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Soil Microbiome Dynamics During Pyritic Mine Tailing Phytostabilization: Understanding Microbial Bioindicators of Soil Acidification

机译:土壤微生物动态在Pyritic矿尾植物中的植物化:了解土壤酸化的微生物生物indicator

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摘要

Challenges to the reclamation of pyritic mine tailings arise from in situ acid generation that severely constrains the growth of natural revegetation. While acid mine drainage (AMD) microbial communities are well-studied under highly acidic conditions, fewer studies document the dynamics of microbial communities that generate acid from pyritic material under less acidic conditions that can allow establishment and support of plant growth. This research characterizes the taxonomic composition dynamics of microbial communities present during a 6-year compost-assisted phytostabilization field study in extremely acidic pyritic mine tailings. A complementary microcosm experiment was performed to identify successional community populations that enable the acidification process across a pH gradient. Taxonomic profiles of the microbial populations in both the field study and microcosms reveal shifts in microbial communities that play pivotal roles in facilitating acidification during the transition between moderately and highly acidic conditions. The potential co-occurrence of organoheterotrophic and lithoautotrophic energy metabolisms during acid generation suggests the importance of both groups in facilitating acidification. Taken together, this research suggests that key microbial populations associated with pH transitions could be used as bioindicators for either sustained future plant growth or for acid generation conditions that inhibit further plant growth.
机译:从原位酸生成出现了对裂解力矿尾矿填充的挑战,严重限制了天然植物的生长。虽然酸性矿山引流(AMD)在高度酸性条件下进行了良好研究的微生物群落,但更少的研究记录了在可以允许建立和支持植物生长的酸性条件下从酸性物质中产生酸的微生物群落的动态。该研究表征了在极端酸性灭菌矿尾矿中的6年堆肥辅助植物中研究中存在的微生物社区的分类组成动态。进行互补的微观实验,以识别患有pH梯度的酸化过程的继承群落群体。田间研究和微观群体中的微生物群体的分类分析概况揭示了微生物群落中的转变,这些群体在促进促进酸化期间在适度和高度酸性条件下的过渡期间发挥枢转作用。酸产生期间有机潜能性和岩性营养能量代谢的潜在共发生表明两组在促进酸化方面的重要性。该研究表明,与pH过渡相关的关键微生物群可以用作持续未来植物生长或抑制进一步植物生长的酸产生条件的生物indinders。

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