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Rapid downward transport of the neurotoxin domoic acid in coastal waters

机译:神经毒素海藻酸在沿海水域的快速向下运输

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摘要

Toxic phytoplankton blooms threaten coastlines worldwide by diminishing beach quality and adversely affecting marine ecosystems and human health(1,2). The common diatom genus Pseudo-nitzschia consists of several species known to produce the neurotoxin domoic acid(3). Recent studies suggest that algal blooms dominated by Pseudo-nitzschia are increasing in frequency and duration owing to changes in coastal nutrient regimes(1,4,5). However, few studies have examined the persistence or long-term biogeochemical cycling of domoic acid in marine waters(6-8). Here, we measure the concentration of domoic acid in surface waters and sediment traps-up to 800m in depth-off the coast of Southern California. We show that peaks in Pseudo-nitzschia abundance and domoic acid concentrations in surface waters coincide with peaks in diatom and toxin abundance at depth, suggesting rapid downward transport of the toxin. In some cases, the sinking particles contain over five times the United States federal limit of domoic acid. Detection of domoic acid in bottom sediments indicates that the toxin may persist long after the Pseudo-nitzschia blooms. Our results indicate that vertical fluxes of domoic acid are a substantial source of the toxin to deep-ocean food webs, and could explain high levels of domoic acid previously observed in benthic organisms(9,10).
机译:有毒的浮游植物开花通过降低海滩质量并不利地影响海洋生态系统和人类健康,威胁着全世界的海岸线(1,2)。常见的硅藻属假性尼兹菌属由已知产生神经毒素多摩酸的几种物种组成(3)。最近的研究表明,由于沿海养分制度的变化,假性紫薇占主导地位的藻华在频率和持续时间上都在增加(1,4,5)。但是,很少有研究检查海水中海藻酸的持久性或长期生物地球化学循环(6-8)。在这里,我们测量了南加州海岸深处最深达800m的地表水和沉积物陷阱中的海藻酸浓度。我们显示,假尼丝球菌丰度和地表水中的海藻酸浓度的峰值与深处的硅藻和毒素丰度的峰值一致,表明该毒素迅速向下运输。在某些情况下,下沉的颗粒所含的美国多摩酸极限含量超过美国的五倍。在底部沉积物中检测到藻酸表明,假性奈瑟菌开花后毒素可能持续很长时间。我们的结果表明,垂直的海藻酸是深海食物网中毒素的主要来源,可以解释以前在底栖生物中观察到的高水平的海藻酸(9,10)。

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