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生态学杂志 ›› 2026, Vol. 45 ›› Issue (8): 2465-2475.doi: 10.13292/j.1000-4890.202608.001

• 水生态系统专栏 • 上一篇    下一篇

全球灯笼鱼物种组成和空间分布

刁晴晴1,2,3,陈作志1,2,田翰4,江艳娥1,2,张俊1,2*   

  1. (1中国水产科学研究院南海水产研究所, 广州 510300; 2农业农村部外海渔业可持续利用重点实验室, 广州 510300; 3大连海洋大学水产与生命学院, 辽宁大连 116032; 4中山大学海洋科学学院, 广东珠海 519082)
  • 出版日期:2026-08-10 发布日期:2026-08-12

Species composition and spatial distribution of global lanternfish.

DIAO Qingqing1,2,3, CHEN Zuozhi1,2, TIAN Han4, JIANG Yan’e1,2, ZHANG Jun1,2*   

  1. (1South China Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Guangzhou 510300, China; 2Key Laboratory for Sustainable Utilization of Open-sea Fishery, Ministry of Agriculture, Guangzhou 510300, China; 3College of Fisheries and Life Science, Dalian Ocean University, Dalian 116032, Liaoning, China; 4School of Marine Science, Sun Yatsen University, Zhuhai 519082, Guangdong, China).

  • Online:2026-08-10 Published:2026-08-12

摘要: 灯笼鱼在深海生态系统中扮演着至关重要的角色,并蕴含着巨大的潜在经济价值。本文通过整合现有资料,系统综述了灯笼鱼的物种多样性、海山和洋流对其物种组成及分布的影响,以及灯笼鱼昼夜垂直迁移等方面的研究进展,展望了未来研究方向。目前,全球记录灯笼鱼256种,隶属于2科(灯笼鱼科和新灯鱼科)37属。其中,灯笼鱼科含34属250种,以眶灯鱼属(Diaphus,79种)的物种丰富度最高。从灯笼鱼的物种多样性看,太平洋最高(177种),其次是大西洋(117种)和印度洋(89种),南大洋最低(11种)。南海和东海灯笼鱼的种类数分别为81种和15种。海山增加了海洋栖息地的复杂性,显著影响灯笼鱼的空间分布和物种多样性,并通过限制垂直迁移深度及改变食物供给调控灯笼鱼的分布。洋流区域的结构复杂性、纬度和初级生产力水平等因素影响着灯笼鱼的多样性格局。上升流驱动高生产力并促使灯笼鱼聚集,锋面效应与地形屏障共同作用进一步塑造区域灯笼鱼群落分布特征。热带-亚热带海域(如澳大利亚洋流区)灯笼鱼的物种多样性最高,黑潮和南赤道逆流等会导致物种多样性区域分布差异。灯笼鱼的昼夜分层行为对中尺度海洋学结构高度敏感,其响应模式存在种间差异和区域异质性,其主控因子包括光周期、饵料分布及洋流等。本文旨在深化对灯笼鱼及其在深海生态系统中角色的理解,为其资源利用提供科学支撑。


关键词: 眶灯鱼属, 物种丰富度, 昼夜垂直分布, 海山, 洋流

Abstract: Lanternfish are vital to the deep-sea ecosystems, with considerable economic potential. We review the research progress on species diversity of lanternfish, the effects of seamounts and ocean currents on their species composition and distribution, as well as the diel vertical migration of lanternfish. To date, 256 species of lanternfish have been documented globally, classified into 2 families (Myctophidae and Neoscopelidae) and 37 genera. Among these, the Myctophidae comprises 34 genera and 250 species, with genus Diaphus (79 species) exhibiting the highest species richness. From the perspective of species diversity, the Pacific Ocean hosts the greatest number of lanternfish species (177), followed by the Indian Ocean (117), the Atlantic Ocean (89), and the Southern Ocean (11). Notably, the South China Sea and the East China Sea host 81 and 15 species of lanternfish, respectively. Seamounts increase the complexity of marine habitats, significantly influencing the spatial distribution and species diversity of lanternfish, and regulating their distribution by limiting the vertical migration depth and altering food supply. The structural complexity of ocean current zones, geographical latitude, and primary productivity levels collectively shape the diversity patterns of lanternfish. Upwelling boosts productivity, drawing lanternfish to aggregate, while fronts and topographic barriers shape their regional distribution. Species diversity of lanternfish peaks in tropical-subtropical seas (e.g., the Australian Current Zone), with regional differentiation driven by currents such as the Kuroshio and South Equatorial Counter Currents. Lanternfish are highly sensitive to mesoscale oceanic structures in their diel stratification behavior, with interspecific differences and regional heterogeneity in their response modes. Controlling factors include photoperiod, prey distribution, and ocean currents. This article would help enhance understanding of lanternfish and their roles in the deep-sea ecosystem and thus provide scientific support for their resource utilization.

Key words: Diaphus, species richness, diel vertical distribution, seamount, ocean current