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首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >A mechanistic explanation for pH-dependent ambient aquatic toxicity of Prymnesium parvum carter. (Special Issue: Harmful algal blooms and natural toxins in fresh and marine waters - exposure, occurrence, detection, toxicity, control, management and policy.)
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A mechanistic explanation for pH-dependent ambient aquatic toxicity of Prymnesium parvum carter. (Special Issue: Harmful algal blooms and natural toxins in fresh and marine waters - exposure, occurrence, detection, toxicity, control, management and policy.)

机译:一种机制解释pH依赖性小水P的水生毒性。 (特刊:淡水和海水中有害的藻华和天然毒素-暴露,发生,检测,毒性,控制,管理和政策。)

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The harmful algal bloom species Prymnesium parvum has caused millions of dollars in damage to fisheries around the world. These fish kills have been attributed to P. parvum releasing a mixture of toxins in the water. The characterized toxins, reported as prymnesin-1 and -2, have structural similarities consistent with other known ionizable compounds (e.g., ammonia). We investigated whether pH affects the toxicity of P. parvum under conditions representative of inland Texas reservoirs experiencing ambient toxicity from bloom formation. We evaluated pH influences on toxicity in laboratory and field samples, and modeled the physicochemical properties of prymnesins. Aquatic toxicity to a model fish and cladoceran was reduced by lowering pH in samples obtained from reservoirs experiencing P. parvum blooms; similar observations were confirmed for experiments with laboratory cultures. A pKa value of 8.9 was predicted for the prymnesins, which suggests that ionization states of these toxins may change appreciably over surface water pH of inland waters. These findings indicate that ionization states of toxins released by P. parvum may strongly influence site-specific toxicity and subsequent impacts to fisheries. Consequently, these results emphasize the importance of understanding processes that affect pH during P. parvum blooms, which may improve predictions of ambient toxicity.
机译:有害的藻华物种 Prymnesium parvum 对世界各地的渔业造成了数百万美元的损失。这些鱼类杀害归因于 P。小毒物在水中释放出毒素混合物。据报道为Prymnesin-1和-2的特征毒素与其他已知的可电离化合物(例如氨水)具有相似的结构相似性。我们调查了pH是否影响iP的毒性。在得克萨斯州内陆水库具有代表性的条件下,由于水华形成而遭受环境毒性。我们评估了pH对实验室和田间样品毒性的影响,并模拟了胚乳素的理化特性。通过降低从经历iP的水库中获得的样品中的pH值,降低了对模型鱼和锁骨鱼类的水生毒性。小花开花;实验室培养的实验也证实了类似的观察结果。 prymnesins的pKa值预计为8.9,这表明这些毒素的电离态可能在内陆水域的地表水pH值范围内发生明显变化。这些发现表明由P释放的毒素的电离状态。小鱼可能会强烈影响特定地点的毒性以及对渔业的后续影响。因此,这些结果强调了了解影响iP过程中pH值的过程的重要性。小花开花,可能会改善对环境毒性的预测。

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