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首页|期刊导航|水生生物学报|水动力条件对黑水河库湾浮游植物群落结构和水环境的影响

水动力条件对黑水河库湾浮游植物群落结构和水环境的影响

田楚铭 肖淇文 齐青松 路斌 牟小雨 何婷 米武娟 范亚文 毕永红

水生生物学报2025,Vol.49Issue(5):121-133,13.
水生生物学报2025,Vol.49Issue(5):121-133,13.DOI:10.7541/2025.2024.0406

水动力条件对黑水河库湾浮游植物群落结构和水环境的影响

HYDRODYNAMIC CONDITIONS ON PHYTOPLANKTON COMMUNITY STRUCTURE AND WATER ENVIRONMENT IN THE HEISHUI RIVER RESERVOIR BAY

田楚铭 1肖淇文 1齐青松 2路斌 3牟小雨 3何婷 2米武娟 2范亚文 4毕永红2

作者信息

  • 1. 哈尔滨师范大学生命科学与技术学院黑龙江省水生生物多样性研究重点实验室,哈尔滨 150025||中国科学院水生生物研究所淡水生态与生物技术国家重点实验室,武汉 430072
  • 2. 中国科学院水生生物研究所淡水生态与生物技术国家重点实验室,武汉 430072
  • 3. 中国长江三峡集团公司流域枢纽运行管理中心,宜昌 443000
  • 4. 哈尔滨师范大学生命科学与技术学院黑龙江省水生生物多样性研究重点实验室,哈尔滨 150025
  • 折叠

摘要

Abstract

In order to understand the status of the ecosystem of the Heishui River Reservoir Bay after impoundment,a monthly survey of phytoplankton and water environment was carried out from June 2023 to May 2024.The results showed that the annual variation range of reservoir water level was from 773.51 to 824.16 m,with a total fluctuation of 43.64 m.The average water level during the impoundment period was 781.99 m,the high water level operation period was 807.02 m,the fade period was 800 m,and the low water level operation period was 773.54 m,which was signifi-cantly higher than that of the other three periods(P<0.001),and the fade period was significantly higher than that of the low water level operation period(P<0.05).During the survey period,the number of phytoplankton species showed a trend of S3>S2>S1.A total of 6 dominant species were found,including Pseudanabaena sp.,Plagioselmis sp.,Chrysochromulina parva,Cyclotella sp.,Achnanthes sp.,and Synedra acus var.Among them,Chrysochromulina parva Lackey became the dominant only during the impoundment period/fade period with significant water level fluctuations,and Pseudanabaena sp.became the dominant species during the high and low water level operation period with small water level fluctuations.The ecological type of phytoplankton community in the impoundment period was Chloro-phyta-Bacillariophyta-Pyrrophyta type,the Chlorophyta-Bacillariophyta-Cyanophyta type in the high-water/low-water operation period,and the Chlorophyta-Bacillariophyta-Cryptophyta type in the fade period.The monthly mean values of cell density showed the high-water operation period>the impoundment period>the low-water operation period>the fade period,and spatially S3>S2>S1.The α diversity index showed that the temporal difference was larger than the spatial difference.There were significant differences in phytoplankton community structure at different water levels(R2=0.2059,P=0.003).Cell density and the Shannon diversity index in addition to the flow rate were negatively corre-lated with hydrodynamic parameters(water level,flow rate,and velocity).The phytoplankton community had obvious characteristics of water period.With the rise of water level and its fluctuation,the network complexity and dynamic stability of phytoplankton communities decreased.Water environment factors significantly responded to hydrodynamic changes,and there was a significant negative correlation among total nitrogen(P=0.0002),nitrate nitrogen(P=0.0002),ammonia nitrogen(P=0.011),turbidity(P=0.014),water temperature(P=9.50208E-05),dissolved oxygen(P=7.12609E-05)and redox potential(P-4.31393E-06),and conductivity(P=0.024)and transparency(P=2.46463E-07).The results confirm that hydrodynamic conditions have a regulatory effect on plankton communities and water environ-ment.Managing hydrodynamic conditions can be used as an effective means to regulate algal communities and protect the water environment in reservoirs.This study provides a scientific basis for understanding the ecosystem status of the Heishui River Reservoir Bay and offers insights for ecological management of the Baihetan Reservoir.

关键词

水动力/浮游植物/水环境/影响因子/黑水河库湾

Key words

Hydrodynamics/Phytoplankton/Water environment/Impact factors/Heishui River Reservoir Bay

分类

生物学

引用本文复制引用

田楚铭,肖淇文,齐青松,路斌,牟小雨,何婷,米武娟,范亚文,毕永红..水动力条件对黑水河库湾浮游植物群落结构和水环境的影响[J].水生生物学报,2025,49(5):121-133,13.

基金项目

中国长江三峡集团有限公司项目(0704199)资助[Supported by the China Three Gorges Corporation(0704199)] (0704199)

水生生物学报

OA北大核心

1000-3207

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