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Effects of pot fishing on the physical condition of snow crab (Chionoecetes opilio) and southern Tanner crab (Chionoecetes bairdi)

机译:盆栽捕鱼对雪蟹(Chionoecetes opilio)和坦纳南部蟹(Chionoecetes bairdi)身体状况的影响

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摘要

The effects of commercial fishing with crab pots on the physical condition of the snow crab (Chionoecetes opilio) and southern Tanner crab (C. bairdi) were investigated in the Bering Sea and in Russian waters of the Sea of Okhotsk. In crabs that were subjected to pot hauling, the presence of gas embolism and the deformation of gill lamellae were found in histopathological investigations. Crab vitality, which was characterized subjectively through observation of behavioral responses, depended on not only the number of pot hauls but also the time between hauls. Immediately after repeated pot hauls at short time intervals (≤3 days), we observed a rapid decline in vitality of crabs. When hauling intervals were increased to >3 days, the condition of crabs did not significantly change. After repeated pot hauls, concentration of the respiratory pigment hemocyanin ([Hc]) was often lower in the hemolymph of crabs than in the hemolymph of freshly caught animals. Our researchudindicated that changes in [Hc] in crabs after repeated pot hauls were caused by the effects of decompression and not by starvation of crabs in pots or exposure of crabs to air. We suggest that the decrease in [Hc] in hemolymph of snow and southern Tanner crabs was a response to the adverse effects of decompression and air-bubble disease. The decrease in [Hc] in affected crabs may be a result of mechanisms that regulate internal pressure in damaged gills to optimize respiratory circulation.
机译:在白令海和鄂霍次克海的俄罗斯水域中,调查了使用蟹笼进行商业捕鱼对雪蟹(Chionoecetes opilio)和丹纳蟹(C. bairdi)南部的身体状况的影响。在进行了拖网捕捞的螃蟹中,在组织病理学调查中发现了气体栓塞和g片变形。通过观察行为反应来主观表征螃蟹的生命力,不仅取决于盆栽的数量,而且还取决于两次收获之间的时间。在短时间间隔(≤3天)内重复进行大锅大捞之后,我们立即观察到螃蟹的活力迅速下降。当拖网间隔增加到> 3天时,螃蟹的状况没有明显改变。反复进行大罐捕捞后,螃蟹的血淋巴中的呼吸性色素血蓝蛋白([Hc])浓度通常比新鲜捕获的动物的血淋巴中低。我们的研究表明,反复拖拉锅后螃蟹中[Hc]的变化是由减压作用引起的,而不是由锅中螃蟹的饥饿或暴露于空气中引起的。我们建议,降雪和坦纳河南部螃蟹的血淋巴中[Hc]的降低是对减压和气泡疾病的不利影响的反应。受影响的螃蟹中[Hc]的降低可能是调节受损腮内部压力以优化呼吸循环的机制的结果。

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