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青海湖裸鲤早期资源现状及其与环境因素关系的研究OA

Study on the early-life stage resource status of Gymnocypris przewalskii in Qinghai Lake and its relationship with the environment factors

中文摘要英文摘要

[目的]青海湖裸鲤(Gymnocypris przewalskii)早期资源(受精卵、仔鱼)对其种群恢复尤为重要.本文研究青海湖主要入湖河道中青海湖裸鲤早期资源现状与环境之间的关系,为其早期资源保护及水利工程生态调度提供科学依据.[方法]在 2018 年—2024 年期间,每年的 6 月—9 月根据每条河的实际情况,对布哈河、沙柳河、泉吉河、黑马河及哈尔盖河监测断面使用圆锥网进行青海湖裸鲤早期资源监测,每月监测 3 次,每次监测 12 频次,持续 24 h.除此之外,对布哈河从 6 月—9 月进行常规监测,每天早、中、晚各监测1 次.[结果]2018 年—2024 年布哈河累计监测到仔鱼 6 082 尾、受精卵 2 671 颗,早期资源平均漂流密度为(7.6×10−1±0.61)尾(颗)/m3,累计早期资源量为 20.22×108 尾(颗);沙柳河累计监测到仔鱼 14 962 尾、受精卵 6 777 颗,早期资源平均漂流密度为(2.0×10−1±0.09)尾(颗)/m3,累计早期资源量为1.89×108 尾(颗);泉吉河累计监测到仔鱼163 339 尾、受精卵 6 791 颗,早期资源平均漂流密度为(6.5×10−1±0.49)尾(颗)/m3,累计早期资源量为 2.55×108 尾(颗);黑马河累计监测到仔鱼 6 082 尾、受精卵 5 359 颗,早期资源平均漂流密度为(1.07±0.49)尾(颗)/m3,累计早期资源量为 0.22×108 尾(颗);哈尔盖河累计监测到仔鱼 7 365 尾、受精卵 3 531 颗,早期资源平均漂流密度为(1.5×10−1±0.06)尾(颗)/m3,累计早期资源量为 0.82×108 尾(颗).6 月受精卵数量占受精卵和仔鱼总数的 94.2%~98.3%,7 月受精卵占比趋于平衡,8 月受精卵占比为 0.1%~9.6%.5 条河流仔鱼、受精卵的昼夜节律存在显著共性,其中仔鱼规律高度统一,受精卵规律呈现"部分统一、部分无规律"特征.影响早期资源发生量的主要环境因子为光照(P<0.01).[结论]青海湖裸鲤早期资源发生的主要场所为布哈河;沙柳河和哈尔盖河是早期资源量重要的补充.仔鱼受昼夜节律影响比较明显,主要发生时间段在夜晚;影响早期资源发生量的主要环境因子为光照.研究结果为青海湖渔业生态可持续发展提供科学支撑.

[Objective]The early-life stage resources(fertilized eggs and larvae)of Gymnocypris przewalskii are particularly crucial for population recovery.This study investigates the relationship between the status of G.przewalskii early-life stage resources and environmental factors in the main inlet rivers of Qinghai Lake,aim-ing to provide a scientific basis for the protection of its early resources and for the ecological operation of water conservancy projects.[Methods]From 2018 to 2024,monitoring was conducted annually from June to September.Based on the actual conditions of each river,conical nets were deployed at monitoring sections in the Buha River,Shaliu River,Quanji River,Heima River,and Ha'ergai River to monitor these resources.Monit-oring was performed 3 times per month,with 12 sampling sessions each time,lasting 24 hours.Additionally,routine monitoring was carried out in the Buha River from June to September,with one session each in the morning,noon,and evening daily.[Results]From 2018 to 2024,the Buha River recorded a total of 6 082 larvae and 2 671 fertilized eggs,with an average drifting density of(7.6×10−1±0.61)ind(grains)/m3 and a cumu-lative resource amount of 20.22×108 ind(grains).The Shaliu River recorded 14 962 larvae and 6 777 fertilized eggs,with an average drifting density of(2.0×10−1±0.09)ind(grains)/m3 and a cumulative resource amount of 1.89×108 ind(grains).The Quanji River recorded 163 339 larvae and 6 791 fertilized eggs,with an average drifting density of(6.5×10−1±0.49)ind(grains)/m3 and a cumulative resource amount of 2.55×108 ind(grains).The Heima River recorded 6 082 larvae and 5 359 fertilized eggs,with an average drifting density of(1.07±0.49)ind(grains)/m3 and a cumulative resource amount of 0.22×108 ind(grains).The Ha'ergai River recorded 7 365 larvae and 3 531 fertilized eggs,with an average drifting density of(1.5×10−1±0.06)ind(grains)/m3 and a cumulative resource amount of 0.82×108 ind(grains).In June,fertilized eggs accounted for 94.2%–98.3%of the total number of fertilized eggs and larvae.In July,the numbers of fertilized eggs and lar-vae tended to balance,while in August,fertilized eggs accounted for only 0.1%–9.6%.Significant commonalit-ies were observed in the diurnal rhythms of larvae and fertilized eggs across the five rivers.Specifically,the patterns for larvae were highly consistent,whereas those for fertilized eggs exhibited a"partially consistent,partially irregular"characteristic.The primary environmental factor influencing the abundance of early-life stage resources was light intensity(P<0.01).[Conclusion]The Buha River is the primary site for the occur-rence of G.przewalskii early-life stage resources,while the Shaliu River and Ha'ergai River serve as important supplementary sources.Larvae exhibit a distinct diurnal rhythm,predominantly occurring at night.Light intens-ity is the key environmental factor influencing the abundance of early-life stage resources.The findings of this study provide scientific support for the sustainable ecological development of the Qinghai Lake fishery.

付生云;闫丽婷;吴洪芳;罗颖;祁洪芳;俞录贤;吕伟刚;田文根;郭若晨;崔恩慧;张涛

青海湖裸鲤救护中心,青海 西宁 810016||青海省青海湖裸鲤繁育与保护重点实验室,青海 西宁 810016青海湖裸鲤救护中心,青海 西宁 810016青海湖裸鲤救护中心,青海 西宁 810016青海湖裸鲤救护中心,青海 西宁 810016||青海省青海湖裸鲤繁育与保护重点实验室,青海 西宁 810016青海湖裸鲤救护中心,青海 西宁 810016||青海省青海湖裸鲤繁育与保护重点实验室,青海 西宁 810016青海湖裸鲤救护中心,青海 西宁 810016||青海省青海湖裸鲤繁育与保护重点实验室,青海 西宁 810016青海湖裸鲤救护中心,青海 西宁 810016青海湖裸鲤救护中心,青海 西宁 810016青海湖裸鲤救护中心,青海 西宁 810016青海湖裸鲤救护中心,青海 西宁 810016青海湖裸鲤救护中心,青海 西宁 810016

农业科技

青海湖裸鲤早期资源资源现状环境因素

Gymnocypris przewalskiiearly-life stage resourcesresource statusenvironmental factors

《渔业研究》 2026 (2)

200-213,14

国家科技资源共享服务平台建设运行项目(2025)青海省重点研发与转化计划项目(2024-SF-152)

10.14012/j.jfr.2025061

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