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贾秋菊, 帅方敏, 李捷. 基于耳石微化学的珠江水系日本鳗鲡洄游特征研究[J]. 水生生物学报. DOI: 10.7541/2024.2023.0427
引用本文: 贾秋菊, 帅方敏, 李捷. 基于耳石微化学的珠江水系日本鳗鲡洄游特征研究[J]. 水生生物学报. DOI: 10.7541/2024.2023.0427
JIA Qiu-Ju, SHUAI Fang-Min, LI Jie. MIGRATION CHARACTERISTICS OF JAPANESE EEL IN THE PEARL RIVER SYSTEM BASED ON OTOLITH MICROCHEMISTRY[J]. ACTA HYDROBIOLOGICA SINICA. DOI: 10.7541/2024.2023.0427
Citation: JIA Qiu-Ju, SHUAI Fang-Min, LI Jie. MIGRATION CHARACTERISTICS OF JAPANESE EEL IN THE PEARL RIVER SYSTEM BASED ON OTOLITH MICROCHEMISTRY[J]. ACTA HYDROBIOLOGICA SINICA. DOI: 10.7541/2024.2023.0427

基于耳石微化学的珠江水系日本鳗鲡洄游特征研究

MIGRATION CHARACTERISTICS OF JAPANESE EEL IN THE PEARL RIVER SYSTEM BASED ON OTOLITH MICROCHEMISTRY

  • 摘要: 为了解珠江水系日本鳗鲡(Anguilla japonica)洄游生态特征, 有效保护鳗鲡野生种群, 采集了柳州、合山、武宣、桂平、梧州等11个淡水生境以及珠海1个河口生境共155尾日本鳗鲡, 利用电子探针微区分析仪测定耳石中的Sr、Ca元素比值, 对耳石微化学Sr/Ca进行分析, 结果发现珠江水系日本鳗鲡具有“海水-淡水”、“海水-河口-淡水”、“海水-河口-海水-河口-淡水”、“海水-河口-淡水-河口-淡水”等多种洄游模式。但总体而言, 最终都会洄游到淡水中育肥。这说明珠江水系的日本鳗鲡具有适应不同栖息地和盐度的能力, 在不同水域之间表现出灵活的洄游策略, 同时也说明了淡水栖息地保护的重要性。

     

    Abstract: In order to understand the migratory ecological characteristics of Japanese eel (Anguilla japonica) in the the Pearl River water system and effectively protect the wild population of eel, a total of 155 Japanese eels were collected from 11 freshwater habitats such as Liuzhou, Heshan, Wuxuan, Guiping, Wuzhou, and one estuary habitat in Zhuhai. Using electron probe microanalysis to determine the ratio of Sr and Ca elements in otoliths and analyze the micro chemical Sr/Ca of otoliths, this study found that Japanese eel in the Pearl River has many migration patterns, such as “seawater - freshwater”, “seawater - estuarine - freshwater” , “seawater - estuarine - seawater - estuarine - freshwater”, and “seawater - estuarine - freshwater - estuarine - freshwater”. However, these eels ultimately towards freshwater habitats for the purpose of fattening. This observation underscores the adaptability of Japanese eel in the Pearl River to diverse habitats and salinity levels, exemplifying their flexible migration strategies across different water bodies. Furthermore, it accentuates the critical importance of safeguarding freshwater habitats.

     

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