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海洋细菌携带磺胺抗性基因,且没有可移动遗传元件。

Marine bacteria harbor the sulfonamide resistance gene without mobile genetic elements.

作者信息

Shindoh Suzune, Kadoya Aya, Kanechi Reo, Watanabe Kozo, Suzuki Satoru

机构信息

Center for Marine Environmental Studies, Ehime University, Matsuyama, Japan.

Graduate School of Science and Engineering, Ehime University, Matsuyama, Japan.

出版信息

Front Microbiol. 2023 Sep 14;14:1230548. doi: 10.3389/fmicb.2023.1230548. eCollection 2023.

Abstract

Marine bacteria are possible reservoirs of antibiotic-resistance genes (ARGs) originating not only from clinical and terrestrial hot spots but also from the marine environment. We report here for the first time a higher rate of the sulfonamide-resistance gene in marine bacterial isolates compared with other genes. Among four sulfonamide-resistance genes (, , , and ), was most abundant (45%) in 74 sulfonamide-resistant marine isolates by PCR screening. The order of abundance was (33 isolates) (6 isolates) (5 isolates) (1 isolate). Whole-genome sequencing of 23 isolates of -expressing α- and γ-proteobacteria and bacilli revealed that was not accompanied by known mobile genetic elements. This suggests that in these marine isolates is clonally transferred and not horizontally transferable. Folate metabolism genes formed a cluster with , suggesting that the cluster area plays a role in folate metabolism, at which functions as a dihydropteroate synthase. Thus, might be expressed in marine species and function in folate synthesis, but it is not a transferable ARG.

摘要

海洋细菌可能是抗生素抗性基因(ARGs)的储存库,这些基因不仅源自临床和陆地热点区域,也来自海洋环境。我们首次报告,与其他基因相比,海洋细菌分离株中磺胺抗性基因的比例更高。在四个磺胺抗性基因(,,,和)中,通过PCR筛选,在74株耐磺胺海洋分离株中最为丰富(45%)。丰度顺序为(33株)(6株)(5株)(1株)。对23株表达的α-和γ-变形菌以及芽孢杆菌进行全基因组测序,结果显示不伴有已知的可移动遗传元件。这表明这些海洋分离株中的是通过克隆转移的,而非水平转移。叶酸代谢基因与形成一个簇,表明该簇区域在叶酸代谢中起作用,在其中作为二氢蝶酸合酶发挥功能。因此,可能在海洋物种中表达并在叶酸合成中发挥作用,但它不是一个可转移的抗生素抗性基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/222d/10539471/f45ffc9ab691/fmicb-14-1230548-g001.jpg

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