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赤泥/磷石膏基人工土壤植被恢复工程早期模拟中细菌群落的变化

Bacterial Community Changes in Early-Stage Engineering Simulation of Red Mud/Phosphogypsum-Based Artificial Soil Vegetation Restoration.

作者信息

Liu Yong, Xue Binbin, Wan Hefeng, Zhang Lishuai, Yang Zhi, Wang Jingfu, Wang Lirong, Lin Xiaohong

机构信息

College of Biological and Environmental Engineering, Guiyang University, Guiyang 550005, China.

State Key Laboratory of Environmental Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences (IGCAS), Guiyang 550081, China.

出版信息

Biology (Basel). 2025 Aug 8;14(8):1020. doi: 10.3390/biology14081020.

Abstract

Preparing red mud/phosphogypsum-based artificial soils for vegetation restoration is promising. However, how artificial soil develops during vegetation restoration is unclear, especially regarding the relationship between the bacterial community and the development of artificial soil. The bacterial community changes in the early-stage engineering simulation of red mud/phosphogypsum-based artificial soil vegetation restoration were analyzed for the first time in this paper. The results showed that the structure of the bacterial community was simple at the beginning, mainly consisting of Proteobacteria, Firmicutes, and Bacteroidota, with total abundances of 74.5% and 89.3% in the two plots, respectively. The richness, diversity, and evenness of the bacterial communities all significantly increased over time ( < 0.05), indicating that the compositions of the bacterial communities in artificial soils undergo constant development, adjustment, and optimization. There were good correlations between bacterial communities and environmental factors (e.g., pH, W, OM, TN, TK, AK, TP), which generally reflected the significant synergistic development and interaction between the quality of the soil environmental and bacterial communities. There were complex dynamic changes in the functions of the bacteria during the development of artificial soils, which were mainly reflected in the decline in the abundances of chemoheterotrophy, aerobic chemoheterotrophy, and animal parasites or symbionts, but there was an increase in the abundances of phototrophy, cyanobacteria, and dark sulfide oxidation. This reflects the highly active physiological and biochemical reaction functions of bacterial communities in the development of artificial soils, which is of great significance for continuously enhancing the fertility quality and ecological attributes of artificial soils.

摘要

制备用于植被恢复的赤泥/磷石膏基人工土壤具有广阔前景。然而,人工土壤在植被恢复过程中的发育情况尚不清楚,尤其是细菌群落与人工土壤发育之间的关系。本文首次分析了赤泥/磷石膏基人工土壤植被恢复早期工程模拟中的细菌群落变化。结果表明,细菌群落结构最初较为简单,主要由变形菌门、厚壁菌门和拟杆菌门组成,两个样地中的总丰度分别为74.5%和89.3%。细菌群落的丰富度、多样性和均匀度均随时间显著增加(<0.05),表明人工土壤中细菌群落的组成在不断发展、调整和优化。细菌群落与环境因素(如pH值、含水量、有机质、全氮、全钾、有效钾、有效磷)之间存在良好的相关性,总体上反映了土壤环境质量与细菌群落之间显著的协同发展和相互作用。在人工土壤发育过程中,细菌功能存在复杂的动态变化,主要表现为化学异养、需氧化学异养以及动物寄生虫或共生体的丰度下降,但光能营养、蓝细菌和暗硫化物氧化的丰度增加。这反映了细菌群落在人工土壤发育过程中具有高度活跃的生理生化反应功能,对持续提高人工土壤的肥力质量和生态属性具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7555/12383687/7f96d8952601/biology-14-01020-g001.jpg

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