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首页> 外文期刊>Diseases of Aquatic Organisms >A neglected fish stressor: mechanical disturbance during transportation impacts susceptibility to disease in a globally important ornamental fish
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A neglected fish stressor: mechanical disturbance during transportation impacts susceptibility to disease in a globally important ornamental fish

机译:被忽视的鱼压力源:运输过程中的机械障碍会影响全球重要的观赏鱼中疾病的易感性

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摘要

The transport of fish in aquaculture and the ornamental trade exposes fish to multiple stressors that can cause mass mortalities and economic loss. Previous research on fish transport has largely focussed on chemical stress related to deterioration in water quality. However, mechanical disturbance during routine fish transport is unpredictable and is a neglected potential stressor when studying fish welfare. Stress-induced immunosuppression caused by mechanical disturbance can increase the chances of contracting infections and can significantly increase infection burden. Here, using a model host-parasite system (guppy Poecilia reticulata and the mono genean ectoparasite Gyrodactylus turnbulli) and a new method of bagging fish (Breathing Bags (TM)), which reduces mechanical disturbance during fish transport, we investigated how parasite infections contracted after simulated transport impact infection trajectories on a globally important ornamental freshwater species. Guppies exposed to mechanical transport disturbance suffered significantly higher parasite burden compared to fish that did not experience transport disturbance. Unfortunately, there was no significant reduction in parasite burden of fish transported in the Breathing Bags (TM) compared to standard polythene carrier bags. Thus, transport-induced mechanical disturbance, hitherto neglected as a stressor, can be detrimental to disease resistance and highlights the need for specific management procedures to reduce the impact of infectious diseases following routine fish transport.
机译:鱼类在水产养殖和装饰贸易中的运输将鱼暴露给可能导致大规模死亡和经济损失的多个压力源。以前关于鱼类运输的研究主要集中于与水质劣化相关的化学胁迫。然而,常规鱼类运输期间的机械障碍是不可预测的,并且在研究鱼类福利时是一种被忽视的潜在压力。由机械干扰引起的应激诱导的免疫抑制可以增加收缩感染的可能性,并且可以显着增加感染负担。这里,使用模型宿主寄生虫系统(Guppy Poecilia TeariCulata和Mono Genean异丙酸替替偶酸酯旋转Byrodactylus Turnbulli)和袋装鱼的新方法(呼吸袋(TM),从而降低了鱼类运输过程中的机械障碍,我们调查了寄生虫感染如何收缩模拟运输后造成全球重要观赏淡水种类的感染轨迹。与没有经历交通障碍的鱼相比,暴露于机械运输干扰的孔雀石遭受显着更高的寄生物负担。不幸的是,与标准聚乙烯载体袋相比,在呼吸袋(TM)中运输的鱼的寄生虫负担没有显着降低。因此,迄今为止被忽视为压力源的运输诱导的机械障碍可能对抗病性有害,并突出需要特定的管理程序,以降低常规鱼类运输后传染病的影响。

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