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The Interactive Effects of Ammonia and Microcystin on Life-History Traits of the Cladoceran Daphnia magna: Synergistic or Antagonistic?

机译:氨和微囊藻毒素对枝头水蚤生活史特征的协同作用:协同还是拮抗?

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摘要

The occurrence of Microcystis blooms is a worldwide concern that has caused numerous adverse effects on water quality and lake ecology. Elevated ammonia and microcystin concentrations co-occur during the degradation of Microcystis blooms and are toxic to aquatic organisms; we studied the relative and combined effects of these on the life history of the model organism Daphnia magna. Ammonia and microcystin-LR treatments were: 0, 0.366, 0.581 mg L−1 and 0, 10, 30, 100 µg L−1, respectively. Experiments followed a fully factorial design. Incubations were 14 d and recorded the following life-history traits: number of moults, time to first batch of eggs, time to first clutch, size at first batch of eggs, size at first clutch, number of clutches per female, number of offspring per clutch, and total offspring per female. Both ammonia and microcystin were detrimental to most life-history traits. Interactive effects of the toxins occurred for five traits: the time to first batch of eggs appearing in the brood pouch, time to first clutch, size at first clutch, number of clutches, and total offspring per female. The interactive effects of ammonia and microcystin appeared to be synergistic on some parameters (e.g., time to first eggs) and antagonistic on others (e.g., total offspring per female). In conclusion, the released toxins during the degradation of Microcystis blooms would result, according to our data, in substantially negative effect on D. magna.
机译:微囊藻水华的发生是全世界关注的问题,已对水质和湖泊生态造成了许多不利影响。在微囊藻大量繁殖的降解过程中,氨和微囊藻毒素的浓度升高同时发生,对水生生物有毒。我们研究了这些对模型生物Daphnia magna的生活史的相对和综合影响。氨水和微囊藻毒素-LR处理分别为:0、0.366、0.581 mg L-1和0、10、30、100 µg L-1。实验遵循完全析因设计。孵化期为14天,并记录了以下生活史特征:换羽数,第一批卵的时间,第一卵的时间,第一卵的大小,第一卵的大小,每个雌性的卵数,后代的数量每个离合器,每个雌性的后代总数。氨和微囊藻毒素都不利于大多数生活史特征。毒素的相互作用具有五个特征:育雏袋中出现第一批卵的时间,第一次抓紧的时间,第一次抓紧的大小,抓紧的数量以及每个雌性的后代总数。氨和微囊藻毒素的相互作用似乎在某些参数上具有协同作用(例如产卵的时间),而在其他参数上则具有拮抗作用(例如每只雌性的后代总数)。总之,根据我们的数据,在微囊藻开花的降解过程中释放的毒素将对D. magna产生实质上的负面影响。

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