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首页> 外文期刊>Diseases of Aquatic Organisms >First detection of Erysipelothrix sp. infection in western mosquitofish Gambusia affinis inhabiting catfish aquaculture ponds in Mississippi, USA
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First detection of Erysipelothrix sp. infection in western mosquitofish Gambusia affinis inhabiting catfish aquaculture ponds in Mississippi, USA

机译:首先检测erysipeLothrix sp。 西部蚊虫甘露群岛的感染栖息于美国密西西比州鲶鱼水产养殖池塘

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摘要

Native and introduced fish can serve as reservoirs for pathogens of cultured fish species. In the current study, 351 archived western mosquitofish Gambusia affinis collected from experimental catfish production ponds in Mississippi, USA, were surveyed histologically to evaluate their potential as vectors for fish pathogens. In addition to epitheliocystis and multiple metazoan parasites, 8 fish had widespread basophilic colonies of small Gram-positive rods associated primarily with stroma supporting the skeletal muscle and bone, as well as connective tissue components of other tissues and organ systems, such as perivascular adventitia and basement membranes. These findings were consistent with spaC-type Erysipelothrix sp. infections in ornamental fish cultured in the USA. The 16S rRNA, gyrase B (gyrB), and surface protective antigen (spa) genes were amplified and sequenced from bacterial colonies excised from paraffin-embedded tissue sections using laser capture microdissection. Molecular data confirmed the identity of a spaC-type Erysipelothrix sp., which grouped phylogenetically with spaC-type Erysipelothrix sp. from diseased ornamental fish. Given the significance of commercial catfish aquaculture in the southeastern USA and the widespread distribution of mosquitofish in catfish ponds throughout the region, infectivity trials with channel catfish Ictalurus punctatus were conducted. Catfish fingerlings were exposed to a spaC-type Erysipelothrix sp. isolate by intracoelomic injection and gavage. No mortality was observed in catfish exposed by either route, and surviving fish demonstrated no significant histopathologic lesions, suggesting channel catfish have low susceptibility to the bacteria. Further research is warranted to investigate the susceptibility of other cultured fish species to this emergent fish pathogen.
机译:本土和引入的鱼可以作为培养的鱼类病原体的储层。在目前的研究中,从美国密西西比州密西西比州的实验鲶鱼生产池塘中收集了351名船用的西部蚊虫犬,在组织学上调查,以评估其作为鱼类病原体的载体的潜力。除了上皮细胞和多种甲基寄生虫外,8条鱼类普遍存在的小革兰阳性棒,主要与支持骨骼肌和骨骼的基质,以及其他组织和器官系统的结缔组织组分,如血管外复位和基底膜。这些发现与Spac型ErysipeLothrix SP一致。在美国培养的观赏鱼的感染。扩增16S rRNA,乙酶B(GyrB)和表面保护抗原(SPA)基因并从使用激光捕获微量碎片从石蜡包埋的组织切片中切除的细菌菌落中进行测序。分子数据证实了SPAC型红细胞素SP的同一性,其用SPAC型ErysipeLothrix SP分组。来自患病的观赏鱼。鉴于美国东南部的商业鲶鱼水产养殖和整个地区鲶鱼池塘中的蚊虫广泛分布的意义,进行了与通道鲶鱼ICTRALURUS粉虱的感染试验。鲶鱼的鱼片暴露于Spac型ErysipeLothrix SP。通过细胞内注射和饲料分离。在任何途径暴露的鲶鱼中没有观察到死亡率,并且存活的鱼类证明无明显的组织病理病变,暗示犬鲶鱼对细菌的敏感性低。有必要进一步研究来调查其他培养的鱼类对这种突出的鱼类病原体的易感性。

著录项

  • 来源
    《Diseases of Aquatic Organisms》 |2019年第3期|共8页
  • 作者单位

    Univ Georgia Coll Vet Med Dept Pathol 501 DW Brooks Dr Athens GA 30602 USA;

    Mississippi State Univ Dept Pathobiol &

    Populat Med Coll Vet Med Thad Cochran Natl Warmwater Aquaculture Ctr Delta 127 Expt Stn Rd Stoneville MS 38776 USA;

    Mississippi State Univ Dept Basic Sci Coll Vet Med 240 Wise Ctr Dr Mississippi State MS 39762 USA;

    Univ Georgia Coll Vet Med Dept Pathol 501 DW Brooks Dr Athens GA 30602 USA;

    Univ Calif Davis Sch Vet Med Dept Med &

    Epidemiol 2108 Tupper Hall Davis CA 95616 USA;

    Mississippi State Univ Coll Forest Resources Thad Cochran Natl Warmwater Aquaculture Ctr Delta Res &

    Extens Ctr Dept Wildlife Fisheries &

    Stoneville MS 38776 USA;

    Univ Calif Davis Sch Vet Med Dept Med &

    Epidemiol 2108 Tupper Hall Davis CA 95616 USA;

    Univ Calif Davis Sch Vet Med Dept Med &

    Epidemiol 2108 Tupper Hall Davis CA 95616 USA;

    Univ Georgia Coll Vet Med Dept Pathol 501 DW Brooks Dr Athens GA 30602 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水生生物学;
  • 关键词

    Erysipelothrix; Mosquitofish; Channel catfish; Laser capture microdissection;

    机译:erysipelothrix;蚊虫;峡谷;激光捕获微量碎片;

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