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Sulphonamide and Trimethoprim Resistance Genes Persist in Sediments at Baltic Sea Aquaculture Farms but Are Not Detected in the Surrounding Environment

机译:在波罗的海水产养殖场的沉积物中仍存在耐磺酰胺和甲氧苄啶抗性基因但在周围环境中未发现

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摘要

Persistence and dispersal of antibiotic resistance genes (ARGs) are important factors for assessing ARG risk in aquaculture environments. Here, we quantitatively detected ARGs for sulphonamides (sul1 and sul2) and trimethoprim (dfrA1) and an integrase gene for a class 1 integron (intI1) at aquaculture facilities in the northern Baltic Sea, Finland. The ARGs persisted in sediments below fish farms at very low antibiotic concentrations during the 6-year observation period from 2006 to 2012. Although the ARGs persisted in the farm sediments, they were less prevalent in the surrounding sediments. The copy numbers between the sul1 and intI1 genes were significantly correlated suggesting that class 1 integrons may play a role in the prevalence of sul1 in the farm sediments through horizontal gene transfer. In conclusion, the presence of ARGs may limit the effectiveness of antibiotics in treating fish illnesses, thereby causing a potential risk to the aquaculture industry. However, the restricted presence of ARGs at the farms is unlikely to cause serious effects in the northern Baltic Sea sediment environments around the farms.
机译:抗生素抗性基因(ARG)的持久性和分散性是评估水产养殖环境中ARG风险的重要因素。在这里,我们在芬兰波罗的海北部的水产养殖设施中定量检测了磺胺类药物(sul1和sul2)和甲氧苄啶(dfrA1)的ARG和1类整合子(intI1)的整合酶基因。在2006年至2012年的6年观察期内,ARGs以非常低的抗生素浓度持续存在于养鱼场下方的沉积物中。尽管ARGs持续存在于养殖场沉积物中,但在周围的沉积物中却不那么普遍。 sul1和intI1基因之间的拷贝数显着相关,这表明1类整合素可能通过水平基因转移在农场沉积物中sul1的流行中发挥作用。总之,ARG的存在可能会限制抗生素在治疗鱼类疾病中的有效性,从而给水产养殖业带来潜在风险。但是,由于养殖场中ARGs的存在受到限制,因此不太可能对养殖场周围的波罗的海北部沉积环境造成严重影响。

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