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海洋环流和黑潮大弯曲对 2018 年日本鳗鲡洄游季节的影响。

Influence of ocean circulation and the Kuroshio large meander on the 2018 Japanese eel recruitment season.

机构信息

Application Laboratory, Japan Agency for Marine-Earth Science and Technology, Yokohama, Japan.

Department of Aquatic Bioscience, The University of Tokyo, Tokyo, Japan.

出版信息

PLoS One. 2019 Sep 27;14(9):e0223262. doi: 10.1371/journal.pone.0223262. eCollection 2019.

Abstract

Japanese eel (Anguilla japonica) recruitment to Japan was very low during the early 2017-2018 recruitment season when most glass eels are usually caught, but catches increased in the late recruitment season when recruitment usually decreases. Concurrently, the Kuroshio meander south of Japan had formed again after the previous event ended in 2005. The role of the large meander and ocean circulation features such as the North Equatorial Current (NEC) in the unusual 2017-2018 Japanese eel recruitment timing-pattern was investigated using a three-dimensional particle tracking model that simulated swimming behaviors of virtual larvae (v-larvae) in addition to their drift in ocean currents. Four recruitment seasons were selected for when the Kuroshio large meander was present (2004-2005, 2017-2018) or absent (2009-2010, 2015-2016), and when NEC was shifted north (2004-2005, 2015-2016) or south (2009-2010, 2017-2018). The simulated recruitment timing-patterns were similar to the actual recent-year recruitment, with no early recruitment period v-larvae arrival to southern Japan and increased late period recruitment occurring. Rather than being related to the presence of the Kuroshio large meander, the late arrival appeared to be caused by a southward shifted, weak North Equatorial Current near the spawning area, a longer Subtropical Countercurrent eddy region retention time, and a weak Kuroshio during the early migration and recruitment period of those years. In the late recruitment period, the Kuroshio was stronger than other selected years near the East China Sea and south of Japan and v-larvae were transported more rapidly. The Kuroshio large meander may influence local eel recruitment in Japan, and the recirculation formed by the large meander could potentially enhance recruitment to the Tokai region. Oriented (northwestward) swimming v-larvae were less affected by the large meander, and showed higher recruitment success than those using along-current swimming. Although the Kuroshio large meander did not seem to be responsible for the unusual recruitment pattern in 2018, how Japanese eel larvae and glass eels actually cross out of the Kuroshio and reach coastal waters in Japan remains to be explored.

摘要

2017-2018 年的玻璃鳗捕捞季,日本真鳗的捕捞量非常低,而通常在捕捞季后期,真鳗的捕捞量会增加,但当年的捕捞季后期真鳗的捕捞量却有所增加。与此同时,在 2005 年上一次事件结束后,日本近海的黑潮再次向南弯曲。利用三维粒子追踪模型,对大型黑潮弯曲和北赤道流等海洋环流特征在 2017-2018 年日本真鳗异常捕捞时间模式中的作用进行了研究,该模型模拟了虚拟幼鳗(v-幼鳗)在海流中的游动行为及其漂流行为。选择了四个黑潮大弯曲存在(2004-2005 年、2017-2018 年)或不存在(2009-2010 年、2015-2016 年),以及北赤道流北移(2004-2005 年、2015-2016 年)或南移(2009-2010 年、2017-2018 年)的四个捕捞季进行研究。模拟的捕捞时间模式与最近几年的实际捕捞情况相似,没有早期捕捞期 v-幼鳗到达日本南部,而晚期捕捞期的捕捞量增加。这种晚期到达的现象似乎与黑潮大弯曲的存在无关,而是由于在产卵区附近,北赤道流南移、较弱,亚热带逆流涡旋区滞留时间较长,以及这些年份的早期洄游和捕捞期黑潮流速较弱所致。在晚期捕捞期,黑潮在东海附近和日本南部的强度强于其他选择年份,v-幼鳗的运输速度更快。黑潮大弯曲可能会影响日本当地的鳗鱼捕捞,而大弯曲形成的回旋流可能会增强对东海地区的捕捞。定向(西北向)游动的 v-幼鳗受大弯曲的影响较小,其捕捞成功率高于顺流游动的 v-幼鳗。尽管黑潮大弯曲似乎不是 2018 年异常捕捞模式的原因,但日本真鳗幼鳗和玻璃鳗实际上如何穿越黑潮并到达日本沿海水域仍有待探索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9466/6764742/3f5b7a20b292/pone.0223262.g001.jpg

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