长江沙市江段仔鱼空间分布及其生境因子研究

    Spatial distribution and related habitat factors of larval fishes in Shashi section of Changjiang River

    • 摘要: 仔鱼在河流中的漂流扩散过程与外界环境密切相关,该过程影响个体的生长与存活,进而决定种群补充量,是当前相关研究的热点问题。基于2018~2019年在长江沙市江段开展的漂流仔鱼及其生境因子同步采样调查数据,分析漂流仔鱼的种类组成、空间分布及其与生境因子的关系。结果表明:①两年间沙市江段采集到的仔鱼主要包括飘鱼、、银鮈、蛇鮈、鰕虎鱼类和四大家鱼等,发育期主要集中在眼黑色素出现期和鳔雏形期,其中飘鱼和类涵盖了所有发育阶段,且体长范围最宽。②仔鱼密度的空间分布呈现两岸较高、江心较低的特征,但河道中央与沿岸带之间无显著差异,变异系数进一步揭示采样断面的位置对仔鱼密度具有重要影响。③随机森林模型分析显示,仔鱼总密度在不同采样断面的分布主要受浮游植物Shannon多样性、水温、pH、水位、流量和离岸距离6种生境因子影响,模型预测效果良好。后续应关注不同种类和不同发育期仔鱼与多种生境因子的相互关系及其差异,探讨仔鱼种间特征对适宜栖息地的选择偏好,阐明水文调控影响鱼类早期资源补充的机制,以指导合理的水库生态调度与河流管理。

       

      Abstract: The drifting and dispersal process of fish larvae in rivers is closely related to external environmental factors. This process influences individual growth and survival, thereby determining population replenishment, making it a key focus of research. In this study, synchronous sampling of drifting larvae and habitat factors was conducted in the Shashi section of the Changjiang River from 2018 to 2019, aiming to investigate the composition and spatial distribution of drifting larvae and their relationship with habitat factors. The results showed that: ① The two-year study revealed that the larval species collected in the Shashi section mainly included Pseudolaubuca, Hemiculter sp., Squalidus argentatus, Saurogobio dabryi, Rhinogobius sp.and the four major Chinese carps. The developmental stages of the larvae were primarily concentrated in the fully developed eyes and rudimentary swim bladders.Pseudolaubuca, Hemiculter sp.covered all developmental stages and exhibited the widest body length ranges.② In terms of spatial distribution, larval density was higher near both riverbanks and lower in the middle of the river, but no significant difference was observed between the central and littoral zones. The coefficient of variation indicated that the location of the sampling section had a significant effect on the density of fish larvae.③ The random forest model showed that the distribution of total larval density across different sampling sections was mainly influenced by six habitat factors: phytoplankton Shannon diversity index, water temperature, pH, water level, discharge, and distance from the riverbank. The model demonstrated good predictive ability. Future research should focus on the interrelationships and differences between different species and developmental stages of fish larvae and multi-habitat factors, identify species-specific preferences for suitable habitats, and clarify the early fish resource replenishment mechanisms under hydrological regulation, so as to guide reasonable reservoir ecological operation and river management measures.

       

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