Analysis of Antibiotic Resistance Genes (ARGs) across Diverse Bacterial Species in Shrimp Aquaculture

Tilden M. Mitchell, Tin Ho, Liseth Salinas, Thomas VanderYacht, Nikolina Walas, Gabriel Trueba, Jay P. Graham
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Abstract

There is little information available on antibiotic resistance (ABR) within shrimp aquaculture environments. The aim of this study was to investigate the presence of antibiotic resistance genes (ARGs) in shrimp farming operations in Atacames, Ecuador. Water samples (n = 162) and shrimp samples (n = 54) were collected from three shrimp farming operations. Samples were cultured and a subset of isolates that grew in the presence of ceftriaxone, a third-generation cephalosporin, were analyzed using whole-genome sequencing (WGS). Among the sequenced isolates (n = 44), 73% of the isolates contained at least one ARG and the average number of ARGs per isolate was two, with a median of 3.5 ARGs. Antibiotic resistance genes that confer resistance to the β-lactam class of antibiotics were observed in 65% of the sequenced isolates from water (20/31) and 54% of the isolates from shrimp (7/13). We identified 61 different ARGs across the 44 sequenced isolates, which conferred resistance to nine antibiotic classes. Over half of all sequenced isolates (59%, n = 26) carried ARGs that confer resistance to more than one class of antibiotics. ARGs for certain antibiotic classes were more common, including beta-lactams (26 ARGs); aminoglycosides (11 ARGs); chloramphenicol (three ARGs); and trimethoprim (four ARGs). Sequenced isolates consisted of a diverse array of bacterial orders and species, including Escherichia coli (48%), Klebsiella pneumoniae (7%), Aeromonadales (7%), Pseudomonadales (16%), Enterobacter cloacae (2%), and Citrobacter freundii (2%). Many ARGs were shared across diverse species, underscoring the risk of horizontal gene transfer in these environments. This study indicated the widespread presence of extended-spectrum β-lactamase (ESBL) genes in shrimp aquaculture, including blaCTX-M, blaSHV, and blaTEM genes. Increased antibiotic resistance surveillance of shrimp farms and identification of aquaculture operation-level risk factors, such as antibiotic use, will likely be important for mitigating the spread of ARGs of clinical significance.
对虾养殖中多种细菌的抗生素耐药性基因 (ARG) 分析
有关对虾养殖环境中抗生素耐药性(ABR)的信息很少。本研究旨在调查厄瓜多尔阿塔卡姆斯(Atacames)对虾养殖环境中抗生素耐药性基因(ARGs)的存在情况。从三个对虾养殖场收集了水样(n = 162)和对虾样本(n = 54)。对样本进行培养,并使用全基因组测序(WGS)技术对在头孢曲松(一种第三代头孢菌素)作用下生长的分离物进行分析。在已测序的分离株(n = 44)中,73% 的分离株至少含有一个 ARG,每个分离株平均含有两个 ARG,中位数为 3.5 个 ARG。在 65% 的水体(20/31)和 54% 的虾体(7/13)测序分离物中观察到了赋予β-内酰胺类抗生素耐药性的抗生素耐药性基因。我们在 44 个测序分离物中发现了 61 种不同的 ARGs,它们可产生对 9 类抗生素的耐药性。一半以上的测序分离物(59%,n = 26)携带的 ARGs 可产生对一种以上抗生素的耐药性。某些抗生素类别的ARGs更为常见,包括β-内酰胺类(26个ARGs)、氨基糖苷类(11个ARGs)、氯霉素(3个ARGs)和三甲氧苄啶(4个ARGs)。测序分离物由多种细菌纲和种组成,包括大肠埃希菌(48%)、肺炎克雷伯菌(7%)、气单胞菌纲(7%)、假单胞菌纲(16%)、泄殖腔肠杆菌(2%)和弗氏柠檬杆菌(2%)。许多 ARGs 在不同物种间共享,这突出表明了在这些环境中存在横向基因转移的风险。这项研究表明,对虾养殖中广泛存在广谱β-内酰胺酶(ESBL)基因,包括 blaCTX-M、blaSHV 和 blaTEM 基因。加强对养虾场的抗生素耐药性监测和识别水产养殖操作层面的风险因素(如抗生素的使用),可能对减少具有临床意义的 ARGs 的传播非常重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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