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| 金枪鱼渔场环境特征及形成机制研究进展:以延绳钓为例 |
| 周瑞芝1,2, 石永闯1, 伍玉梅1,2, 崔雪森1, 张胜茂1, 樊伟1,2, 唐峰华1 |
1.农业农村部渔业遥感重点试验室,中国水产科学研究院东海水产研究所,上海 200090; 2.上海海洋大学 海洋科学与生态环境学院,上海 201306 |
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| Progress Overview on Research of Environmental Characteristics and Formation Mechanism of Tuna Fisheries: As an Example of Longline Fishing |
| ZHOU Ruizhi1,2, SHI Yongchuang1, WU Yumei1,2, CUI Xuesen1, ZHANG Shengmao1, FAN Wei1,2, TANG Fenghua1 |
1. Key Laboratory of Fisheries Remote Sensing, Ministry of Agriculture and Rural Affairs, East China Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Shanghai 200090, China; 2. College of Marine Science and Ecological Environment, Shanghai Ocean University, Shanghai 201306, China |
| 引用本文: |
周瑞芝, 石永闯, 伍玉梅, 崔雪森, 张胜茂, 樊伟, 唐峰华. 金枪鱼渔场环境特征及形成机制研究进展:以延绳钓为例[J]. 水产科学, 2026, 45(4): 677-686.
ZHOU Ruizhi, SHI Yongchuang, WU Yumei, CUI Xuesen, ZHANG Shengmao, FAN Wei, TANG Fenghua. Progress Overview on Research of Environmental Characteristics and Formation Mechanism of Tuna Fisheries: As an Example of Longline Fishing. Fisheries Science, 2026, 45(4): 677-686.
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| 链接本文: |
| https://www.shchkx.com/CN/10.16378/j.cnki.1003-1111.25143 或 https://www.shchkx.com/CN/Y2026/V45/I4/677 |
[1] TIAN Y J, UCHIKAWA K, UEDA Y, et al. Comparison of fluctuations in fish communities and trophic structures of ecosystems from three currents around Japan:synchronies and differences[J]. ICES Journal of Marine Science,2014,71(1):19-34. [2] HOLLOWED A B, BARANGE M, BEAMISH R J, et al. Projected impacts of climate change on marine fish and fisheries[J]. ICES Journal of Marine Science,2013,70(5):1023-1037. [3] YANG S L, MA J J, ZHANG Y, et al. Relationship between the temporal-spatial distribution of longline fishing grounds of yellowfin tuna (Thunnus albacares) and the thermocline characteristics in the Central Atlantic Ocean[J]. Acta Ecologica Sinica,2013,33(19):6345-6353. [4] 宋德海.日本的金枪鱼渔业[J].中国水产,1992(8):41. [5] 谢营梁,徐吟梅,李励年.韩国金枪鱼渔业概况[J].现代渔业信息,2009,24(2):15-17. [6] 王宇.台湾的远洋金枪鱼渔业[J].海洋信息,1997,12(9):15-17. [7] BEVERLY S, CHAPMAN L, SOKIMI W. Horizontal longline fishing methods and techniques: a manual for fishermen[M]. Nouméa, New Caledonia: Secretariat of the Pacific Community, 2003. [8] MIYAKE M P, MIYABE N, NAKANO H. Historical trends of tuna catches in the world[M]. Rome: Food and Agriculture Organization of the United Nations, 2004. [9] SUNOKO R, HUANG H W. Indonesia tuna fisheries development and future strategy[J]. Marine Policy,2014,43:174-183. [10] 杨胜龙,周甦芳,崔雪森,等.Argo数据研究应用现状与发展趋势[J].海洋渔业,2007,29(4):355-359. [11] 邓卫建.玻璃钢远洋金枪鱼延绳钓渔船的开发研究及应用[J].广东造船,2005,24(4):1-6. [12] 冯波,许永雄,卢伙胜.南沙北部灯光罩网与金枪鱼延绳钓联合探捕[J].广东海洋大学学报,2012,32(4):54-58. [13] 张鹏,陈森,李杰,等.灯光罩网渔船兼作金枪鱼延绳钓捕捞试验[J].