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生态学杂志 ›› 2010, Vol. 29 ›› Issue (12): 2477-2485.

• 研究报告 • 上一篇    下一篇

淀山湖蓝藻季节动态及其影响因子

汪益嫔1,由文辉2**,胡雪芹1,徐春燕1,童琰1   

  1. 1华东师范大学资源与环境科学学院| 上海 200062;2上海市城市化生态过程与生态恢复重点实验室| 上海 200062
  • 出版日期:2010-12-08 发布日期:2010-12-08

Seasonal dynamics of Cyanophyta and related affecting factors in Dianshan Lake.

WANG Yi-pin1, YOU Wen-hui2, HU Xue-qin1, XU Chun-yan1, TONG Yan1   

  1. 1School of Resources and Environmental Science, East China Normal University, Shanghai 200062, China|2Shanghai Key Laboratory of Urbanization and Ecological Restoration, Shanghai 200062, China
  • Online:2010-12-08 Published:2010-12-08

摘要: 为了掌握淀山湖蓝藻门浮游植物群落及其与环境因子的关系,于2009年5月—2010年4月在全湖选取9个点位对浮游植物群落进行了调查,应用CANOCO 4.5软件对获得的蓝藻门种类和环境因子数据进行典范对应分析(CCA),并绘制了物种与环境因子关系的二维排序图。结果表明:调查期间共出现蓝藻门15属46种,微囊藻属占69.9%,其次颤藻属占20.5%;蓝藻数量分布具有明显的季节性,密度变化范围为9.0×104~7.6×106 cells·L-1,蓝藻细胞密度与叶绿素a、总氮、营养状态指数TSIM(chl-a)和TSIM(TN)相关性较好,表明总氮浓度对蓝藻细胞密度影响较大,而密度和相对丰度影响着湖泊中的叶绿素含量和透明度等;CCA分析表明,春季水体受水温、生物需氧量、总磷影响较大,夏季水体受总磷、BOD5、透明度影响较大,秋季环境因子影响类型较为集中但不显著,冬季各环境因子影响较夏、秋两季明显,水体与铵态氮、透明度(SD)均呈正相关;分析了蓝藻中作为全湖优势种类的铜绿微囊藻和弱细颤藻与环境因子之间的关系,前者与水温、总氮呈显著正相关,与pH值呈现负相关;后者四季均有出现,数量变化受水温影响最大,在夏季与较低的pH值有关;环境因子改变与蓝藻季节演替内在联系表现为蓝藻群落在春冬2季受水温影响最大,夏季受TP、TN影响显著,秋季则与水体的透明度相关性最大。本实验对于理解淀山湖蓝藻优势种季节演替特征及对其开展监测治理具有指导意义。

关键词: 栗瘿蜂, 虫瘿, 发生量, 板栗, 天敌

Abstract: In order to understand the Cyanophyta community and its relations with environmental factors in Dianshan Lake, a survey was conducted at nine sampling sites from May 2009 to April 2010. Canonical correspondence analysis (CCA) was made to explore the relationships between recorded Cyanophyta species and environmental factors by CANOCO 4.5, and ordination diagrams were drawn with the results of CCA. During the study period, a total of 15 genera and 46 species of Cyanophyta were recorded, among which, Microcystis spp. made up of 69.9%, followed by Oscillatoria spp., accounting for 20.55%. The Cyanophyta had a distinct seasonal abundance, ranging from 9.0×104 to 7.6 ×106 cells·L-1. The cell density of cyanobacteria had a strong relevance to water chlorophyll a, total N (TN), and trophic state indices TSIM (chl-a) and TSIM (TN), indicating that the water TN content in the lake greatly affected the algal cell density, and in return, the algal cell density and relative abundance affected the water chlorophyll content and transparency. CCA analysis showed that in spring, the water body was more greatly affected by water temperature, biological oxygen demand, and TP, while in summer, TP, biological oxygen demand, and transparency were the most important environmental factors affecting the water body. However, none of the factors played the most important role in affecting Cyanophyta community in autumn. In winter, the Cyanophyta species positively correlated with water NH4+-N and TN. M. aeruginosa and O. tenuis were regarded as the dominant species of the whole lake algae species. M. aeruginosa was significantly positively correlated with water temperature and TN and negatively correlated with water pH, while
O. tenuis appeared in four seasons and was significantly affected by water temperature and pH. The relationships between algae dynamics and environmental factors were as follows: in spring and winter, cyanobacterial communities were most affected by water temperature; in summer, they were significantly affected by water TP and TN; while in autumn, water transparency was the most relevant factor. This study showed a highlight to understand the seasonal dynamics of cyanobacteria, and could help manage the environment of lake ecosystems.

Key words: Dryocosmus kuriphilus, Cecidum, Occurrence quantity, Chestnut, Natural enemy