Chen Jialiang, Zhang Lulu, Song Lang, Ye Mai, Wang Lin, Fan Bin, Li Bin, Yang Zetao, Jin Rongzhou, Jia Pu
Guangdong Provincial Academy of Environmental Science, Guangzhou 510045, China.
School of Life Sciences, South China Normal University, Guangzhou 510631, China.
Toxics. 2024 Dec 27;13(1):20. doi: 10.3390/toxics13010020.
Illegal solid waste dumping is a significant factor contributing to environmental damage. In this study, 16S rRNA gene sequencing technology was used for the identification and assessment of environmental damage in an illegal dumping area in China, with the aim of confirming environmental damage through analyzing changes in the soil bacterial communities across slag, sewage sludge, and non-contaminated areas. The results indicate that the diversity of soil bacteria decreases with an increase in the degree of pollution. The illegal dumping of slag resulted in an increase in the relative abundance of and a decrease in the relative abundance of . Additionally, illegal dumping of sewage sludge resulted in an increase in the relative abundance of and a decrease in the relative abundance of . The contents of Ni and Be in slag and Cu, Pb, and Cd in sewage sludge were key factors affecting bacterial community composition. The results reveal the effects of heavy metal pollution on the soil bacterial community structure and its environmental driving factors, thus expanding understanding in the context of management of the environmental damage caused by illegal dumping, as well as providing a perspective on the changes in the soil bacterial community, allowing for environmental damage confirmation.
非法固体废弃物倾倒是造成环境破坏的一个重要因素。在本研究中,采用16S rRNA基因测序技术对中国某非法倾倒区域的环境破坏情况进行识别和评估,目的是通过分析炉渣、污水污泥和未受污染区域土壤细菌群落的变化来确认环境破坏情况。结果表明,土壤细菌的多样性随着污染程度的增加而降低。非法倾倒炉渣导致[具体物种1]相对丰度增加,[具体物种2]相对丰度降低。此外,非法倾倒污水污泥导致[具体物种3]相对丰度增加,[具体物种4]相对丰度降低。炉渣中的镍和铍以及污水污泥中的铜、铅和镉含量是影响细菌群落组成的关键因素。研究结果揭示了重金属污染对土壤细菌群落结构及其环境驱动因素的影响,从而拓展了对非法倾倒造成的环境破坏管理方面的认识,并提供了土壤细菌群落变化的视角,有助于确认环境破坏情况。