基于垂直水温因子的春夏季秘鲁外海茎柔鱼栖息地年代际变化分析
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余为(1989-),副研究员,研究方向为渔业海洋学.E-mail:wyu@shou.edu.cn

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S931

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国家自然科学基金青年基金项目(41906073); 上海市人才发展资金项目(2021078); 上海市自然科学基金项目(23ZR1427100)


Decadal variations in habitat suitability of jumbo flying squid Dosidicus gigas off Peru during spring and summer based on vertical water temperature
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    摘要:

    茎柔鱼(Dosidicus gigas)是短生命周期的头足类, 对气候事件引起的海洋环境变化十分敏感, 在不同气候和环境条件下其栖息地的时空分布会产生变化。本研究结合太平洋年代际涛动(PDO)指数, 利用 0、50、100 和 150 m 4 个水层关键水温因子, 计算 1950—2015 年秘鲁外海基于垂直水温的适宜性指数(SI)以及茎柔鱼栖息地适宜性指数(HSI), 分析长时间序列下茎柔鱼渔场垂直水温环境以及适宜栖息地在不同 PDO 时期的变动规律。结果发现, PDO 暖期内秘鲁渔场内 4 个水层水温明显高于冷期。茎柔鱼栖息地适宜性与 PDO 指数呈现显著的负相关关系, PDO 冷期内秘鲁海域的垂向水温变冷, 秘鲁外海形成质量较高的茎柔鱼栖息地, 导致栖息地适宜性上升, 适宜的水温向西北方向移动, 适宜栖息地面积扩张且向西北方向迁移; PDO 暖期时垂向水温升高, 秘鲁外海形成质量较差的茎柔鱼栖息地, 栖息地适宜性较低, 且适宜栖息地向东南方向缩减。此外, 茎柔鱼适宜栖息地有着明显的季节性变化, 相对春季, 夏季的栖息地适宜性指数高, 且适宜栖息地向东北海域扩张。研究认为, 茎柔鱼栖息地的时空分布与 PDO 位相转变驱动的不同水层海水温度变化密切关联, 并且具有明显的季节性差异。

    Abstract:

    The jumbo flying squid Dosidicus gigas, which is widely distributed in the eastern Pacific Ocean, has been regarded as an important fishing target for Chinese distant-water fisheries. Previous studies have linked the fluctuations in squid catch to varying local environmental conditions and climate shifts, such as sea surface temperature, chlorophyll-a, and El Niño-Southern Oscillation. As a short-lived cephalopod, D. gigas is sensitive to environmental changes caused by climatic events, leading to changes in both the spatial and temporal distribution of its habitats. The Pacific Decadal Oscillation (PDO) is a strong indicator reflecting climate and environmental changes occurring across interdecadal time scales within the Pacific region. Though the oscillation between the warm and cold phases of the PDO can affect the marine ecosystem and fishery industry in the Pacific Ocean, limited research has been conducted on its effect on short-lived cephalopod species, particularly D. gigas. In addition, D. gigas has a diurnal vertical migration pattern, which is influenced by water temperature. Studies have demonstrated that employing a habitat model that incorporates vertical water temperature factors leads to improved simulation and prediction of the distribution of D. gigas habitats. In this study, we aimed to analyze the long-term changes in the vertical water temperature and suitable habitat of D. gigas in different PDO periods. We calculated the suitability index (SI) of vertical water temperature and the habitat suitability index (HSI) of D. gigas from 1950 to 2015 off Peru using four key water temperature factors at 0, 50, 100, and 150 m. The water temperatures at all four depths in the Peruvian waters were significantly higher during the warm phase of the PDO than those during the cold PDO phase. The HSI observed on the fishing ground displayed a significant negative correlation with the PDO index. In the cold phase of the PDO, the vertical water temperature off Peru experienced cooling, leading to higher quality habitat for D. gigas. This shift caused the favorable water temperature range to move northwestward, inducing an increase in the habitat suitability. The suitable habitat expanded and shifted northwestward. However, during the warm phase of PDO, vertical water temperatures increased, which was unfavorable to the growth of D. gigas. Moreover, the suitable water temperatures range decreased, resulting in lower HSI and a southeastward shift of suitable habitat. In addition, there were significant seasonal variations in the suitable habitat of D. gigas. In contrast to spring, HSI exhibited higher levels during summer, which coincided with expansion of suitable habitat towards northeast. Our findings suggested that spatio-temporal distribution of D. gigas habitat is closely related to the changes in seawater temperature at different water layers driven by the PDO phase shift. Moreover, there are clear seasonal variations in the distribution of this habitat.

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余为,金鹏超,朱桂忠.基于垂直水温因子的春夏季秘鲁外海茎柔鱼栖息地年代际变化分析[J].中国水产科学,2023,30(11):1374-1386
YU Wei, JIN Pengchao, ZHU Guizhong. Decadal variations in habitat suitability of jumbo flying squid Dosidicus gigas off Peru during spring and summer based on vertical water temperature[J]. Journal of Fishery Sciences of China,2023,30(11):1374-1386

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  • 收稿日期:2023-10-23
  • 最后修改日期:2023-11-27
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  • 在线发布日期: 2024-03-14
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