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一种新的海水中石莼属海藻显微阶段个体数定量方法及在黄海绿潮爆发过程中的应用
引用本文:刘峰,逄少军,单体锋,徐娜,高素芹,孙松.一种新的海水中石莼属海藻显微阶段个体数定量方法及在黄海绿潮爆发过程中的应用[J].科学通报,2010,55(6):468-473.
作者姓名:刘峰  逄少军  单体锋  徐娜  高素芹  孙松
作者单位:中国科学院海洋研究所实验海洋学重点实验室;中国科学院研究生院;中国科学院海洋研究所海洋生态与环境重点实验室;山东胶州湾生态系统国家野外科学观测研究站;
基金项目:科技部科技支撑计划(编号:2008BAC49B01);;国家自然科学基金(批准号:40821004)资助项目
摘    要:本文介绍了一种准确定量海水中石莼属(Ulva)海藻显微阶段个体数的方法, 同时应用这一方法在2009年黄海绿潮形成的初期、爆发期和后期对黄海海域水样进行了4个航次的调查研究. 结果表明, 表层海水的显微阶段个体数量较多, 随着深度的增加, 有逐渐递减的趋势; 8月份平均每升海水中的显微阶段的个体数量较5月份多. 这一定量方法将在预测海水中潜在绿潮海藻生物量和预测绿潮爆发规模方面有广阔的应用前景.

关 键 词:石莼属    绿潮    显微阶段    浒苔
收稿时间:2009-06-03

A novel method to quantify the microscopic stages of Ulva species in seawater and its applications in forcasting green tides of the Yellow Sea
LIU Feng,PANG ShaoJun,SHAN TiFeng,XU Na,GAO SuQin & SUN Song, Key Laboratory of Experimental Marine Biology.A novel method to quantify the microscopic stages of Ulva species in seawater and its applications in forcasting green tides of the Yellow Sea[J].Chinese Science Bulletin,2010,55(6):468-473.
Authors:LIU Feng    PANG ShaoJun  SHAN TiFeng  XU Na  GAO SuQin & SUN Song  Key Laboratory of Experimental Marine Biology
Institution:LIU Feng1,2,PANG ShaoJun1*,SHAN TiFeng1,XU Na1,GAO SuQin1 & SUN Song3,41 Key Laboratory of Experimental Marine Biology,Institute of Oceanology,Chinese Academy of Sciences,Qingdao 266071,China,2 Graduate University of Chinese Academy of Sciences,Beijing 100049,3 Key Laboratory of Marine Ecology , Environmental Sciences,4 Jiaozhou Bay National Marine Ecosystem Research Station
Abstract:This article describes a method accurately quantifying Ulva individuals at the microscopic stages in seawater. The method was successfully applied in the field investigations at early, middle and ending stages of the large-scale green tide in the Yellow Sea in 2009 in 4 open-sea cruises, respectively. Results showed that, at the same station, more Ulva microscopic-stage individuals were detected in the surface seawater than at other water depths. The quantities of the detected Ulva individuals decreased wit...
Keywords:Ulva prolifera  green tide  microscopic stage  algal bloom  
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