Soil minerals and organic matters affect ARGs transformation by changing the morphology of plasmid and bacterial responses

生物炭 高岭石 化学 转化(遗传学) 质粒 环境化学 细菌 有机质 细胞外 蒙脱石 生物化学 生物 基因 矿物学 热解 有机化学 遗传学
作者
Hongyu Shi,Xinyi Hu,Jin Zhang,Wenxuan Li,Jiang Xu,Baolan Hu,Liping Ma,Liping Lou
出处
期刊:Journal of Hazardous Materials [Elsevier]
卷期号:457: 131727-131727 被引量:9
标识
DOI:10.1016/j.jhazmat.2023.131727
摘要

Soil environment is a vital place for the occurrence and spread of antibiotic resistant bacteria (ARB) and antibiotic resistance genes (ARGs). Extracellular DNA-mediated transformation is an important pathway for ARGs horizontal transfer and widely exists in soil environment. However, little information is available on how common soil components affect ARGs transformation. Here, three minerals (quartz, kaolinite, and montmorillonite) and three organic matters (humic acid, biochar, and soot) were selected as typical soil components. A small amount in suspension (0.2 g/L) of most soil components (except for quartz and montmorillonite) promoted transformant production by 1.1-1.6 folds. For a high amount (8 g/L), biochar significantly promoted transformant production to 1.5 times, kaolinite exerted a 30 % inhibitory effect. From the perspective of plasmid, biochar induced a higher proportion of supercoiled plasmid than kaolinite; more dissolved organic matter and metal ions facilitated plasmid aggregation under the near-neutral pH, thus promoted transformation. As for the influence of materials on recipient, although biochar and kaolinite both increased reactive oxygen species (ROS) level and membrane permeability, biochar up-regulated more ROS related genes, resulting in intracellular ROS production and up-regulating the expression of carbohydrate metabolism and transformation related genes. While kaolinite inhibited transformation mainly by causing nutrient deficiency.

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