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Prymnesins: Toxic Metabolites of the Golden Alga Prymnesium parvum Carter (Haptophyta)

机译:呼吸素:金藻的毒性代谢物小球藻卡特(Haptophyta)

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摘要

Increasingly over the past century, seasonal fish kills associated with toxic blooms of Prymnesium parvum have devastated aquaculture and native fish, shellfish, and mollusk populations worldwide. Protracted blooms of P. parvum can result in major disturbances to the local ecology and extensive monetary losses. Toxicity of this alga is attributed to a collection of compounds known as prymnesins, which exhibit potent cytotoxic, hemolytic, neurotoxic and ichthyotoxic effects. These secondary metabolites are especially damaging to gill-breathing organisms and they are believed to interact directly with plasma membranes, compromising integrity by permitting ion leakage. Several factors appear to function in the activation and potency of prymnesins including salinity, pH, ion availability, and growth phase. Prymnesins may function as defense compounds to prevent herbivory and some investigations suggest that they have allelopathic roles. Since the last extensive review was published, two prymnesins have been chemically characterized and ongoing investigations are aimed at the purification and analysis of numerous other toxic metabolites from this alga. More information is needed to unravel the mechanisms of prymnesin synthesis and the significance of these metabolites. Such work should greatly improve our limited understanding of the physiology and biochemistry of P. parvum and how to mitigate its blooms.
机译:在过去的一个世纪中,与季节性小花Pr有毒繁殖相关的季节性鱼类杀害越来越严重地破坏了全世界的水产养殖以及本地鱼类,贝类和软体动物种群。小球藻长期开花会导致对当地生态的严重干扰和大量金钱损失。该藻类的毒性归因于一系列称为Prymnesins的化合物,这些化合物表现出强力的细胞毒性,溶血性,神经毒性和鱼腥毒素性作用。这些次生代谢产物特别损害g呼吸生物,并且据信它们直接与质膜相互作用,通过允许离子泄漏而损害完整性。几个因素似乎在Prymnesins的激活和效力中起作用,包括盐度,pH,离子可用性和生长期。胸腺素可能作为防御化合物预防草食动物,一些研究表明它们具有化感作用。自上次广泛综述发表以来,已对两种木霉菌素进行了化学表征,并且正在进行的研究旨在纯化和分析该藻类中许多其他有毒代谢物。需要更多信息来解开普瑞姆菌素合成的机制以及这些代谢物的重要性。此类工作应大大改善我们对小白菜的生理和生化以及如何减轻其开花的有限了解。

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