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Temperature Insensitivity and Behavioural Reduction of the Physiological Stress Response to Longline Capture by the Gummy Shark Mustelus antarcticus

机译:温度不敏感和行为减少对胶粘鲨南极芥末(Mustelus antarcticus)延绳钓捕获的生理应激反应的影响

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摘要

Many factors influence the physiological stress response to fisheries capture in elasmobranchs. However, the influence of sea surface temperatures (SST) and behaviour are unknown and crucial considering global fishing pressures. We investigated the effect of SST and behaviour on the physiological stress response to capture of the gummy shark, Mustelus antarcticus, and compared our results to a laboratory study using similar conditions to test whether stress responses of in situ capture are consistent with those from laboratory simulations. Capture time for 23 M. antarcticus ranged 32–241 min as measured by hook timers or time depth recorders (TDR) in SSTs ranging 12–20°C. TDR data from 13 M. antarcticus were analysed to quantify capture behaviour as the percentage of time spent moving during capture. Several physiological variables measured from blood samples obtained immediately upon the animals’ landing indicated that although warmer SSTs increased metabolic rate, the stress response to capture was not exacerbated by capture duration. During capture movement occurred for an average of 10% of the time and since M. antarcticus can respire whilst stationary, restricted movement probably mitigated potential influences of increased SSTs and capture duration on the stress response. Previous laboratory findings were also shown to be indicative of in situ conditions and we thus advise that studies control for water temperature given the influence it has on variables (e.g. lactate) used to measure capture stress in elasmobranchs. We highlight the importance of seasonal water temperatures and capture behaviour when assessing the resilience to fisheries capture and the implementation of appropriate fisheries management strategies.
机译:许多因素影响对弹性分支中捕捞渔业的生理压力反应。但是,考虑到全球捕鱼压力,海面温度(SST)和行为的影响尚不明确且至关重要。我们调查了SST和行为对捕获胶粘鲨南极野鼬的生理应激反应的影响,并将我们的结果与使用类似条件的实验室研究进行了比较,以测试原位捕获的应激反应是否与实验室模拟的结果一致。由钩形定时器或时间深度记录器(TDR)在12-20°C的SST中测量的南极23 M捕获时间为32-241分钟。分析了来自南极洲13 M.的TDR数据,以捕获行为量化为捕获过程中移动时间的百分比。从动物着陆后立即获得的血液样本中测得的几个生理变量表明,尽管温度升高的SST可以提高代谢速率,但捕获时间不会加剧对捕获的应激反应。在捕获过程中,移动平均发生了10%的时间,并且由于南极分支杆菌可以在静止状态下呼吸,因此,受限的移动可能会减轻SST和捕获持续时间对应激反应的潜在影响。以前的实验室发现也显示出原位条件的指示,因此我们建议研究控制水温,因为水温会对用于测量弹性分支中捕获压力的变量(例如乳酸)产生影响。在评估对渔业捕捞的适应力和实施适当的渔业管理策略时,我们强调季节性水温和捕捞行为的重要性。

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