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作 者:王萌[1] 李瑞香[1] 朱明远[1] 陈炳章[1]
机构地区:[1]国家海洋局第一海洋研究所
出 处:《海洋科学进展》2006年第4期489-494,共6页Advances in Marine Science
基 金:国家重点基础研究发展规划项目--我国近海有害赤潮发生的生态学;海洋学机制及预测防治(2001CB409700);重大基金40490260;国家自然科学基金项目--裸甲藻的形态学与遗传学分类研究(3730114)
摘 要:2002年5月和2003年5月在东海赤潮现场进行了添加营养盐诱发赤潮的船基围隔实验。通过测定赤潮藻活体荧光和DCMU增强荧光研究赤潮生消过程中藻细胞荧光能力的变化,揭示在赤潮形成阶段的藻细胞增长期细胞荧光能力较强,反之,在赤潮消亡过程中随着生物量和叶绿素a下降,细胞荧光能力也随之下降。不同围隔中生物量和叶绿素a有较大差别,而细胞荧光能力差别不大。这说明细胞荧光能力的大小与生物量无关,而是取决于藻细胞的生理状况。各围隔中加入DCMU后的增强荧光与正常荧光之间的差值(Fd-F)在赤潮发展过程中均增大,在赤潮消亡过程中均减小。根据它的大小和细胞荧光能力可初步判定赤潮是处于发展过程还是消亡过程。During May 2002 to May 2003, ship-based mesocosm experiments were conducted to study the role of nutrients in the red tide process in the East China Sea, and the variations of cellular fluorescence capacity(CFC) of red tide algae in the red tide process was studied by measuring in vivo fluorescence F and DCMU induced fluorescence Fd. It is shown from the study results that the CFC was higher in the red tide formation stage, and the CFC decreased with decreasing bimass and chlorophyll-a in the red tide moribund stage, Although there was big difference in bimass and chlorophyll-a between different mesocosms, there was no fignificant difference in CFC, which indicates that the CFC of algal cells is independent of bimass, and is dependent on the physiological conditions of algal cells. The difference between DCMU induced fluorescence and in vivo fluorescence (Fa--F) increased in the red tide development process and decreased in the red tide moribund process, so the value of Fd-F can be used to preliminarily determine whether the red tide is in the development process or in the moribund process.
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