禁捕初期徽水河中游及支流水系鱼类群落多样性时空格局

THE SPATIO-TEMPORAL PATTERN OF FISH COMMUNITY DIVERSITY IN THE NATIONAL AQUATIC GERMPLASM RESOURCE RESERVE FOR ENDEMIC FISH OF HUISHUI RIVER IN THE EARLY STAGE OF THE FISHING BAN

  • 摘要: 为掌握禁捕初期徽水河中游及支流水系鱼类群落多样性特征及年际变化, 于2021—2023年连续3年开展鱼类资源调查, 共采集鱼类59种, 隶属于7目12科40属, 其中鲤科(Cyprinidae)鱼类占绝对优势, 其物种数占比为67.80%, 数量及生物量占比依次为89.22%和91.65%; 生态类型以底栖生活、杂食性和产沉性卵鱼类占优, 物种数占比依次为55.93%、55.93%和44.07%。年际特征显示, 鱼类物种数变幅为35—47种, 其中共有优势种为宽鳍鱲和条纹光唇鱼; Margalef指数、Shannon-Wiener指数、Pielou指数总体均呈波动上升趋势, 变幅依次为4.18—5.34、1.97—2.37、0.55—0.62; Simpson指数则呈下降趋势, 变幅为0.19—0.31。丰度−生物量曲线分析表明, 鱼类群落受干扰程度总体呈下降趋势。聚类分析显示, 时间上2021年春、夏、冬季群落结构相似, 2022年冬季和2023年冬季群落结构相似, 其他时间聚为一类, 表明恢复进程具有显著的阶段性特征, 恢复初期(2021年)的响应模式具有独特性。空间上干流和支流总体上各自聚为一类, 说明由基础生境特征驱动的群落差异仍然存在并占主导地位。整体来看, 群落结构恢复在时间动态下受生境条件、季节差异多因子共同驱动, 呈现阶段性、空间异质性等生态响应特征。本研究揭示了禁捕初期徽水河中游及支流水系鱼类群落特征及多样性变动趋势, 为支撑禁捕效果评估和水生生物资源科学管护提供了依据。

     

    Abstract: To understand the diversity characteristics and interannual variations of the fish community in the middle reaches and tributaries of the Huishui River during the early stage of the fishing ban, fish resource surveys were conducted from 2021 to 2023. A total of 59 fish species were collected, belonging to 40 genera, 12 families, and 7 orders. Among them, Cyprinidae fish were in an absolute dominant position, accounting for 67.80% of the total species, 89.22% of total abundance, and 91.65% of total biomass. The ecological types are dominated by benthic, omnivorous, and spawn-laying fish, with the proportions of species being 55.93%, 55.93%, and 44.07% respectively. Interannual characteristics showed that species richness ranged from 35 to 49, among which the common dominant species were Zacco platypus and Acrossocheilus fasciatus. The Margalef index, Shannon-Wiener index, and Pielou index all showed a fluctuating upward trend overall, ranging from 4.18—5.34, 1.97—2.37, and 0.55—0.62, respectively, while the Simpson index showed a downward trend from 0.19 to 0.31. Cluster analysis showed that community structure in spring, summer, and winter of 2021 was similar, as was that in winter of 2022 and winter of 2023; all other sampling occasions grouped together. This suggests that community recovery followed distinct phases, with a unique response pattern in the early stage (2021). Spatially, the main stream and tributaries generally formed separate clusters, indicating that habitat-driven differences remained dominant. Overall, the recovery of community structure was driven by multiple factors under temporal dynamics, including habitat conditions and seasonal variation, exhibiting phased progression and spatial heterogeneity. This research clarifies the characteristics and diversity trends of the fish community in the Huishui River during the initial stage of the fishing ban, providing a basis for the assessment of the fishing ban effect and the scientific management of aquatic biological resources.

     

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