南方水产科学,2016,12(4):110-116. [14] 冯程程.玻璃钢金枪鱼延绳钓渔船制冷系统设计及研究[D].舟山:浙江海洋大学,2018. [15] 叶君剑.组织与技术:20世纪50年代浙江海洋渔业集体化研究[D].杭州:浙江大学,2019. [16] 叶振江,高天翔,高志军.金枪鱼延绳钓鱼体保鲜技术的初步研究[J].海洋湖沼通报,2000,22(4):68-72. [17] 郑林彬,雷林,汪金涛.中西太平洋主要金枪鱼产量回顾性分析[J].上海海洋大学学报,2025,34(2):270-281. [18] 王晓晴.我国东太平洋金枪鱼渔业发展探讨[J].渔业信息与战略,2017,32(1):31-37. [19] 林泓羽,汪金涛,陈新军,等.大西洋中部大眼金枪鱼的时空分布[J].广东海洋大学学报,2022,42(5):123-133. [20] 周淑婷,邹晓荣,邹邦郁.基于改进的XGBoost模型的大西洋大眼金枪鱼渔场预报[J].大连海洋大学学报,2025,40(3):481-488. [21] 程懿麒,张俊波,汪金涛,等.基于神经网络的印度洋长鳍金枪鱼(Thunnus alalunga)时空分布与海洋环境关系研究[J].海洋与湖沼,2021,52(4):960-970. [22] XU Y, NIETO K, TEO S L H, et al. Influence of fronts on the spatial distribution of albacore tuna (Thunnus alalunga) in the Northeast Pacific over the past 30 years (1982-2011)[J]. Progress in Oceanography,2017,150:72-78. [23] XING Q W, YU H Q, WANG H, et al. Mesoscale eddies modulate the dynamics of human fishing activities in the global midlatitude ocean[J]. Fish and Fisheries,2023,24(4):527-543. [24] 余锦萍,张静静,李宏亮,等.赤道印度洋中部沉降颗粒物的季节变化特征及调控机制研究[J].应用海洋学学报,2024,43(2):324-332. [25] 许振琦,汪金涛,雷林,等.中西太平洋长鳍金枪鱼渔场重心时空分布研究[J].水产科学,2023,42(4):604-612. [26] 李广瑶,杨胜龙,程田飞,等.中西太平洋金枪鱼渔场环境特征及预报现状分析[J].中国农业科技导报(中英文),2025,27(5):203-221. [27] 吴静怡,陈新军,方星楠.东太平洋赤道海域中尺度涡的特征分析[J].上海海洋大学学报,2024,33(3):776-785. [28] 余为,刘赫威,陈新军.气候变化对西南大西洋渔业生态系统的影响研究进展[J].上海海洋大学学报,2024,33(1):211-229. [29] 赵宇航.热带西印度洋的海水化学要素分布特征及其指示意义[D].青岛:自然资源部第一海洋研究所,2023. [30] KUMAR P, HAMLINGTON B, CHEON S H, et al. 20th century multivariate Indian Ocean regional sea level reconstruction[J]. Journal of Geophysical Research:Oceans,2020,125(10):e2020JC016270. [31] 朱国平,许柳雄.东太平洋金枪鱼延绳钓大眼金枪鱼渔场与表层温度之间的关系[J].海洋环境科学,2007,26(4):333-336. [32] LAN K W, EVANS K, LEE M G. Effects of climate variability on the distribution and fishing conditions of yellowfin tuna (Thunnus albacares) in the western Indian Ocean[J]. Climatic Change,2013,119(1):63-77. [33] 叶佳铭.大西洋大眼金枪鱼CPUE与海洋环境因子的关系研究[D].上海:上海海洋大学,2022. [34] 杨胜龙,伍玉梅,张忭忭,等.中西太平洋大眼金枪鱼中心渔场时空分布与温跃层的关系[J].应用生态学报,2017,28(1):281-290. [35] 周为峰,陈亮亮,崔雪森,等.异常气候下温跃层及时空因子对中西太平洋黄鳍金枪鱼渔场分布的影响[J].中国农业科技导报,2021,23(10):192-201. [36] YANG S L, MA J J, WU Y M, et al. Relationship between temporal-spatial distribution of fishing grounds of bigeye tuna (Thunnus obesus) and thermocline characteristics in the Atlantic Ocean[J]. Acta Ecologica Sinica,2015,35(3):1-9. [37] SONG L M, LI T L, ZHANG T J, et al. Comparison of machine learning models within different spatial resolutions for predicting the bigeye tuna fishing grounds in tropical waters of the Atlantic Ocean[J]. Fisheries Oceanography,2023,32(6):509-526. [38] ZAINUDDIN M, SAITOH K, SAITOH S I. Albacore (Thunnus alalunga) fishing ground in relation to oceanographic conditions in the western North Pacific Ocean using remotely sensed satellite data[J]. Fisheries Oceanography, 2008,17(2):61-73. [39] 林铭.基于广义可加模型和灰色系统理论的瓦努阿图海域长鳍金枪鱼延绳钓渔场与环境因子关系研究[D].