帮助 关于我们

返回检索结果

西藏尼洋河水生生物群落时空动态及与环境因子的关系:1. 浮游植物
Spatial-temporal dynamics of aquatic organism community and their relationships to environment in Niyang River, Tibet:1. Phytoplankton

查看参考文献52篇

刘海平 1   叶少文 2   杨雪峰 3   张良松 4   钟国辉 5   李钟杰 2 *  
文摘 于2008-2009年按照季节调查了西藏尼洋河浮游植物群落的组成、丰度和多样性,并运用多元统计方法定量分析了浮游植物的空间和季节变化特征及其与主要环境因子之间的关系.结果显示,尼洋河浮游植物共计7门29科48属,其中硅藻为优势浮游藻类.浮游植物Shannon-Wiener多样性指数(Pielou均匀度指数)在尼洋河中游(尼洋河下游)最高,其他河段呈下降趋势,符合中间高度膨胀假说.尼洋河沿程浮游植物的总丰度、物种丰富度、Shannon-Wiener多样性指数以及Pielou均匀度指数不存在显著差异,夏季的浮游植物物种丰富度与其他季节的存在显著差异,夏季总丰度与秋、冬季的存在显著差异,冬季的浮游植物Shannon-Wiener多样性指数与春季的存在显著差异,冬季的均匀度指数与其他3个季节的存在显著差异.尼洋河浮游植物季节演替依赖于外源性水源补充,沿程演替则与河道底质有着很大关系.典范对应分析(CCA)表明,尼洋河硅藻门舟形藻科的藻类与理化因子铵态氮、表层pH、表层水温相关,部分蓝藻以及绿藻与水质理化因子也存在着关联.分类回归树(CART)模型预测了尼洋河着生藻类时空分布与主要环境因子之间的定量关系,尼洋河浮游植物群落总丰度和均匀度指数受pH值影响较大,pH值低于8.0的水域浮游植物均匀度指数比pH值高于8.0的水域大,尼洋河浮游植物Shannon-Wiener多样性指数受到河道底质影响较大,底质为黏土的水域浮游植物Shannon-Wiener多样性指数较底质为砂石的大.这些关键环境因子对尼洋河水域浮游植物的时空变化有着重要的指示作用,建议加强对浮游植物及这些环境因子的关注,保障尼洋河水域生态环境的可持续发展.
其他语种文摘 We have investigated seasonally the constitution, abundance and diversity of phytoplankton in Niyang River, the branch of the Yarlung Zangbo River, Tibet from 2008 to 2009, and taken quantitative analyses to study spatio-temporal characteristics of phytoplankton and their responses to environment using multivariate statistics method. The results are as follows. Firstly, phytoplankton community in Niyang River belongs to 7 phyla, 29 families and 48 genus, among them, Bacillariophyta is the dominant phytoplankton. Secondly, Shannon-Wiener diversity index for Niyang River is suitable to the theory about mid-altitude bulge, which is Shannon-Wiener diversity index (or Pielou evenness index) higher at the middle of Niyang River (or lower reaches of Niyang River), descending at either side of Niyang River. Thirdly, using Duncan comparison method to judge the difference among sampling sites and seasons for species richness, total abundance, Shannon-Wiener diversity index and Pielou evenness index, there is no significant difference among four sampling sites for four indices mentioned above. However, there is significant difference between the summer and other three seasons for species richness and total abundance. There is also significant difference between the winter and spring for Shannon-Wiener diversity index, and between the winter and other three seasons for Pielou evenness index. Seasonal succession of phytoplankton in Niyang River is mainly defendant on the supplement of exogenous water source, succession along Niyang River have a close relation with substrate of riverbed. Fourthly, based on the CCA method, there is a close relationship between water physical-chemical property and Naviculaceae algae from Bacillariophyta, and between water physical-chemical property and partial algae from Cyanophyta and Chlorophyta. Finally, we predicted the relationships between the total abundance of phytoplankton and environment factors based on CART method, the relationships between Shannon-Wiener diversity index of phytoplankton and environment factors based on CART method, and the relationships between Pielou evenness index of phytoplankton and environment factors based on CART method. The results reveal that pH value has a strong influence on the total abundance and Pielou evenness index of phytoplankton community in Niyang River. Pielou evenness index of phytoplankton is high at Niyang River sections where pH values are below 8 than those sections where pH values exceed 8. Shannon-Wiener diversity index of phytoplankton community in Niyang River is mainly influenced by substrate of Niyang River, specifically, Shannon-Wiener diversity index for the areas where the substrate is sandstone is higher than those areas where the substrate is clay. The paper also recommends paying close attention to phytoplankton and the environment factors mentioned above owing to their important indication function, in order to warrantee the sustainable development of Niyang River aquatic ecology.
来源 湖泊科学 ,2013,25(5):695-706 【核心库】
DOI 10.18307/2013.0511
关键词 西藏 ; 尼洋河 ; 浮游植物 ; 时空动态 ; 主成分分析 ; 典范对应分析 ; 分类回归树
地址

