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[太湖梅梁湾浮游植物叶绿素a含量及初级生产力]

[Chlorophyll a content and primary productivity of phytoplankton in Meiliang Bay of Taihu Lake].

作者信息

Zhang Yunlin, Qin Boqiang, Chen Weimin, Gao Guang, Chen Yuwei

机构信息

Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing 210008, China.

出版信息

Ying Yong Sheng Tai Xue Bao. 2004 Nov;15(11):2127-31.

Abstract

Based on the investigations on primary productivity of phytoplankton and related factors at four stations in Meiliang Bay of Taihu Lake from May 1998 to August 1999, this paper studied the distribution of phytoplankton chlorophyll a, its primary productivity, and their relationships with environmental factors. The results showed that there were obvious temporal and spatial differences in chlorophyll a and primary productivity. The high values of chlorophyll a content and primary productivity were recorded in spring and summer. Generally, chlorophyll a content and primary productivity decreased from inner to outer in the bay. The vertical profile of primary productivity showed that the maximum of primary productivity was recorded at 20-50 cm water depth in spring, summer and autumn, while there was no remarkable difference in winter. The primary productivity exponentially increased with water temperature from 10 to 30 degrees C. There was a significant positive correlation between chlorophyll a content and primary productivity. The correlation coefficients between nutrients and primary productivity varied greatly, which presented that nutrient was not the limiting factor for phytoplankton growth. The analysis of P-I curves based on different photosynthesis-irradiance models showed that obvious light inhibition was occurred at surface water in spring and summer.

摘要

基于1998年5月至1999年8月对太湖梅梁湾4个站点浮游植物初级生产力及相关因子的调查,研究了浮游植物叶绿素a的分布、初级生产力及其与环境因子的关系。结果表明,叶绿素a和初级生产力存在明显的时空差异。叶绿素a含量和初级生产力在春季和夏季较高。一般来说,海湾内叶绿素a含量和初级生产力从内向外递减。初级生产力的垂直分布表明,春季、夏季和秋季初级生产力最大值出现在水深20 - 50厘米处,而冬季无显著差异。初级生产力在水温10至30摄氏度范围内随水温呈指数增长。叶绿素a含量与初级生产力之间存在显著正相关。营养盐与初级生产力之间的相关系数差异很大,表明营养盐不是浮游植物生长的限制因素。基于不同光合作用 - 光强模型的P - I曲线分析表明,春季和夏季表层水出现明显的光抑制现象。

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