上海:上海海洋大学,2022. [40] 沈智宾,陈新军,汪金涛.基于海表温度和海面高度的东太平洋大眼金枪鱼渔场预测[J].海洋科学,2015,39(10):45-51. [41] CAI L N, XU L L, TANG D L, et al. The effects of ocean temperature gradients on bigeye tuna (Thunnus obesus) distribution in the equatorial eastern Pacific Ocean[J]. Advances in Space Research,2020,65(12):2749-2760. [42] SCHAEFER K M, FULLER D W. Spatiotemporal variability in the reproductive biology of yellowfin tuna (Thunnus albacares) in the eastern Pacific Ocean[J]. Fisheries Research,2022,248:106225. [43] 王震,陈新军,雷林.东太平洋长鳍金枪鱼栖息地指数模型的比较[J].广东海洋大学学报,2017,37(1):58-64. [44] 任士雨.大西洋热带水域大眼金枪鱼渔情预报模型比较[D].上海:上海海洋大学,2021. [45] ZAGAGLIA C R, LORENZZETTI J A, STECH J L. Remote sensing data and longline catches of yellowfin tuna (Thunnus albacares) in the equatorial Atlantic[J]. Remote Sensing of Environment,2004,93(1/2):267-281. [46] 杨胜龙,马军杰,张禹,等.大西洋中部延绳钓黄鳍金枪鱼渔场时空分布与温跃层的关系[J].生态学报,2013,33(19):6345-6353. [47] SONG L M, ZHOU J, ZHOU Y Q, et al. Environmental preferences of bigeye tuna, Thunnus obesus, in the Indian Ocean:an application to a longline fishery[J]. Environmental Biology of Fishes,2009,85(2):153-171. [48] 杨胜龙,周为峰,伍玉梅,等.西北印度洋大眼金枪鱼渔场预报模型建立与模块开发[J].水产科学,2011,30(11):666-672. [49] SONG L M, ZHANG Y, XU L X, et al. Environmental preferences of longlining for yellowfin tuna (Thunnus albacares) in the tropical high seas of the Indian Ocean[J]. Fisheries Oceanography,2008,17(4):239-253. [50] ISTNAENI Z D, HIDAYAT R, ZAINUDDIN M, et al. The ENSO-IOD effects on yellowfin tuna (Thunnus albacares) in Eastern Indian Ocean-off coast Java[J]. IOP Conference Series:Earth and Environmental Science,2024,1410(1):012043. [51] WU Y L, LAN K W, EVANS K, et al. Effects of decadal climate variability on spatiotemporal distribution of Indo-Pacific yellowfin tuna population[J]. Scientific Reports,2022,12:13715. [52] GANACHAUD A, SEN GUPTA A, BROWN J N, et al. Projected changes in the tropical Pacific Ocean of importance to tuna fisheries[J]. Climatic Change,2013,119(1):163-179. [53] HARDY N A, MATUCH C, ROOTE Z, et al. Trait-based analyses reveal global patterns in diverse diets of albacore tuna (Thunnus alalunga)[J]. Fish and Fisheries,2024,25(2):268-282. [54] LIBRALATO S, CHRISTENSEN V, PAULY D. A method for identifying keystone species in food web models[J]. Ecological Modelling,2006,195(3/4):153-171. [55] NICOL S J, ALLAIN V, PILLING G M, et al. An ocean observation system for monitoring the affects of climate change on the ecology and sustainability of pelagic fisheries in the Pacific Ocean[J]. Climatic Change,2013,119(1):131-145. [56] KUMAR P S, PILLAI G N, MANJUSHA U. El Nino Southern Oscillation (ENSO) impact on tuna fisheries in Indian Ocean[J]. SpringerPlus,2014,3(1):591. [57] HELBLING E W, VILLAFAÑE V E, NARVARTE M A, et al. The impact of extreme weather events exceeds those due to global-change drivers on coastal phytoplankton