甲藻亚历山德林(Alexandrin fundyense)细胞周期G1期与蛤蚌毒素生物合成的耦合:温度和营养效应。

G Taroncher-Oldenburg, D M Kulis, D M Anderson
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引用次数: 58

摘要

采用半连续培养的方法,研究了不同细胞周期阶段长度的变化与亚历山Alexandrium fundyense Balech毒性的关系。在不同温度或磷限制水平下,生长速率为0.031 d(-1) ~ 0.36 d(-1)。在所有治疗中,G1是持续时间最长的阶段。生长速率的降低与不同细胞周期阶段持续时间的增加有关。毒素含量与G1期持续时间呈正相关。在温度处理和磷酸盐限制实验中,毒素产生率在各自的条件范围内保持不变,这意味着观察到的毒素含量变化是生物合成活性周期增加的结果。在所有温度处理中,毒素积累与蛋白质生物合成直接相关。相反,随着磷酸盐限制的增加,毒素含量与蛋白质含量的相关性不大。温度处理和磷肥处理在毒素组成上存在显著差异。在磷酸盐限制培养中,GTX II和III以及C I和II的总浓度显著升高,而STX、NEO和gonyautoxin I和IV的水平几乎保持不变。我们得出的结论是,沙蛤毒素的生物合成与细胞周期的G1期相耦合,毒素合成不受磷酸盐剥夺的影响,并且沙蛤毒素衍生物之间的相互转化受到磷酸盐可用性的影响。
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Coupling of saxitoxin biosynthesis to the G1 phase of the cell cycle in the dinoflagellate Alexandrin fundyense: temperature and nutrient effects.

The correlation between changes in length of the different cell cycle stages and the toxicity of Alexandrium fundyense Balech was studied in semi-continuous cultures. Growth rates ranging from 0.031 d(-1) to 0.36 d(-1) were established at different temperatures or levels of phosphate limitation. In all treatments, G1 was the phase with the longest duration. Decrease in growth rate was associated with an increase in duration of the different cell cycle stages. Toxin content was always directly correlated to the duration of the G1 phase. In both the temperature treatments and the phosphate limitation experiments, toxin production rates remained constant for the respective range of conditions, implying that the variations in toxin content observed were a result of increasing periods of biosynthetic activity. Toxin accumulation was directly correlated to protein biosynthesis in all temperature treatments. In contrast, toxin content showed little correlation with protein content as phosphate limitation increased. Significant differences in toxin composition were observed between the temperature and phosphate treatments. Total concentrations of GTX II and III and C I and II were significantly higher in the phosphate-limited cultures, while the levels of STX, NEO and gonyautoxins I and IV remained virtually unchanged. We conclude that toxin biosynthesis in A. fundyense is coupled to the G1 phase of the cell cycle, that toxin synthesis is not down-regulated by phosphate deprivation and that interconversions among saxitoxin derivatives are influenced by the availability of phosphate.

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