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利用赤泥和磷石膏制备的人工土壤中细菌群落结构与功能特征

Characteristics of Bacterial Community Structure and Function in Artificial Soil Prepared Using Red Mud and Phosphogypsum.

作者信息

Liu Yong, Yang Zhi, Zhang Lishuai, Wan Hefeng, Deng Fang, Zhao Zhiqiang, Wang Jingfu

机构信息

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

Guizhou Institute of Biology, Guiyang 550009, China.

出版信息

Microorganisms. 2024 Sep 13;12(9):1886. doi: 10.3390/microorganisms12091886.

Abstract

The preparation of artificial soil is a potential cooperative resource utilization scheme for red mud and phosphogypsum on a large scale, with a low cost and simple operation. The characteristics of the bacterial community structure and function in three artificial soils were systematically studied for the first time. Relatively rich bacterial communities were formed in the artificial soils, with relatively high abundances of bacterial phyla (e.g., , , , and ) and bacterial genera (e.g., , , and ), which can play key roles in various nutrient transformations, resistance to saline-alkali stress and pollutant toxicity, the enhancement of various soil enzyme activities, and the ecosystem construction of artificial soil. There were diverse bacterial functions (e.g., photoautotrophy, chemoheterotrophy, aromatic compound degradation, fermentation, nitrate reduction, cellulolysis, nitrogen fixation, etc.), indicating the possibility of various bacteria-dominated biochemical reactions in the artificial soil, which can significantly enrich the nutrient cycling and energy flow and enhance the fertility of the artificial soil and the activity of the soil life. The bacterial communities in the different artificial soils were generally correlated with major physicochemical factors (e.g., pH, OM, TN, AN, and AP), as well as enzyme activity factors (e.g., S-UE, S-SC, S-AKP, S-CAT, and S-AP), which comprehensively illustrates the complexity of the interaction between bacterial communities and environmental factors in artificial soils, and which may affect the succession direction of bacterial communities, the quality of the artificial soil environment, and the speed and direction of the development and maturity of the artificial soil. This study provides an important scientific basis for the synergistic soilization of two typical industrial solid wastes, red mud and phosphogypsum, specifically for the microbial mechanism, for the further evolution and development of artificial soil prepared using red mud and phosphogypsum.

摘要

人工土壤的制备是一种大规模利用赤泥和磷石膏的潜在合作资源利用方案,成本低且操作简单。首次系统研究了三种人工土壤中细菌群落结构和功能的特征。人工土壤中形成了相对丰富的细菌群落,具有相对较高丰度的细菌门(如 、 、 、 )和细菌属(如 、 、 ),它们在各种养分转化、耐盐碱胁迫和污染物毒性、提高各种土壤酶活性以及人工土壤生态系统构建中发挥关键作用。存在多种细菌功能(如光合自养、化能异养、芳香化合物降解、发酵、硝酸盐还原、纤维素分解、固氮等),表明人工土壤中各种细菌主导的生化反应具有可能性,这可以显著丰富养分循环和能量流动,提高人工土壤的肥力和土壤生命活性。不同人工土壤中的细菌群落通常与主要理化因子(如pH、OM、TN、AN和AP)以及酶活性因子(如S-UE、S-SC、S-AKP、S-CAT和S-AP)相关,这全面说明了人工土壤中细菌群落与环境因子相互作用的复杂性,这可能影响细菌群落的演替方向、人工土壤环境质量以及人工土壤发育成熟的速度和方向。本研究为赤泥和磷石膏这两种典型工业固体废弃物的协同土壤化,特别是微生物机制,为利用赤泥和磷石膏制备的人工土壤的进一步演化和发展提供了重要的科学依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0878/11434353/fb09940eb5b3/microorganisms-12-01886-g001.jpg

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