转导(生物物理学)
质粒
转化(遗传学)
化学
周质间隙
基因
纳米-
细菌
细胞生物学
生物
生物物理学
遗传学
材料科学
大肠杆菌
复合材料
作者
Chengshi Ding,Min Jin,Jing Ma,Zhaoli Chen,Zhiqiang Shen,Dong Yang,Danyang Shi,Weili Liu,Meiling Kang,Jingfeng Wang,Jùnwén Lǐ,Zhigang Qiu
标识
DOI:10.1016/j.jhazmat.2020.124224
摘要
The prevalence of various antibiotic resistance genes (ARGs) and resistant bacteria has caused global public health risks. The carrier transport mediated by phages or membrane vesicles is an important way for horizontal transfer of ARGs. Nano metal oxide particles (NMOPs), which can enter cell through the cell membrane, may be used as the carriers of genes. However, whether they can be used as transmembrane delivery vectors for the horizontal ARG transfer remains unknown. Here, we set up a model of MONPs-mediated transfer of ARGs, and demonstrate that NMOPs, especially for nano-Al2O3, can act as carriers mediating the transduction-like ARG transformation in water. The highest transfer rate mediated by nano-Al2O3 is 4.53 × 104 cfu/mmol, and it is 104 times higher than that of control. Nano-Al2O3 can combine with plasmid coding for ARGs to form high-density package and prevent ARGs from degradation by endonuclease. The results of superresolution fluorescence microscopy and transmission electron microscopy show that nano-Al2O3 can carry ARGs for transmembrane transport. Genome-wide transcription microarray and qPCR indicate that SOS response was closely related to transduction-like ARG transformation mediated by nano-Al2O3. This study is the first to demonstrate that as a new transmembrane carrier, nano-Al2O3 can also cause ARGs diffusion in water.
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