assemblages[J]. Science of the Total Environment,2024,918:170644. [58] OSEJI O F, CHIGBU P, OGHENEKARO E, et al. Spatiotemporal patterns of phytoplankton composition and abundance in the Maryland Coastal Bays: the influence of freshwater discharge and anthropogenic activities[J]. Estuarine,Coastal and Shelf Science,2018,207:119-131. [59] HUGHES D J, ALDERDICE R, COONEY C, et al. Coral reef survival under accelerating ocean deoxygenation[J]. Nature Climate Change,2020,10(4):296-307. [60] SCHMIDTKO S, STRAMMA L, VISBECK M. Decline in global oceanic oxygen content during the past five decades[J]. Nature,2017,542(7641):335-339. [61] ZHOU W F, HU H J, FAN W, et al. Impact of abnormal climatic events on the CPUE of yellowfin tuna fishing in the central and western Pacific[J]. Sustainability,2022,14(3):1217. [62] MACKENZIE B R, PAYNE M R, BOJE J, et al. A cascade of warming impacts brings bluefin tuna to Greenland waters[J]. Global Change Biology,2014,20(8):2484-2491. [63] 储宇航,戴小杰,田思泉,等.南太平洋延绳钓长鳍金枪鱼生物学组成及其与栖息环境关系[J].海洋渔业,2016,38(2):130-139. [64] 宋利明,许柳雄,陈新军.大西洋中部大眼金枪鱼垂直分布与温度、盐度的关系[J].中国水产科学,2004,11(6):561-566. [65] 闫敏,张衡,樊伟,等.南太平洋长鳍金枪鱼渔场CPUE时空分布及其与关键海洋环境因子的关系[J].生态学杂志,2015,34(11):3191-3197. [66] OVERLAND J E, ALHEIT J, BAKUN A, et al. Climate controls on marine ecosystems and fish populations[J]. Journal of Marine Systems,2010,79(3/4):305-315. [67] BÁEZ J C, GIMENO L, REAL R. North Atlantic Oscillation and fisheries management during global climate change[J]. Reviews in Fish Biology and Fisheries,2021,31(2):319-336. [68] SCHAEFER K M, FULLER D W. Vertical movements, behavior, and habitat of bigeye tuna (Thunnus obesus) in the equatorial eastern Pacific Ocean, ascertained from archival tag data[J]. Marine Biology,2010,157(12):2625-2642. [69] 杨胜龙,张禹,张衡,等.热带印度洋黄鳍金枪鱼渔场时空分布与温跃层的关系[J].生态学报,2012,32(3):671-679. [70] DEARY A L, MORET-FERGUSON S, ENGELS M, et al. Influence of central Pacific oceanographic conditions on the potential vertical habitat of four tropical tuna species1[J]. Pacific Science,2015,69(4):461. [71] LEHODEY P, CHAI F, HAMPTON J. Modelling climate-related variability of tuna populations from a coupled ocean-biogeochemical-populations dynamics model[J]. Fisheries Oceanography,2003,12(4/5):483-494. [72] FLYNN K J, BLACKFORD J C, BAIRD M E, et al. Changes in pH at the exterior surface of plankton with ocean acidification[J]. Nature Climate Change,2012,2(7):510-513. [73] UTHICKE S, MOMIGLIANO P, FABRICIUS K E. High risk of extinction of benthic foraminifera in this century due to ocean acidification[J]. Scientific Reports,2013,3:1769. [74] 樊伟,陈雪忠,沈新强.基于贝叶斯原理的大洋金枪鱼渔场速预报模型研究[J].中国水产科学,2006,13(3):426-431. [75] SONG L M, ZHOU Y Q. Developing an integrated habitat index for bigeye tuna (Thunnus obesus) in the Indian Ocean based on longline fisheries data[J]. Fisheries Research, 2010,105(2):63-74. [76] 郑志辉.