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Microbes from mined sites: Harnessing their potential for reclamation of derelict mine sites

机译:来自矿场的微生物:利用其潜力回收废弃矿场

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Derelict mines pose potential risks to environmental health. Several factors such as soil structure, organic matter, and nutrient content are the greatly affected qualities in mined soils. Soil microbial communities are an important element for successful reclamation because of their major role in nutrient cycling, plant establishment, geochemical transformations, and soil formation. Yet, microorganisms generally remain an undervalued asset in mined sites. The microbial diversity in derelict mine sites consists of diverse species belonging to four key phyla: Proteobacteria, Acidobacteria, Firmicutes, and Bacteroidetes. The activity of plant symbiotic microorganisms including root-colonizing rhizobacteria and ectomycorrhizal fungi of existing vegetation in the mined sites is very high since most of these microbes are extremophiles. This review outlines the importance of microorganisms to soil health and the rehabilitation of derelict mines and how microbial activity and diversity can be exploited to better plan the soil rehabilitation. Besides highlighting the major breakthroughs in the application of microorganisms for mined site reclamation, we provide a critical view on plant-microbiome interactions to improve revegetation at the mined sites. Also, the need has been emphasized for deciphering the molecular mechanisms of adaptation and resistance of rhizosphere and non-rhizosphere microbes in abandoned mine sites, understanding their role in remediation, and subsequent harnessing of their potential to pave the way in future rehabilitation strategies for mined sites. (C) 2017 Elsevier Ltd. All rights reserved.
机译:废弃的地雷对环境健康构成潜在风险。土壤结构,有机质和养分含量等几个因素是受开采土壤影响最大的质量。土壤微生物群落是成功进行复垦的重要元素,因为它们在养分循环,植物建立,地球化学转化和土壤形成中起着重要作用。然而,微生物通常在矿区仍被低估。废弃矿区的微生物多样性包括属于四个主要门的多种物种:变形杆菌,酸性细菌,硬毛和拟杆菌。矿区现有植被的植物共生微生物(包括根部定殖的根瘤菌和菌根真菌)的活性非常高,因为这些微生物大多数是极端微生物。这篇综述概述了微生物对土壤健康和废弃矿山的恢复的重要性,以及如何利用微生物活性和多样性来更好地规划土壤恢复。除了着重介绍在微生物用于矿区开垦方面的重大突破,我们还提供了有关植物与微生物组相互作用以改善矿区植被恢复的批判性观点。此外,还强调需要破译废弃矿场中根际和非根际微生物的适应和抗性的分子机制,了解其在补救中的作用,以及随后利用其潜力为将来的矿山恢复战略铺平道路网站。 (C)2017 Elsevier Ltd.保留所有权利。

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