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Multigenerational plasticity of Daphnia magna under thermal stress across ten generations

机译:Daphnia Magna在10代热应力下的多牙塑性

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The effects of increasing temperature owing to thermal discharge and global warming on zooplanktons such as Daphnia magna are a growing concern. The purpose of this study was to evaluate the effects of elevated temperature (25 degrees C) on oxidative stress responses, growth, and reproduction of D. magna across 10 generations. The number of offspring per female at 21 d was significantly increased and the rate of adult somatic growth (5-21 d) was decreased in the F0 generation at 25 degrees C compared with those at the reference temperature 20 degrees C. However, the F3 generation showed the lowest number of offspring and the highest adult somatic growth rate and oxidative stress responses (5 d) at 25 degrees C. Moreover, all life-history traits seemed to recover to the levels of the control group from the F6 generation at 20 degrees C. These findings suggest that D. magna under continuous thermal stress exhibits non-adaptive responses in the early generations (F0-F3) and changes to adaptive responses in the later generations (F6-F9). However, the underlying epigenetic mechanism should be identified in the future.
机译:由于Daphnia Magna等浮游子的热排放和全球变暖的温度增加的影响是日益增长的问题。本研究的目的是评估升高的温度(25℃)对10代D. Magna的氧化应激反应,生长和繁殖的影响。与参考温度20℃的参考温度20℃的相比,每雌性的每个雌性的每个雌性的后代数量显着增加,并且在25℃下,在25℃的F0生成中降低了成年体长(5-21d)的速率。然而,F3产生的后代数量最低,最高的成年体躯体生长速率和氧化应激反应(5 d)在25℃下。此外,所有生命历史的性状似乎恢复到20次F6生成的对照组的水平这些发现表明,在连续热应力下的D. MAGNA在早期几代(F0-F3)中表现出非适应性的反应,并在后代(F6-F9)中改变自适应响应。但是,应在将来识别潜在的表观遗传机制。

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