Pathology of systemic multiple bacterial infections and peritonitis in hatchery-produced African catfish Clarias gariepinus (Burchell, 1822) larvae

IF 0.6 Q4 FISHERIES Journal of Fisheries Pub Date : 2022-02-20 DOI:10.17017/j.fish.300
T. Abraham, Harresh Adikesavalu, Sayani Banerjee
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Abstract

Diseases are the major problems that have a significant impact on African catfish Clarias gariepinus seed production. This study reports the necropsy, microscopy, bacteriology and histopathology of diseased catfish larvae that experienced mass mortalities (>80%). The gill filaments of diseased larvae revealed no ectoparasites. The intestines had no parasitic association. About 35 – 40% of the dead larvae had ruptured abdomen. The affected larvae had abdominal haemorrhages and disintegrated intestine with marked degenerative and inflammatory changes, which indicated peritonitis. Bacteria including Aeromonas veronii, Edwardsiella tarda and Pseudomonas putida were isolated from the haemorrhagic exudates of diseased catfish larvae. Histopathology demonstrated dense melanomacrophage aggregates in the spleen. The intestine had extensive degeneration, basophilic margination and disintegration of the mucosal layer. The kidney section suggested a suppurative infection with necrosis of haematopoietic tissue, inflammation of the epithelial tissue, vacuolar degenerations and hypoplastic haematopoietic tissue. Aeromonas veronii and E. tarda immersion challenge at 5×106 cells mL–1 yielded no mortalities under laboratory conditions. Nevertheless, the hatchery management measures and the laboratory analyses supported peritonitis with systemic multiple bacterial infections in the observed large-scale motilities of excessively fed larvae.
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孵化场生产的非洲鲶鱼Clarias gariepinus (Burchell, 1822)幼虫的系统性多种细菌感染和腹膜炎的病理研究
疾病是影响非洲鲶鱼种子生产的主要问题。本研究报告了大量死亡(>80%)的患病鲶鱼幼虫的尸检、显微镜、细菌学和组织病理学。患病幼虫鳃丝未见体外寄生。肠道中没有寄生虫。约35 - 40%的死亡幼虫腹部破裂。受感染的幼虫腹部出血,肠崩解,伴有明显的退行性和炎症变化,提示腹膜炎。从患病鲶鱼幼虫的出血性渗出液中分离出维氏气单胞菌、迟缓爱德华菌和恶臭假单胞菌。组织病理学显示脾脏内有致密的黑素巨噬细胞聚集。肠有广泛的变性,嗜碱性边缘和粘膜层崩解。肾脏切片提示化脓性感染,造血组织坏死,上皮组织炎症,空泡变性和造血组织发育不良。在实验室条件下,对5×106细胞mL-1进行维氏气单胞菌和延迟胞杆菌浸渍侵染未产生死亡。然而,孵化场管理措施和实验室分析支持在观察到的过量喂养的幼虫的大规模运动中出现腹膜炎并系统性多细菌感染。
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审稿时长
8 weeks
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