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Quantifying the escape mortality of trawl caught Antarctic krill (Euphausia superba)

机译:量化拖网捕捞的南极磷虾(Euphausia superba)的逃逸死亡率

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摘要

Antarctic krill (Euphausia superba) is an abundant fishery resource, the harvest levels of which are expected to increase. However, many of the length classes of krill can escape through commonly used commercial trawl mesh sizes. A vital component of the overall management of a fishery is to estimate the total fishing mortality and quantify the mortality rate of individuals that escape from fishing gear. The methods for determining fishing mortality in krill are still poorly developed. We used a covered codend sampling technique followed by onboard observations made in holding tanks to monitor mortality rates of escaped krill. Haul duration, hydrological conditions, maximum fishing depth and catch composition all had no significant effect on mortality of krill escaping 16 mm mesh size nets, nor was any further mortality associated with the holding tank conditions. A non- parametric Kaplan-Meier analysis was used to model the relationship between mortality rates of escapees and time. There was a weak tendency, though not significant, for smaller individuals to suffer higher mortality than larger individuals. The mortality of krill escaping the trawl nets in our study was 4.4 ± 4.4%, suggesting that krill are fairly tolerant of the capture-and-escape process in trawls.
机译:南极磷虾(Euphausia superba)是一种丰富的渔业资源,预计其捕捞水平将提高。但是,磷虾的许多长度类别都可以通过常用的商业拖网尺寸来逃脱。渔业总体管理的一个重要组成部分是估计总捕鱼死亡率并量化从渔具中逃脱的个体的死亡率。确定磷虾捕捞死亡率的方法仍然开发不完善。我们使用掩盖的code采样技术,然后在储水箱中进行船上观察,以监测磷虾逃逸的死亡率。拖船时间,水文条件,最大捕鱼深度和渔获物组成对逃脱16毫米网眼大小的磷虾的死亡率均无显着影响,与储水箱状况有关的死亡率也无任何影响。非参数Kaplan-Meier分析用于模拟逃生者死亡率与时间之间的关系。较小的个体比较大的个体有较高的死亡率,尽管趋势不明显。在我们的研究中,磷虾逃逸出拖网的死亡率为4.4±4.4%,这表明磷虾对拖网的捕获和逃逸过程具有相当的耐受性。

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