首页> 外文期刊>Journal of Comparative Physiology, B. Biochemical, Systemic, and Environmental Physiology >Antioxidant capacity, lipid peroxidation, and lipid composition changes during long-term and short-term thermal acclimation in Daphnia
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Antioxidant capacity, lipid peroxidation, and lipid composition changes during long-term and short-term thermal acclimation in Daphnia

机译:抗氧化能力,脂质过氧化和脂质组合物在多酚的长期和短期热驯化期间发生变化

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Examples of phenotypic plasticity-the ability of organisms of identical genotypes to produce different phenotypes in response to the environment-are abundant, but often lack data on the causative physiology and biochemistry. Phenotypes associated with increased protection against or reduced damage from harmful environments may, in fact, be downstream effects of hidden adaptive responses that remain elusive to experimental measurement or be obscured by homeostatic or over-compensatory effects. The freshwater zooplankton crustacean Daphnia drastically increases its heat tolerance as the result of acclimation to high temperatures, an effect often assumed to be based on plastic responses allowing better protection against oxidative stress. Using several geographically distant Daphnia magna genotypes, we demonstrate that the more heat tolerant individuals have a higher total antioxidant capacity (TAC) both in the comparison of heat-acclimated vs. non heat-acclimated females and in the comparison of females to age- and body size-matched males, which show lower heat tolerance than females. However, experimental manipulations of hypothesized antioxidant pathways by either glutathione addition or glutathione synthesis inhibition had no effect on heat tolerance. Lipid peroxidation (LPO), contrary to expectations, did not appear to be a predictive measure of susceptibility to thermal damage: LPO was higher, not lower, in more heat tolerant heat-acclimated individuals after exposure to a lethally high temperature. We hypothesize that LPO may be maintained in Daphnia at a constant level in the absence of acute exposure to elevated temperature and increase as a by-product of a possible protective antioxidant mechanism during such exposure. This conclusion is corroborated by the observed short-term and long-term changes in phospholipid composition that included an increase in fatty acid saturation at 28 A degrees C and up-regulation of certain long-chain polyunsaturated fatty acids. Phospholipid composition was more strongly affected by recently experienced temperature (4-day transfer) than by long-term (2 generations) temperature acclimation. This is consistent with partial loss of thermal tolerance after a short-term switch to a reciprocal temperature. As predicted under the homeoviscous adaptation hypothesis, the more heat tolerant Daphnia showed lower membrane fluidity than their less heat tolerant counterparts, in comparison both between acclimation temperatures and among different genotypes. We conclude that thermal tolerance in Daphnia is influenced by total antioxidant capacity and membrane fluidity at high temperatures, with both effects possibly reflecting changes in phospholipid composition.
机译:表型可塑性的实例 - 相同基因型的生物能力响应于环境而产生不同的表型 - 是丰富的,但通常缺乏关于致病生理学和生物化学的数据。事实上,与有害环境的损坏增加或减少损坏的表型可能是隐藏的适应性反应的下游效应,这些反应仍然难以实现实验测量或被稳态或过度补偿效果遮挡。淡水浮游生儿甲壳类甲壳类甲壳类甲壳类甲壳类甲壳动物大幅增加其耐热性随着对高温的适应而增加,经常假设效果基于塑料反应,从而更好地防止氧化应激。使用几种地理上遥远的Daphnia magna基因型,我们证明,在热适应的与非热适度的女性的比较中,较高的耐​​热性均具有更高的总抗氧化能力(TAC),并且在雌性与年龄的比较中身体大小匹配的男性,其显示比女性低耐热性。然而,通过谷胱甘肽添加或谷胱甘肽合成抑制的假设抗氧化途径的实验性操纵对耐热性没有影响。与期望相反,脂质过氧化(LPO)并未似乎是对热损伤的易感性的预测措施:在暴露于致命高温后,LPO更高,而不是更低,在更热耐热的热量适应的个体中。我们假设在没有急性暴露于升高的温度下,在恒定水平下,可以在恒定水平下维持LPO,并且在这种暴露期间作为可能的保护性抗氧化机理的副产物增加。通过观察到的磷脂组合物中的短期和长期变化,磷脂组合物的长期变化是证实的,所述磷脂组合物中的脂肪酸饱和在28℃和某些长链多不饱和脂肪酸的上调中的增加和上调的磷脂组合物的增加。磷脂组合物在最近经历的温度(4天转移)比长期(2代)温度适应更强烈地影响。这与短期开关后的往复温度之后的散热耐受的部分损失一致。如在家用适应假设下所预测的,相比,在适应温度和不同基因型中,较高的耐​​热性Daphnia显示比耐热性对应物更低的膜流动性。我们得出结论,Daphnia的热耐受性受到高温下的总抗氧化能力和膜流动性的影响,两种效果可能反映了磷脂组合物的变化。

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