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Graphene oxide influences transfer of plasmid-mediated antibiotic resistance genes into plants

枯草芽孢杆菌 细菌 质粒 苯丙氨酸解氨酶 蜡样芽孢杆菌 生物 微生物学 解淀粉芽孢杆菌 丙二醛 食品科学 化学 氧化应激 生物化学 基因 苯丙氨酸 遗传学 氨基酸
作者
Rongqian Wu,J. H. Fang,Xiaobo Xiang,Huijun Liu,Yaxin Zhu,Sheng Du
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:911: 168652-168652 被引量:1
标识
DOI:10.1016/j.scitotenv.2023.168652
摘要

As an emerging contaminant, antibiotic resistance genes (ARGs) are raising concerns about its significant threat to public health. Meanwhile, graphene oxide (GO), which also has a potential ecological damage with increasingly entering the environment, has a great influence on the transfer of ARGs. However, little is known about the effects mechanisms of GO on the migration of antibiotic resistance genes (ARGs) from bacteria into plants. In this study, we investigated the influence of GO on the transfer of ARGs carried by RP4 plasmids from Bacillus subtilis into rice plants. Our results showed that the presence of GO at concentrations ranging from 0 to 400 mg L−1 significantly reduced the transfer of ARGs into rice roots by 13–71 %. Moreover, the migration of RP4 from the roots to aboveground parts was significantly impaired by GO. These effects may be attributed to several factors. First, higher GO concentrations led to low pH in the culture solution, resulting in a substantial decrease in the number of antibiotic-resistant bacteria. Second, GO induced oxidative stress in rice, as indicated by enhanced Evans blue dye staining, and elevated levels of malondialdehyde, nitric oxide, and phenylalanine ammonia-lyase activity. The oxidative stress negatively affected plant growth, as demonstrated by the reduced fresh weight and altered lignin content in the rice. Microscopic observations confirmed the entry of GO into root cells but not leaf mesophyll cells. Furthermore, potential recipients of RP4 plasmid strains in rice after co-cultivation experiments were identified, including Bacillus subtilis, Bacillus amyloliquefaciens, and Bacillus cereus. These findings clarify the influence of GO on ARGs in the bacteria–plant system and emphasize the need to consider its potential ecological risks.
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