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Spatial–temporal variations in primary productivity and population dynamics of skipjack tuna Katsuwonus pelamis in the western and central Pacific Ocean

机译:西太平洋和中太平洋of鱼金枪鱼Katsuwonus pelamis初级生产力和种群动态的时空变化

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The western and central Pacific Ocean (WCPO) is the largest skipjack tuna Katsuwonus pelamis fishing ground in the world. Understanding the spatial–temporal variation of primary productivity in the WCPO is critical, as such variation might be associated with the distribution of skipjack tuna stocks. This study adopts three types of remote sensing data, i.e., sea surface temperature (SST), chlorophyll-a concentration and photosynthetically active radiation, and applies a vertically generalized production model to simulate the euphotic depth-integrated primary productivity (IPP) of the WCPO to elucidate the relationships between the distribution and variation in IPP and the estimated population dynamics of skipjack tuna. In addition, catch data from a Taiwanese purse seine fishing company (2003–2010) were analyzed to improve the accuracy of the model. The results suggest that (a) in the WCPO, the most of the high-IPP locations are in the eastern Pacific areas; (b) the areas in which IPP is significantly correlated with the El Ni?o Southern Oscillation are mainly located along the equatorial zone; and (c) there were high recruitments of skipjack in 26 and 49?months following an IPP bloom, respectively. The findings from this study reveal the correlation between primary productivity and fish resources and highlight the influence of climate variability on tuna resources.
机译:西部和中部太平洋(WCPO)是世界上最大的skip金枪鱼Katsuwonus pelamis渔场。了解WCPO初级生产力的时空变化至关重要,因为这种变化可能与of鱼金枪鱼种群的分布有关。这项研究采用了三种类型的遥感数据,即海表温度(SST),叶绿素a浓度和光合有效辐射,并应用了垂直广义生产模型来模拟WCPO的常绿深度综合初级生产力(IPP)阐明IPP的分布和变化与skip鱼的估计种群动态之间的关系。此外,还分析了台湾围网捕捞公司(2003-2010年)的捕捞数据,以提高模型的准确性。结果表明(a)在WCPO中,大多数高IPP地点位于东太平洋地区; (b)IPP与厄尔尼诺南部涛动显着相关的区域主要位于赤道带; (c)IPP盛放后的26个月和49个月分别有大量jack鱼招募。这项研究的结果揭示了初级生产力与鱼类资源之间的相关性,并强调了气候变化对金枪鱼资源的影响。

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