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峡湾系统中有害甲藻和硅藻的环境控制。

Environmental control of harmful dinoflagellates and diatoms in a fjordic system.

机构信息

Scottish Association for Marine Science, Scottish Marine Institute, Oban, PA37 1QA, Scotland, United Kingdom.

Marine Institute, Rinville, Oranmore, Co. Galway, H91 R673, Ireland.

出版信息

Harmful Algae. 2017 Nov;69:1-17. doi: 10.1016/j.hal.2017.09.002. Epub 2017 Sep 23.

DOI:10.1016/j.hal.2017.09.002
PMID:29122238
Abstract

Fjordic coastlines provide an ideal protected environment for both finfish and shellfish aquaculture operations. This study reports the results of a cruise to the Scottish Clyde Sea, and associated fjordic sea lochs, that coincided with blooms of the diarrhetic shellfish toxin producing dinoflagellate Dinophysis acuta and the diatom genus Chaetoceros, that can generate finfish mortalities. Unusually, D. acuta reached one order of magnitude higher cell abundance in the water column (2840cellsL) than the more common Dinophysis acuminata (200cellsL) and was linked with elevated shellfish toxicity (maximum 601±237μg OA eq/kg shellfish flesh) which caused shellfish harvesting closures in the region. Significant correlations between D. acuta abundance and that of Mesodinium rubrum were also observed across the cruise transect potentially supporting bloom formation of the mixotrophic D. acuta. Significant spatial variability in phytoplankton that was related to physical characteristics of the water column was observed, with a temperature-driven frontal region at the mouth of Loch Fyne being important in the development of the D. acuta, but not the Chaetoceros bloom. The front also provided important protection to the aquaculture located within the loch, with neither of the blooms encroaching within it. Analysis based on a particle-tracking model confirms the importance of the front to cell transport and shows significant inter-annual differences in advection within the region, that are important to the harmful algal bloom risk therein.

摘要

峡湾海岸线为鱼类和贝类水产养殖提供了理想的保护环境。本研究报告了在苏格兰克莱德海进行的一次巡航的结果,以及与腹泻性贝类毒素产生的腰鞭毛虫赤潮和硅藻属角毛藻的相关峡湾海小海湾,这些赤潮会导致鱼类死亡。不同寻常的是,在水柱中,赤潮中的赤潮(2840 细胞/L)的细胞丰度比更常见的赤潮(200 细胞/L)高出一个数量级,并且与贝类毒性升高(贝类肉中最高达 601±237μg OA eq/kg)有关,这导致该地区贝类捕捞关闭。在整个巡航横截面上还观察到赤潮丰度与 Mesodinium rubrum 之间存在显著相关性,这可能支持了赤潮的混合营养形成。在水柱的物理特性相关的浮游植物中观察到显著的空间变异性,在芬恩河口的温度驱动的锋区在赤潮的发展中很重要,但对角毛藻的赤潮则不重要。该锋区还为位于泻湖内的水产养殖提供了重要的保护,赤潮都没有侵入泻湖内。基于粒子追踪模型的分析证实了锋区对细胞输运的重要性,并表明该区域内的平流存在显著的年际差异,这对该地区的有害藻类赤潮风险很重要。

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