基于贝叶斯方法、分位数回归和人工神经网络模型的黄鳍金枪鱼渔情预报模型比较[D].上海:上海海洋大学,2017. [77] 陈洋洋,陈新军,郭立新,等.基于BP神经网络的中西太平洋鲣鱼渔场预报模型构建与比较[J].广东海洋大学学报,2017,37(6):65-73. [78] 侯娟,周为峰,樊伟,等.基于集成学习的南太平洋长鳍金枪鱼渔场预报模型研究[J].南方水产科学,2020,16(5):42-50. [79] 储宇航.南太平洋长鳍金枪鱼渔业资源时空分布及资源状况分析[D].上海:上海海洋大学,2016. [80] 张天蛟,廖章泽,宋博,等.基于深度卷积嵌入式聚类(DCEC)的海洋环境特征提取对渔情预报模型的改进研究——以西南印度洋大眼金枪鱼为例[J].海洋学报,2021,43(8):105-117. [81] 欧利国.基于计算机视觉的金枪鱼生物信息智能化识别研究[D].上海:上海海洋大学,2023. [82] 张胜茂,孙永文,樊伟,等.面向海洋渔业捕捞生产的深度学习方法应用研究进展[J].大连海洋大学学报,2022,37(4):683-695. [83] DUTEIL O, FRENGER I, GETZLAFF J. The riddle of eastern tropical Pacific Ocean oxygen levels:the role of the supply by intermediate-depth waters[J]. Ocean Science,2021,17(5):1489-1507. [84] DOMOKOS R. Influence of El Niño-Southern Oscillation on bigeye and yellowfin tuna longline catch per unit effort in the equatorial Pacific[J]. Fisheries Oceanography, 2023,32(6):527-540. [85] SUAREZ-SANCHEZ J, RITTER-ORTIZ W, GAY-GARCIA C, et al. ENSO-tuna relations in the eastern Pacific Ocean and its prediction as a non-linear dynamic system[J]. Atmósfera, 2004, 17(4): 245-258. [86] IJIMA H, JUSUP M. Tuna and billfish larval distributions in a warming ocean[J]. Arxiv Preprint Arxiv:2304.09442, 2023. [87] RUSSO S, TORRI M, PATTI B, et al. Environmental conditions along tuna larval dispersion:insights on the spawning habitat and impact on their development stages[J]. Water,2022,14(10):1568. [88] SCHOFIELD C. Ocean governance opportunities and challenges in the Indian Ocean[J]. Journal of the Indian Ocean Region,2022,18(2):85-86. [89] HATJE V, ANDRADE R L B, DE OLIVEIRA C C, et al. Pollutants in the south Atlantic Ocean:sources, knowledge gaps and perspectives for the decade of ocean science[J]. Frontiers in Marine Science,2021,8:644569. [90] 宋利明,许回,隋恒寿,等.金枪鱼延绳钓渔业中缓解海龟误捕方法研究进展[J].渔业现代化,2021,48(3):18-27. [91] LIN H, WANG J, ZHU J, et al. Evaluating the impacts of environmental and fishery variability on the distribution of bigeye tuna in the Pacific Ocean[J]. ICES Journal of Marine Science,2023,80(10):2642-2656. |
| [1] |
杨海霞, 李攀, 潘博一, 吴峰, 王学昉, 朱江峰. 中西太平洋南部海域延绳钓渔业海鸟兼捕特征[J]. 水产科学, 2026, 45(4): 562-572. |
| [2] |
许振琦, 汪金涛, 雷林, 陈新军. 中西太平洋长鳍金枪鱼渔场重心时空分布研究[J]. 水产科学, 2023, 42(4): 604-612. |
| [3] |
宫鹏, 王德兴, 袁红春, 陈冠奇, 吴若有. 基于LightGBM的南太平洋长鳍金枪鱼渔场预报模型研究[J]. 水产科学, 2021, 40(5): 762-767. |
| [4] |
周胜杰, 杨蕊, 于刚, 吴洽儿, 马振华. 青干金枪鱼和小头鲔循环水养殖生长研究[J]. 水产科学, 2021, 40(3): 339-346. |
| [5] |
杨胜龙,张忭忭,张衡,张胜茂,伍玉梅,周为峰,冯春雷. 黄鳍金枪鱼垂直移动及水层分布研究进展[J]. 水产科学, 2019, 38(1): 119-126. |
| [6] |
李世通,唐衍力. 瓦努阿图及周边海域金枪鱼延绳钓上钩率和渔场分布的初步研究[J]. 水产科学, 2017, 36(6): 714-721. |
| [7] |
杨胜龙,周为峰,伍玉梅,崔雪森,张衡. 西北印度洋大眼金枪鱼渔场预报模型建立与模块开发[J]. 水产科学, 2011, 30(11): 666-672. |
| [8] |
王学锋,孙华,卢伙胜. 中国中西太平洋金枪鱼围网渔业的可持续发展[J]. 水产科学, 2010, 29(2): 120-124. |
| [9] |
朱国平,许柳雄. 印度洋中西部大眼金枪鱼繁殖生物学的初步研究[J]. 水产科学, 2006, 25(7): 364-366. |
| [10] |
马振华,李霞. 中西太平洋金枪鱼资源[J]. 水产科学, 2006, 25(10): 537-540. |
|
|
|
|