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镉添加对土霉素污染土壤中微生物群落变化和抗生素抗性基因迁移的影响。

Impacts of cadmium addition on the alteration of microbial community and transport of antibiotic resistance genes in oxytetracycline contaminated soil.

机构信息

College of Natural Resources and Environment, Northwest A&F University, Yangling 712100, China.

Power China Northwest Engineering Corporation Limited, Power Construction Corporation of China, Xian 710065, China.

出版信息

J Environ Sci (China). 2021 Jan;99:51-58. doi: 10.1016/j.jes.2020.04.015. Epub 2020 Jun 27.

Abstract

The large-scale development in livestock feed industry has increased the chances of antibiotics and heavy metals contamination in the soil. The fate of antibiotic resistance genes (ARGs) and microbial community in heavy metals and antibiotic contaminated soil is still unclear. In this study, we investigated the effect of cadmium (Cd) addition on the transport of ARGs, microbial community and human pathogenic bacteria in oxytetracycline (OTC) contaminated soil. Results showed that the addition of OTC significantly increased the abundance of ARGs and intI1 in the soil and lettuce tissues. The addition of Cd to OTC treated soil further increased the abundance and translocation of ARGs and intI1. Moreover, Cd promoted the transfer of potential human pathogenic bacteria (HPB) into lettuce tissues. Compared with O10 treatment, the addition of Cd decreased the concentration of OTC in soil and lettuce tissue, but slightly increased the fresh weight of lettuce tissues. Redundancy analysis indicated that bacterial community succession is a major factor in ARGs variation. Network analysis indicated that the main host bacteria of ARGs were mainly derived from Proteobacteria. Correlation analysis showed that intI1 was significantly correlated with tetG, tetC, sul1, sul2, ermX, and ermQ. Meanwhile, potential HPB (Clostridium, and Burkholderia) was significantly correlated with intI1 and eight ARGs (tetG, tetC, tetW, tetX, sul1, sul2, ermX, and ermQ.). The findings of this study suggest that the addition of heavy metals to agricultural fields must be considered in order to reduce the transfer of ARGs in the soil and crops.

摘要

大规模发展畜牧业增加了土壤中抗生素和重金属污染的可能性。抗生素耐药基因(ARGs)和重金属及抗生素污染土壤中微生物群落的命运尚不清楚。本研究调查了镉(Cd)添加对土霉素(OTC)污染土壤中 ARGs、微生物群落和人类致病菌迁移的影响。结果表明,OTC 的添加显著增加了土壤和生菜组织中 ARGs 和 intI1 的丰度。将 Cd 添加到 OTC 处理过的土壤中进一步增加了 ARGs 和 intI1 的丰度和迁移。此外,Cd 促进了潜在的人类致病菌(HPB)向生菜组织的转移。与 O10 处理相比,Cd 的添加降低了土壤和生菜组织中 OTC 的浓度,但略微增加了生菜组织的鲜重。冗余分析表明,细菌群落演替是 ARGs 变化的主要因素。网络分析表明,ARGs 的主要宿主菌主要来源于变形菌门。相关性分析表明,intI1 与 tetG、tetC、sul1、sul2、ermX 和 ermQ 显著相关。同时,潜在的 HPB(梭菌属和伯克氏菌属)与 intI1 和 8 个 ARGs(tetG、tetC、tetW、tetX、sul1、sul2、ermX 和 ermQ)显著相关。本研究结果表明,必须考虑在农业领域添加重金属,以减少土壤和作物中 ARGs 的转移。

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