首页 | 本学科首页   官方微博 | 高级检索  
     检索      

Changes in nutrient uptake of phytoplankton under the interaction between sunlight and phosphate in the Changjiang (Yangtze) River Estuary
作者姓名:FANG  Tao  LI  Daoji  YU  Lihua  LI  Yun
作者单位:FANG Tao,LI Daoji,YU Lihua,and LI Yun State Key Laboratory of Estuarine and Coastal Research,East China Normal University,Shanghai 200062,China
基金项目:This study was funded by the Special Funds from the National Key Basic Research Program of P.R.China(Contribution No.2002CB412405).
摘    要:We conducted ship-board incubation experiments to investigate changes in nutrient uptake of phytoplankton under different phosphate concentrations and irradiances in the Changjiang River Estuary and its adjacent waters in China. Under 100% natural irradiance the uptake rates of phosphate, silicate, and nitrate were accelerated at high phosphate levels (1.84 μM), while under low irradiance (about 50% natural irradiance) their uptake rates were restrained at the high but stimulated greatly at the intermediate phosphate concentrations (1.26 μM), as the growth of phytoplankton, changes in nitrite and ammonium uptake didn't follow an obvious pattern. Our results also showed that there were linear relationships between nitrate, silicate and phosphate uptake at different phosphate concentrations under low and high irradiances, and the growth period of phytoplankton was prolonged both at the high phosphate concentrations under high irradiance and at the intermediate concentrations under low irradiance, suggesting that the limitation of phytoplankton growth mainly reflected changes in its growth period, and because no such environment (low irradiance and low phosphate concentrations) actually existed in a high turbidity zone, phytoplankton blooms hardly occurred there. In the absence of irradiance, denitrification occurred readily and phytoplankton was kept decreasing, which resulted in phosphate regeneration.

关 键 词:长江  日光  营养素  浮游植物
收稿时间:10 November 2003

Changes in nutrient uptake of phytoplankton under the interaction between sunlight and phosphate in the Changjiang (Yangtze) River Estuary
FANG Tao LI Daoji YU Lihua LI Yun.Changes in nutrient uptake of phytoplankton under the interaction between sunlight and phosphate in the Changjiang (Yangtze) River Estuary[J].Chinese Journal of Geochemistry,2008,27(2):161-170.
Authors:Tao Fang  Daoji Li  Lihua Yu  Yun Li
Institution:State Key Laboratory of Estuarine and Coastal Research, East China Normal University, Shanghai 200062, China
Abstract:We conducted ship-board incubation experiments to investigate changes in nutrient uptake of phytoplankton under different phosphate concentrations and irradiances in the Changjiang River Estuary and its adjacent waters in China.Under 100% natural irradiance the uptake rates of phosphate,silicate,and nitrate were accelerated at high phosphate levels(1.84 μM),while under low irradiance(about 50%natural irradiance)their uptake rates were restrained at the high but stimulated greatly at the intermediate phosphate concentrations(1.26μM),as the growth of phytoplankton,changes in nitrite and ammonium uptake didn't follow an obvious pattern.Our results alSO showed that there were linear relationships between nitrate,silicate and phosphate uptake at different phosphate concentrations under low and high irradiances,and the growth period of phytuplankton was prolonged both at the high phosphate concentrations under high irradiance and at the intermediate concentrations under low irradiance,suggesting that the limitation of phytoplankton growth mainly reflected changes in its growth period,and because no such environment(low-irradiance and low phosphate concentrations)actually existed in a high turbidity zone,phytoplankton blooms hardly occurred there.In the absence of irradiance,denitrification occurred readily and phytoplankton was kept decreasing,which resulted in phOSphate regeneratton.
Keywords:Changjiang River Estuary  sunlight  nutrient  phytoplankton
本文献已被 CNKI 维普 万方数据 SpringerLink 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号