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首页> 外文期刊>Harmful Algae >Regulation of spiroimine neurotoxins and hemolytic activity in laboratory cultures of the dinoflagellate Alexandrium peruvianum (Balech & Mendiola) Balech & Tangen
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Regulation of spiroimine neurotoxins and hemolytic activity in laboratory cultures of the dinoflagellate Alexandrium peruvianum (Balech & Mendiola) Balech & Tangen

机译:鞭毛亚胺亚历山大藻(Balech&Mendiola)Balech&Tangen实验室培养物中螺胺神经毒素和溶血活性的调节

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摘要

Defined experimental regimes were used to determine the effects of nutrient limitation on the toxicity of Alexandrium peruvianum in batch culture. Subsamples for cell counts and spiroimine analysis at six day intervals were used to investigate the concentrations and composition of these compounds throughout growth. An erythrocyte lysis assay for hemolytic activity was performed on cell pellets and supernatants also collected every six days over the entire growth period from all treatments. From the data, growth rates, cellular spiroimine quotas and effective concentration-fifty (EC~(50)s) for cellular and supernatant associated hemolytic activity were calculated. Phosphate limitation was identified as a key regulator of toxicity in this species, yielding maximum values of 54.1 pgcell~(-1) for 13-desmethyl spirolide C, 96.4 pg cell~(-1) for 12-methylgymnodimine and a potent hemolytic EC~(50) value of 7.1 × 10~3 cells. The concentrations of spiroimines detected in A peruvianum among various treatments, in addition to a unique profile of paralytic shellfish poisoning toxins, is unique in the body of microalgal literature. Because of the multiple toxin arsenal produced by this organism, the evaluation of a single toxin clearly would have underestimated the potential virulence and significance of this clone. This study provides the first evidence that growth and toxin production of A peruvianum are influenced by altered nutrient ratios.
机译:定义的实验方案用于确定养分限制对分批培养的亚历山大亚历山大藻毒性的影响。以六天为间隔的细胞计数和螺亚胺分析的子样品用于研究整个生长过程中这些化合物的浓度和组成。对细胞沉淀物进行溶血活性的红细胞裂解测定,并且在所有处理的整个生长期中每六天收集一次上清液。从这些数据中,计算出细胞,上清液相关溶血活性的生长速率,细胞螺环胺配额和有效浓度-五十(EC〜(50)s)。磷酸盐限制被确定为该物种毒性的关键调节因子,对13-去甲基螺螺内酯C产生最大值54.1 pgcell〜(-1),对12-甲基乙二胺和9-pg -1产生96.4 pgcell〜(-1)和有效的溶血EC (50)值为7.1×10〜3个像元。除麻痹性贝类中毒毒素的独特特征外,在各种处理中在秘鲁秘鲁人的藻中检出的螺胺的浓度在微藻类文献中也是独特的。由于这种生物体会产生多种毒素,因此对单个毒素的评估显然会低估该克隆的潜在毒力和重要性。这项研究提供了第一个证据,即秘鲁营养菌的生长和毒素产生受养分比例变化的影响。

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  • 来源
    《Harmful Algae》 |2012年第9期|p.160-168|共9页
  • 作者单位

    Center for Marine Science, University of North Carolina Wilmington, 5600 Marvin K. Moss Lane, Wilmington, NC 28409, USA;

    Department of Medicinal Chemistry, University of Utah, 30 S 2000 E, Salt Lake City, UT 84112, USA;

    Center for Marine Science, University of North Carolina Wilmington, 5600 Marvin K. Moss Lane, Wilmington, NC 28409, USA;

    Center for Marine Science, University of North Carolina Wilmington, 5600 Marvin K. Moss Lane, Wilmington, NC 28409, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    alexandrium peruvianum; gymnodimine; hemolytic; hemolysin; spiroimine; spirolide;

    机译:秘鲁亚历山大;裸草胺溶血溶血素螺胺螺环内酯;

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