are considered as extreme. However, what is extreme and what is normal for microbes remains debatable, and the concept “extreme” as we use it may not necessarily be appropriate for micro-organisms (Gorbushina and Krumbein 1999). Micr
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Microbial Communities and Processes in Arctic Permafrost Environments the global carbon pool is stored in ecosystems of the northern latitudes. Global warming will have important implications for the functional diversity of microbial communities in these systems. It is likely that temperature increases at high latitudes will stimulate microbial activity and carbon de
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Aerobic, Endospore-Forming Bacteria from Antarctic Geothermal Soils presence of oxygen remains the defining feature. They are also expected to possess Gram-positive cell wall structures (but staining reactions, even in young cultures, may be Gram-variable or frankly Gram-negative), and may be aerobic or facultatively anaerobic. These characters have formed part of
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Peatland Microbiologysurface. Peatlands are important wetland areas maintaining supplies of clean water to rivers and acting as a carbon sink. Peatlands may contain 3–3.5 times the amount of carbon stored in tropical rain forests and act as an ancient habitat containing many rare and threatened species. As such, they ar
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