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首页> 外文期刊>Environmental toxicology and chemistry >LIFE-HISTORY CHARACTERISTICS OF DAPHNIA EXPOSED TO DISSOLVED MICROCYSTIN-LR AND TO THE CYANOBACTERIUM MICROCYSTIS AERUGINOSA WITH AND WITHOUT MICROCYSTINS
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LIFE-HISTORY CHARACTERISTICS OF DAPHNIA EXPOSED TO DISSOLVED MICROCYSTIN-LR AND TO THE CYANOBACTERIUM MICROCYSTIS AERUGINOSA WITH AND WITHOUT MICROCYSTINS

机译:含或不含微囊藻素溶解于微囊藻毒素-LR和铜绿细菌微囊藻的脂溢性生活史特征

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In the current study, the role of microcystin(MC)-LR in inhibiting Daphnia growth was examined. Somatic growth, time to first reproduction, number of newborns, mortality, and population growth were measured in Daphnia fed mixtures of the cyanobacterium Microcystis aeruginosa (with and without microcystin) with a high quality green algal food (Scenedesmus obliquus) to avoid nutritional deficiency. Microcystin-LR-containing cells caused a dramatic reduction in growth and resulted in death of the animals, but the addition of purified toxin (microcystin-LR) had no effect on Daphnia growth. In contrast with the nutritional inadequacy hypothesis, growth on a mixture of Scenedesmus and the microcystin-free food was significantly reduced. This observation could not be explained from morphological characteristics of the strains that were uni- and bicellular. Clearance rates of Daphnia fed mixtures of Microcystis and Scenedesmus were significantly lower than rates of animals fed solely Scenedesmus. The results of an additional life-history experiment with different quantities of Scenedesmus could not reject the hypothesis that reduced feeding may be the causal factor in explaining reduced Daphnia growth on the food mixture with microcystin-free Microcystis. Thus, feeding inhibition should be considered in explaining the food quality of Microcystis and other cyanobacteria, as it could affect the total food intake and consequently Daphnia growth.
机译:在当前的研究中,检查了微囊藻毒素(MC)-LR在抑制水蚤生长中的作用。在水蚤喂养的铜绿微囊藻(含和不含微囊藻毒素)与优质绿色藻类食物(斜()的混合物中测量体细胞生长,初次繁殖的时间,新生儿的数量,死亡率和种群的增长,以避免营养缺乏。含微囊藻毒素-LR的细胞导致生长急剧下降并导致动物死亡,但添加纯化的毒素(微囊藻毒素-LR)对水蚤的生长没有影响。与营养不足的假设相反,在场景动物和不含微囊藻毒素的食物混合物上的生长显着减少。从单细胞和双细胞菌株的形态特征不能解释这一观察结果。喂食水蚤的微囊藻和场景动物混合物的清除率明显低于单纯喂食场景动物的动物。另一个生活史实验的结果,使用不同数量的场景动物,不能拒绝这样的假说,即喂食减少可能是解释为什么不含微囊藻毒素的微囊藻食物混合物中水蚤生长减少的原因。因此,在解释微囊藻和其他蓝细菌的食物质量时,应考虑进食抑制,因为它可能影响食物的总摄入量,进而影响水蚤的生长。

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