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首页> 外文期刊>Integrative and Comparative Biology >Developmental Stage Affects the Consequences of Transient Salinity Exposure in Toad Tadpoles
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Developmental Stage Affects the Consequences of Transient Salinity Exposure in Toad Tadpoles

机译:发育阶段影响蟾蜍蝌蚪的瞬态盐度暴露的后果

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Development can play a critical role in how organisms respond to changes in the environment. Tolerance to environmental challenges can vary during ontogeny, with individual- and population-level impacts that are associated with the timing of exposure relative to the timing of vulnerability. In addition, the life history consequences of different stressors can vary with the timing of exposure to stress. Salinization of freshwater ecosystems is an emerging environmental concern, and habitat salinity can change rapidly due, for example, to storm surge, runoff of road deicing salts, and rainfall. Elevated salinity can increase the demands of osmoregulation in freshwater organisms, and amphibians are particularly at risk due to their permeable skin and, in many species, semi-aquatic life cycle. In three experiments, we manipulated timing and duration of exposure to elevated salinity during larval development of southern toad (Anaxyrus terrestris) tadpoles and examined effects on survival, larval growth, and timing of and size at metamorphosis. Survival was reduced only for tadpoles exposed to elevated salinity early in development, suggesting an increase in tolerance as development proceeds; however, we found no evidence of acclimation to elevated salinity. Two forms of developmental plasticity may help to ameliorate costs of transient salinity exposure. With early salinity exposure, the return to freshwater was accompanied by a period of rapid compensatory growth, and metamorphosis ultimately occurred at a similar age and size as freshwater controls. By contrast, salinity exposure later in development led to earlier metamorphosis at reduced size, indicating an acceleration of metamorphosis as a mechanism to escape salinity stress. Thus, the consequences of transient salinity exposure were complex and were mediated by developmental state. Salinity stress experienced early in development resulted in acute costs but little long-lasting effect on survivors, while exposures later in development resulted in sublethal effects that could influence success in subsequent life stages. Overall, our results suggest that elevated salinity is more likely to affect southern toad larvae when experienced early during larval development, but even brief sublethal exposure later in development can alter life history in ways that may impact fitness.
机译:开发可以在生物体如何响应环境变化方面发挥关键作用。对环境挑战的耐受性可以在组织化期间变化,个人和人口水平的影响与相对于脆弱性时机的曝光时间相关联。此外,不同压力源的寿命历史后果可能因暴露于应力而异。淡水生态系统的盐渍化是一种新兴的环境问题,栖息地盐度可以迅速变化,例如,风暴浪涌,道路除冰盐和降雨。升高的盐度可以增加淡水生物中Osmoregulation的需求,由于渗透性皮肤,两栖动物尤其存在危险,并且在许多物种中,半水生生命周期。在三个实验中,我们在南部蟾蜍(Anaxyrus Terristris)蝌蚪的幼虫发育期间操纵升高盐度的时序和持续时间,并检查了对变态时的存活率,幼虫生长和和尺寸的影响。仅对开发早期暴露于盐度升高的蝌蚪的生存率降低,表明随着发展所得款项的耐受性增加;但是,我们发现没有对升高的盐度适应的证据。两种形式的发育可塑性可能有助于改善瞬态盐度暴露的成本。随着早期盐度暴露,返回淡水伴随着快速补偿生长的时期,并且变态最终发生在类似年龄和淡水控制的年龄和大小。相比之下,盐度暴露于后期的开发导致较早的变态,表明变态的加速作为逃避盐度应力的机制。因此,瞬态盐度暴露的后果是复杂的并且通过发育状态介导。发展早期盐度压力导致急性成本导致急性成本,但对幸存者的影响很小,而开发后的暴露导致骨骼效应导致可能影响随后的生命阶段的成功。总体而言,我们的结果表明,在幼虫发育期间经验丰富时,升高的盐度更可能影响南蟾蜍幼虫,但甚至在开发后期的短暂止逆暴露可以以可能影响健身的方式改变生命历史。

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