长江流域资源与环境 >> 2023, Vol. 32 >> Issue (5): 950-960.doi: 10.11870/cjlyzyyhj202305006

• 自然资源 • 上一篇    下一篇

 雅砻江下游浮游植物群落结构时空变化特征及环境驱动因子

张俊芳1,陈  威1,宋以兴2,周连凤1,杨  英1,杨  涵1,马沛明1*   

  1. (1. 水利部中国科学院水工程生态研究所,水利部水工程生态效应与生态修复重点实验室,湖北 武汉 430079; 2. 雅砻江流域水电开发有限公司,四川 成都 610051)
  • 出版日期:2023-05-20 发布日期:2023-05-19

Spatio-temporal Variation of Phytoplankton Community Structure and Environmental Driving Factors in  Lower Reaches of Yalong River

ZHANG Jun-fang1, CHEN Wei1, SONG Yi-xing2, ZHOU Lian-feng1, YANG Ying1, YANG Han1, MA Pei-ming1   

  1. (1.Key Laboratory of Ecological Impacts of Hydraulic-Projects and Restoration of Aquatic Ecosystem of Ministry of Water Resources, Institute of Hydroecology, Ministry of Water Resources and Chinese Academy of Sciences, Wuhan 430079, China; 2. Yalong River Basin Hydropower Development Company, Ltd. Chengdu 610051, China)
  • Online:2023-05-20 Published:2023-05-19

摘要: 为了解雅砻江下游浮游植物在梯级水电站运行多年后的现状,于2020年春季和秋季分别对雅砻江下游流域的22个断面进行浮游植物和环境因子采样调查,分析浮游植物群落结构时空变化特征并探究其环境驱动因子。共采集鉴定出浮游植物7门10纲20目36科72属123种(包括变种),以硅藻门、绿藻门和蓝藻门为主,其中春季物种数明显多于秋季,共有的物种有55种,干流与支流物种数接近,共有的物种有82种。全年优势种有5种,分别为硅藻门的梅尼小环藻(Cyclotella meneghiniana)、尖针杆藻(Synedra acus)、极小曲壳藻(Achnanthidium minutissima)、隐藻门的尖尾蓝隐藻(Chroomonas acuta)和蓝藻门的尖头藻(Raphidiopsis sp.),春季优势种5种,秋季优势种4种,干流优势种6种,支流优势种4种。调查期间雅砻江下游浮游植物平均丰度为3.17×106 cells/L,秋季平均丰度高于春季,支流高于干流。相关分析显示:总磷(TP)、悬浮物(SS)、高锰酸盐指数(CODMn)、溶解氧(DO)、透明度(SD)、水温(WT)、硝氮(NO3-N)、总氮(TN)、叶绿素a (Chl.a)、电导率(EC)分别与不同浮游植物优势种呈显著的相关性。RDA结果显示:春季影响浮游植物的环境驱动因子是TN、磷酸盐(PO4)、WT、SD、DO,干流断面分成两部分,各支流断面明显分开;秋季影响浮游植物的环境驱动因子是WT、SD、SS。


Abstract: In order to understand the current situation of phytoplankton in the lower reaches of the Yalong River after the operation of cascade hydropower stations, 22 sections of the lower reaches of the Yalong River were sampled and investigated for phytoplankton and environmental factors in the spring and autumn of 2020, to analyze the spatial-temporal variation of phytoplankton community structure and explore environmental driving factors. A total of 123 species (including varieties) belonged to 7 phylum, 10 classes, 20 orders, 36 families and 72 genera were identified. They were mainly diatom, chlorophyta and cyanophyta. The number of species in spring was significantly higher than that in autumn, and there were 55 common species. The number of species in main stream was similar to that in tributary, and there were 82 common species. There were five dominant species in the whole year, namely Cyclotella meneghiniana, Synedra acus, Achnanthidium minutissima, Chroomonas acuta and Raphidiopsis sp. There were five dominant species in spring, four in autumn, six in main stream and four in tributary. During the investigation, the average abundance of phytoplankton in the lower reaches of Yalong River was 3.17×106  cells/L. The average abundance in autumn was higher than that in spring. The average abundance in four tributaries was higher than that in main stream. Correlation analysis showed that TP, SS, CODMn, DO, SD, WT, NO3-N, Chl.a, TN and EC were significantly correlated with different dominant phytoplankton species. RDA results showed that the environmental driving factors in spring were TN, PO4, WT, SD and DO. The main stream sections were divided into two parts, and the tributary sections were obviously separated. The environmental driving factors in autumn were WT, SD and SS.

No related articles found!
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] 吴浪, 周廷刚, 温莉, 刘晓璐, 朱晓波. 基于遥感数据的PM2.5与城市化的时空关系研究——以成渝城市群为例[J]. 长江流域资源与环境, 2018, 27(09): 2142 -2152 .
[2] 文高辉 杨钢桥. 耕地细碎化对农地整治农户土地权属调整意愿的影响研究[J]. 长江流域资源与环境, , (): 0 .
[3] 马剑锋, 佟金萍, 王慧敏, 王 圣. 长江经济带农业用水全局技术效率的空间效应研究[J]. 长江流域资源与环境, 2018, 27(12): 2757 -2765 .
[4] 谢贤鑫 陈美球 . 农户生态耕种采纳意愿及其异质性分析—基于TPB框架的实证研究[J]. 长江流域资源与环境, , (): 0 .
[5] 胡兴坤, 高 雷, 杨 浩, 刘绍平, 陈大庆, 段辛斌 . 长江中游黄石江段鱼类早期资源现状[J]. 长江流域资源与环境, 2019, 28(01): 60 -67 .
[6] 胡晓, 余英俊, 魏永才, 洪亮, 张永年, 石小涛, 吴睿. 基于过鱼效果评估的涵洞鱼道堰式挡板性能研究与分析[J]. 长江流域资源与环境, 2019, 28(01): 134 -143 .
[7] 秦立, 付宇文, 吴起鑫, 安艳玲, 刘瑞禄, 吕婕梅, 吴振宇. 赤水河流域土地利用结构对氮素输出的影响[J]. 长江流域资源与环境, 2019, 28(01): 175 -183 .
[8] 邢璐平, 方斌, 向梦杰, . 基于GWR模型的江苏省耕地集约利用水平时空变化特征及影响因素[J]. 长江流域资源与环境, 2019, 28(02): 376 -386 .
[9] 刘宇, 赵亮, . 基于过程—效应—功能—服务级联机制的森林减沙服务传输研究[J]. 长江流域资源与环境, 2019, 28(04): 883 -892 .
[10] 刘帅, 何青, 谢卫明, 郭磊城, 沈芳. 近15年来长江口控制站徐六泾悬沙变化特征研究[J]. 长江流域资源与环境, 2019, 28(05): 1197 -1204 .