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硫铁矿尾矿植物稳定修复过程中的土壤微生物群落动态:了解土壤酸化的微生物生物指标

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

作者信息

Hottenstein John D, Neilson Julie W, Gil-Loaiza Juliana, Root Robert A, White Scott A, Chorover Jon, Maier Raina M

机构信息

Department of Soil, Water and Environmental Science, The University of Arizona, Tucson, AZ, United States.

出版信息

Front Microbiol. 2019 Jun 5;10:1211. doi: 10.3389/fmicb.2019.01211. eCollection 2019.

Abstract

Challenges to the reclamation of pyritic mine tailings arise from 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.

摘要

黄铁矿尾矿复垦面临的挑战源于酸的产生,这严重限制了自然植被的生长。虽然在高酸性条件下对酸性矿山排水(AMD)微生物群落进行了充分研究,但较少有研究记录在酸性较弱、能够支持植物生长的条件下,从黄铁矿材料中产生酸的微生物群落动态。本研究描述了在一项为期6年的堆肥辅助植物稳定化田间试验中,极端酸性黄铁矿尾矿中微生物群落的分类组成动态。进行了一项补充性的微观实验,以确定在pH梯度上促成酸化过程的演替群落种群。田间试验和微观实验中微生物种群的分类概况显示,在中等酸性和高酸性条件转变期间,微生物群落发生了变化,这些变化在促进酸化过程中起关键作用。在产酸过程中有机异养和无机自养能量代谢可能同时存在,这表明这两类代谢在促进酸化方面都很重要。综合来看,本研究表明,与pH转变相关的关键微生物种群可作为生物指标,用于预测未来植物的持续生长或抑制植物进一步生长的产酸条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0833/6593306/64e45aa7e628/fmicb-10-01211-g001.jpg

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