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Environmental Factors Influencing the Structural Dynamics of Soil Microbial Communities During Assisted Phytostabilization of Acid-Generating Mine Tailings: a Mesocosm Experiment

机译:影响产酸尾矿辅助植物稳定过程中土壤微生物群落结构动力学的环境因素:中观实验。

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摘要

Compost-assisted phytostabilization has recently emerged as a robust alternative for reclamation of metalliferous mine tailings. Previous studies suggest that root-associated microbes may be important for facilitating plant establishment on the tailings, yet little is known about the long-term dynamics of microbial communities during reclamation. A mechanistic understanding of microbial community dynamics in tailings ecosystems undergoing remediation is critical because these dynamics profoundly influence both the biogeochemical weathering of tailings and the sustainability of a plant cover. Here we monitor the dynamics of soil microbial communities (i.e. bacteria, fungi, archaea) during a 12-month mesocosm study that included 4 treatments: 2 unplanted controls (unamended and compost-amended tailings) and 2 compost-amended seeded tailings treatments. Bacterial, fungal and archaeal communities responded distinctively to the revegetation process and concurrent changes in environmental conditions and pore water chemistry. Compost addition significantly increased microbial diversity and had an immediate and relatively long-lasting buffering-effect on pH, allowing plants to germinate and thrive during the early stages of the experiment. However, the compost buffering capacity diminished after six months and acidification took over as the major factor affecting plant survival and microbial community structure. Immediate changes in bacterial communities were observed following plant establishment, whereas fungal communities showed a delayed response that apparently correlated with the pH decline. Fluctuations in cobalt pore water concentrations, in particular, had a significant effect on the structure of all three microbial groups, which may be linked to the role of cobalt in metal detoxification pathways. The present study represents, to our knowledge, the first documentation of the dynamics of the three major microbial groups during revegetation of compost-amended, metalliferous mine tailings.
机译:最近,堆肥辅助的植物稳定化已成为填埋含金属矿山尾矿的有力替代方法。先前的研究表明,与根相关的微生物对于促进尾矿上植物的建立可能很重要,但是对于开垦期间微生物群落的长期动态知之甚少。对正在接受治理的尾矿生态系统中微生物群落动力学的机械理解至关重要,因为这些动力学深刻影响尾矿的生物地球化学风化和植物覆盖物的可持续性。在这里,我们在一项为期12个月的中观研究中监测了土壤微生物群落(即细菌,真菌,古细菌)的动态,该研究包括4种处理方法:2种未播种的对照(未经修正和堆肥改良的尾矿)和2种经堆肥改良的种子尾矿处理。细菌,真菌和古细菌群落对植被恢复过程以及环境条件和孔隙水化学性质的同时变化做出了独特的反应。堆肥的添加显着增加了微生物的多样性,并且对pH值具有立即且相对持久的缓冲作用,从而使植物在实验的早期阶段发芽并壮成长。然而,堆肥的缓冲能力在六个月后减弱,酸化已成为影响植物存活和微生物群落结构的主要因素。植物建立后观察到细菌群落的立即变化,而真菌群落显示出延迟的响应,这显然与pH下降有关。尤其是钴孔隙水浓度的波动对所有三个微生物群的结构都有重大影响,这可能与钴在金属排毒途径中的作用有关。就我们所知,本研究代表了堆肥改良的含金属矿山尾矿重新植被过程中三个主要微生物群动力学的第一份文献。

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