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修正案影响了桉树根系 Cd 和 Pb 尾矿中微生物的群落组装和共存网络。

Amendments affect the community assembly and co-occurrence network of microorganisms in Cd and Pb tailings of the Eucalyptus camaldulensis rhizosphere.

机构信息

Research Institute of Fast-growing Trees, Chinese Academy of Forestry, State Key Laboratory of Efficient Production of Forest Resources, Zhanjiang 524022, China.

Research Institute of Fast-growing Trees, Chinese Academy of Forestry, State Key Laboratory of Efficient Production of Forest Resources, Zhanjiang 524022, China.

出版信息

Sci Total Environ. 2024 Jun 20;930:172365. doi: 10.1016/j.scitotenv.2024.172365. Epub 2024 Apr 17.

Abstract

Mining tailings containing large amounts of Pb and Cd cause severe regional ecosystem pollution. Soil microorganisms play a regulatory role in the restoration of degraded ecosystems. The remediation of heavy metal-contaminated tailings with amendments and economically valuable Eucalyptus camaldulensis is a research hotspot due to its cost-effectiveness and sustainability. However, the succession and co-occurrence patterns of these microbial communities in this context remain unclear. Tailing samples of five kinds of Cd and Pb were collected in E. camaldulensis restoration models. Physicochemical properties, the proportions of different Cd and Pb forms, microbial community structure, and the co-occurrence network of rhizosphere tailings during different restoration process (organic bacterial manure, organic manure, inorganic fertilizer, bacterial agent) were considered. Organic and organic bacterial manures significantly increased pH, cation exchange capacity, and the proportion of residual Pb. Still, there was a significant decrease in the proportion of reducible Pb. The changes in microbial communities were related to physicochemical properties and the types of amendments. Organic and organic bacterium manures decreased the relative abundance of oligotrophic groups and increased the relative abundance of syntrophic groups. Inorganic fertilizers and bacterial agents decreased the relative abundance of saprophytic fungi. B. subtilis would play a better role in the environment improved by organic manure, increasing the relative abundance of beneficial microorganism and reducing the relative abundance of pathogenic microorganism. pH, cation exchange capacity, and the proportion of different forms of Pb were the main factors affecting the bacterial and fungi variation. All four amendments transformed the main critical groups of the microbial network structure from acidophilus and pathogenic microorganisms to beneficial microorganisms. Heavy metal-resistant microorganisms, stress-resistant microorganisms, beneficial microorganisms that promote nutrient cycling, and copiotrophic groups have become critical to building stable rhizosphere microbial communities. The topological properties and stability of the rhizosphere co-occurrence network were also enhanced. Adding organic and organic bacterium manures combined with E. camaldulensis to repair Cd and Pb tailings improved (1) pH and cation exchange capacity, (2) reduced the biological toxicity of Pb, (3) enhanced the stability of microbial networks, and (4) improved ecological network relationships. These positive changes are conducive to the restoration of the ecological functions of tailings.

摘要

开采含有大量 Pb 和 Cd 的尾矿会导致严重的区域生态系统污染。土壤微生物在退化生态系统的恢复中发挥着调节作用。用改良剂和具有经济价值的桉树(Eucalyptus camaldulensis)修复重金属污染的尾矿是一个研究热点,因为它具有成本效益和可持续性。然而,在这种情况下,这些微生物群落的演替和共存模式仍不清楚。在桉树修复模型中采集了五种 Cd 和 Pb 尾矿样品。考虑了不同修复过程(有机菌肥、有机肥、无机肥、菌剂)下根际尾矿的理化性质、不同 Cd 和 Pb 形态的比例、微生物群落结构以及根际尾矿的共生网络。有机和有机菌肥显著提高了 pH 值、阳离子交换容量和残余 Pb 的比例,而可还原 Pb 的比例则显著降低。微生物群落的变化与理化性质和改良剂的类型有关。有机和有机菌肥减少了贫营养菌的相对丰度,增加了共生菌的相对丰度。无机肥和菌剂降低了腐生真菌的相对丰度。枯草芽孢杆菌在有机肥改良的环境中会发挥更好的作用,增加有益微生物的相对丰度,降低病原微生物的相对丰度。pH 值、阳离子交换容量和不同形态 Pb 的比例是影响细菌和真菌变化的主要因素。所有四种改良剂都将微生物网络结构的主要关键群从嗜酸菌和病原微生物转化为有益微生物。耐重金属微生物、抗应激微生物、促进养分循环的有益微生物和富营养菌成为构建稳定根际微生物群落的关键。根际共生网络的拓扑性质和稳定性也得到了增强。添加有机和有机菌肥结合桉树修复 Cd 和 Pb 尾矿(1)提高了 pH 值和阳离子交换容量,(2)降低了 Pb 的生物毒性,(3)增强了微生物网络的稳定性,(4)改善了生态网络关系。这些积极的变化有利于尾矿生态功能的恢复。

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