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Mobile Genetic Elements Drive the Antibiotic Resistome Alteration in Freshwater Shrimp Aquaculture

机译:流动遗传元件在淡水虾水产养殖中推动抗生素抵抗力改变

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摘要

Shrimp aquaculture environments are a natural reservoir of multiple antibiotic resistance genes (ARGs) due to the overuse of antibiotics. Nowadays, the prevalence of these kinds of emerging contaminants in shrimp aquaculture environments is still unclear. In this study, high-throughput sequencing techniques were used to analyze the distribution of ARGs and mobile genetic elements (MGEs), bacterial communities, and their correlations in water and sediment samples in two types of typical shrimp (Procambarus clarkii and Macrobrachium rosenbergii) freshwater aquaculture environments. A total of 318 ARG subtypes within 19 ARG types were detected in all the samples. The biodiversity and relative abundance of ARGs in sediment samples showed much higher levels compared to water samples from all ponds in the study area. Bacitracin (17.44–82.82%) and multidrug (8.57–49.70%) were dominant ARG types in P. clarkii ponds, while sulfonamide (26.33–39.59%) and bacitracin (12.75–37.11%) were dominant ARG types in M. rosenbergii ponds. Network analysis underlined the complex co-occurrence patterns between bacterial communities and ARGs. Proteobacteria, Cyanobacteria, and Actinobacteria exhibited a high abundance in all samples, in which C39 (OTU25355) and Hydrogenophaga (OTU162961) played important roles in the dissemination of and variation in ARGs based on their strong connections between ARGs and bacterial communities. Furthermore, pathogens (e.g., Aeromonadaceae (OTU195200) and Microbacteriaceae (OTU16033)), which were potential hosts for various ARGs, may accelerate the propagation of ARGs and be harmful to human health via horizontal gene transfer mediated by MGEs. Variation partitioning analysis further confirmed that MGEs were the most crucial contributor (74.76%) driving the resistome alteration. This study may help us to understand the non-ignorable correlations among ARGs, bacterial diversity, and MGEs in the shrimp freshwater aquaculture environments.
机译:由于过度使用抗生素,虾水产养殖环境是多种抗生素抗性基因(Args)的天然储层。如今,虾水产养殖环境中这些新出现的污染物的患病率尚不清楚。在该研究中,使用高通量测序技术分析了两种典型虾(Procambarus Clarkii和Macrobrachium Rosenbergii)淡水中的水和沉积物样本中Args和移动遗传元件(MGES),细菌群落及其在水和沉积物样本中的相关性的分布水产养殖环境。在所有样本中检测到19 arg类型内的总共318个arg亚型。与研究区域所有池塘的水样相比,沉积物样品中args的生物多样性和相对丰度显示得更高。 Bacitracin(17.44-82.82%)和多药(8.57-49.70%)在P. Clarkii池塘中占优势蛋白酶,而磺酰胺(26.33-39.59%)和甲硝丁蛋白(12.75-37.11%)在M.罗森伯古池塘中占优势arg类型。网络分析强调了细菌社区与args之间的复杂共生模式。在所有样品中表现出植物,蓝藻和肌动菌,其中C39(OTU25355)和氢气(OTU162961)在args和细菌社区之间的强烈联系,在args的传播和变异中发挥了重要作用。此外,病原体(例如,AeroMonadaceae(OTU195200)和微生物杆菌(OTU16033)),其是各种args的潜在宿主,可以通过升压介导的水平基因转移来加速args的繁殖并对人体健康有害。变异分区分析进一步证实,升军是推动抗抵抗力变化的最重要的贡献者(74.76%)。本研究可以帮助我们理解虾淡水水产养殖环境中args,细菌多样性和升降之间的非无知相关性。

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