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矿物-微生物复合物对盆栽蔊菜尾矿基质质量、土壤养分及微生物群落的影响

Effect of the mineral-microbial complexes on the quality, soil nutrients, and microbial community of tailing substrates for growing potted Rorippa.

作者信息

Zhang Bo, Zhang Mengyue, Zhou Xingxing, Li Shaoping, Zhao Yan, Li Liang, Hu Xiaomin

机构信息

Key Laboratory of Ministry of Education on Safe Mining of Deep Metal Mines, Northeastern University, Shenyang 110819, PR China.

School of Life Science and Biopharmaceutics, Shenyang Pharmaceutical University, Shenyang 110016, PR China.

出版信息

Microbiol Res. 2022 Sep;262:127084. doi: 10.1016/j.micres.2022.127084. Epub 2022 Jun 1.

Abstract

With China's industrialization and a rapidly developing coal industry, tailings have become one of the most widely distributed solid wastes, responsible for degrading available land and damaging the surrounding ecological environment. This study investigated the effect of adding mineral-microbial complexes to tailing substrates for the improvement of plant growth and substrate microbial community. The results revealed that compared with other treatments, the growth of Rorippa was considerably better after the addition of mineral-microbial complexes to the substrate, indicating that the mineral-microbial complexes promoted plant growth. After the addition of mineral-microbial complexes, the fertility indicators of the substrate showed a substantial improvement, in addition to the pH and organic matter (OM). The addition of fertilizers to the substrate plays a key role in plant growth, whereas the addition of microbial supplements to the substrate alone has little effect on plant growth. The results of high-throughput sequencing showed that the main microbial communities present in the substrate were Proteobacteria, Actinobacteria, Firmicutes, Bacteroidetes, and Nitrospirae. The results of the microbial community α-diversity analysis showed that the addition of the mineral-microbial complexes improved the abundance and diversity of the substrate microbial community. Results of the microbial community β-diversity analysis indicated that the experimental group showed a higher correlation with the microbial community relative to the background group. Network analysis revealed similar correlations between microbial communities and environmental factors, and total phosphorous (TP)-pH-available potassium (AK)-available nitrogen (AN) and TP-electronic conductivity (EC)-AK-AN were the main drivers of microbial communities in the background and experimental groups, respectively. The findings of this study provide a theoretical basis for the resource utilization of tailings and vegetation restoration using tailings.

摘要

随着中国的工业化进程以及煤炭工业的快速发展,尾矿已成为分布最广泛的固体废弃物之一,导致可用土地退化并破坏周边生态环境。本研究调查了添加矿物-微生物复合体对尾矿基质的影响,以改善植物生长和基质微生物群落。结果表明,与其他处理相比,向基质中添加矿物-微生物复合体后,蔊菜的生长明显更好,这表明矿物-微生物复合体促进了植物生长。添加矿物-微生物复合体后,除了pH值和有机质(OM)外,基质的肥力指标有显著改善。向基质中添加肥料对植物生长起关键作用,而单独向基质中添加微生物补充剂对植物生长影响不大。高通量测序结果表明,基质中存在的主要微生物群落为变形菌门、放线菌门、厚壁菌门、拟杆菌门和硝化螺旋菌门。微生物群落α多样性分析结果表明,添加矿物-微生物复合体提高了基质微生物群落的丰度和多样性。微生物群落β多样性分析结果表明,实验组相对于背景组与微生物群落的相关性更高。网络分析揭示了微生物群落与环境因素之间的相似相关性,总磷(TP)-pH值-有效钾(AK)-有效氮(AN)和TP-电导率(EC)-AK-AN分别是背景组和实验组微生物群落的主要驱动因素。本研究结果为尾矿的资源利用和利用尾矿进行植被恢复提供了理论依据。

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