长江流域资源与环境 >> 2014, Vol. 23 >> Issue (05): 700-.doi: 10.11870/cjlyzyyhj201405015

• 生态环境 • 上一篇    下一篇

水温分层对香溪河库湾浮游植物功能群季节演替的影响

田泽斌,刘德富,姚绪姣,方丽娟,杨正健   

  1. (1 三峡大学水利与环境学院,湖北 宜昌 443002; 2 武汉大学水利水电学院,湖北 武汉 430072)
  • 出版日期:2014-05-20

EFFECT OF WATER TEMPERATURE STRATIFICATION ON THE SEASONAL SUCCESSION OF PHYTOPLANKTON FUNCTION GROUPING IN XIANGXI BAY

TIAN Zebin1,LIU Defu1,YAO Xujiao1,FANG Lijuan1,YANG Zhengjian2     

  1.  (1.College of Hydroelectric & Environmental Engineering,China Three Gorges University,Yichang 443002,China;
    2.School of Water Resources & Hydropower Engineering,Wuhan University,Wuhan 430072,China)
  • Online:2014-05-20

摘要:

三峡水库水环境问题近年来引起社会广泛关注,以浮游植物功能群为基础,通过对2010年1~12月香溪河库湾水温、浮游植物等进行跟踪监测,探究支流库湾浮游植物群落结构演替趋势及其影响因子。结果表明:香溪河库湾2010年共出现18个浮游植物功能群,其中B、X1、P、Y、X2、D、LO、J、MP、G是代表性功能群;水温分层的季节性发育和消失是浮游植物群落结构演替的主要影响因素;冬季以耐受水温及光照限制的CS/S策略藻种为主;春季弱分层时,CR/R策略藻种适宜生长;夏季汛期时,呈现CR/R/C/CS多种策略藻种混生格局,强分层时,适宜稳定生境的S型策略藻种占据优势;秋季分层被打破,群落结构演替为耐受频繁波动环境的R型群落格局占优势

Abstract:

Since the initial filling of Three Gorges Reservoir (TGR) in 2003,serious algal blooms have occurred in its tributary bays.The number of tributaries involved showed significant increase,as well as the intensity and frequency of algal blooms.Cyanobacteria blooms have been observed in a numbers of tributary bays and threatened the drinking water security of residents in the TGR region.It was obvious that algal blooms dominant species tended to diversification and seasonal dynamics indicated a trend of changes from the lake type to the river type.TGR water environmental problems have aroused widespread concern recent years.
Reynolds believed that energy utilization and nutrient uptake of algae had a close relationship to its physiological characteristics of morphology,growth characteristics,which decided its growth strategy in the habitat; while similar adaptability of algae species could coexist and form a particular species collection,growths succession accompanied with changes in habitats and present specific ecological model.
Because the tributaries of TGR are deep backwater bay,the mainstream and tributaries of water temperature are different and the difference of particle concentration leads to stratification of density.Significant water temperature stratification exists in tributary bays during spring and summer but the density current may modify the natural condition because the layer receiving the density current intrusion is well mixed.The continuing increase of water level in TGR during the late fall impoundment period influenced plunging depth of the density current and the vertical light and heat conditions of the water body,inducing the succession of the phytoplankton community structure.
This study was carried out based on algae ecological functions and aimed to explore the tributaries of the bay,the phytoplankton community structure in successional trends and the impact factor through monitoring water temperature,phytoplankton and other environment factors from January to December in 2010.The results showed that 18 functional groups were classified based on the phytoplankton species data.B,X1,P,Y,X2,D,Lo,J,MP,G were the common species in Xiangxi Bay.Seasonal development and disappearance of the water temperature stratification were the main factors affecting succession of phytoplankton community structure.In winter,due to the limit of water temperature and light intensity,community structure presented mainly the CS/S strategy.As weak stratification in spring,nutrients was adequate,CR/R strategy species could take advantage.In summer flood season,the CR/R/C/CS strategy algae mixed state was showed,for the reason that on the condition of water temperature stratified,a large number of nutrients were consumed which exacerbated species competition,and the community structure succession to the direction of tolerance nutrient limitation environment,therefore,suitable for the relative stable environment for the growth of S strategy to take advantage.In fall,the increase of disturbance broke the stratification,benefiting R strategy with   more tolerance to the frequent fluctuations in shortterm environment for the growth advantage.

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