1. 西藏大学农牧学院, 淡水生态与生物技术国家重点实验室, 林芝, 860000  

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. 锡林浩特市第六中学, 锡林浩特, 026000  

4. 福建省水产技术推广总站, 福州, 350003  

5. 西藏大学农牧学院, 林芝, 860000

语种 中文
文献类型 研究性论文
ISSN 1003-5427
学科 植物学
基金 西藏科技厅地区基金重点项目资助
文献收藏号 CSCD:4951252

参考文献 共 52 共3页

1.  秦大河. 中国气候与环境演变(上卷):中国气候与环境的演变与预测,2005:389-390 被引 1    
2.  Ju J T. Hydrodynamic process of Tibetan Plateau lake revealed by grain size: Case study of Pumayum Co. Chinese Sci Bull,2012,57(19):2433-2441 被引 4    
3.  贺桂芹. 西藏高寒湿地生态系统服务功能价值评估及湿地保护对策研究[学位论文],2007 被引 1    
4.  Wu W H. Mineralogy, major and trace element geochemistry of riverbed sediments in the headwaters of the Yangtze, Tongtian River and Jinsha River. J Asian Earth Sci,2011,40(2):611-621 被引 6    
5.  Wu W H. Geochemistry and provenance of bed sediments of the large rivers in the Tibetan Plateau and Himalayan region. Int J Earth Sci,2012,101(5):1357-1370 被引 3    
6.  Bai J H. Spatial distribution and ecological risk assessment of heavy metals in surface sediments from a typical plateau lake wetland, China. Ecol Model,2009,222(2):301-306 被引 2    
7.  谢虹. 青藏高原蒸散发及其对气候变化的响应(1970-2010)[学位论文],2012 被引 1    
8.  张云红. 青藏高原气候变化及其生态效应分析. 青海大学学报:自然科学版,2011,29(4):18-22 被引 3    
9.  沈永平. 长江-黄河源区未来气候情景下的生态环境变化. 冰川冻土,2002,24(3):308-314 被引 53    
10.  黄琦. 基于GIS的三江源地区生态环境变化与人类活动影响研究[学位论文],2012 被引 1    
11.  秦大河. 中国气候与环境演变(下卷):气候与环境变化的影响与适应、减缓对策,2005:98-109 被引 4    
12.  翟红娟. 纵向岭谷区水电工程胁迫对河流生态完整性影响的研究[学位论文],2009 被引 1    
13.  段顺琼. 云南高原湖泊地区水资源脆弱性评价研究. 中国农村水利水电,2011,9:55-59 被引 1    
14.  胡元林. 高原湖泊流域可持续发展研究. 生态经济,2011,236(3):168-171,183 被引 3    
15.  洛桑·灵智多杰. 青藏高原水资源的保护与利用. 资源科学,2005,27(2):23-27 被引 6    
16.  关志华. 西藏河流与湖泊,1984 被引 47    
17.  沈红保. 西藏尼洋河鱼类组成调查与分析. 河北渔业,2008,173(5):51-54,60 被引 7    
18.  刘建康. 高级水生生物学,1999:176-198 被引 8    
19.  胡莲. 三道河水库浮游植物群落结构特征及其渔产潜力分析. 水生态学志,2012,33(4):90-95 被引 1    
20.  刘足根. 赣江流域浮游植物群落结构与功能类群划分. 长江流域资源与环境,2012,21(3):375-384 被引 23    
引证文献 19

1 刘海平 西藏尼洋河水生生物群落时空动态及与环境因子关系:2. 着生藻类 湖泊科学,2013,25(6):907-915
被引 12

2 刘海平 西藏尼洋河水生生物群落时空动态及与环境因子关系:3.大型底栖动物 湖泊科学,2014,26(1):154-160
被引 10

显示所有19篇文献

论文科学数据集
PlumX Metrics
相关文献

 作者相关
 关键词相关
 参考文献相关

版权所有 ©2008 中国科学院文献情报中心 制作维护:中国科学院文献情报中心
地址:北京中关村北四环西路33号 邮政编码:100190 联系电话:(010)82627496 E-mail:cscd@mail.las.ac.cn 京ICP备05002861号-4 | 京公网安备11010802043238号