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Lizards fail to plastically adjust nesting behavior or thermal tolerance as needed to buffer populations from climate warming

机译:根据气候变暖的缓冲群体,蜥蜴未能塑造嵌套行为或热耐受性

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摘要

Although observations suggest the potential for phenotypic plasticity to allow adaptive responses to climate change, few experiments have assessed that potential. Modeling suggests that Sceloporus tristichus lizards will need increased nest depth, shade cover, or embryonic thermal tolerance to avoid reproductive failure resulting from climate change. To test for such plasticity, we experimentally examined how maternal temperatures affect nesting behavior and embryonic thermal sensitivity. The temperature regime that females experienced while gravid did not affect nesting behavior, but warmer temperatures at the time of nesting reduced nest depth. Additionally, embryos from heatstressed mothers displayed increased sensitivity to high-temperature exposure. Simulations suggest that critically low temperatures, rather than high temperatures, historically limit development of our study population. Thus, the plasticity needed to buffer this population has not been under selection. Plasticity will likely fail to compensate for ongoing climate change when such change results in novel stressors.
机译:虽然观察结果表明表型可塑性允许适应性对气候变化的适应性,但很少有实验评估潜力。造型表明,CoLoforus Tristichus蜥蜴需要增加巢深度,遮阳盖或胚胎热容耐热,以避免气候变化产生的生殖失败。为了测试这种可塑性,我们通过实验检查了母体温度如何影响嵌套行为和胚胎热敏性。在妊娠时,女性经历的温度制度不会影响嵌套行为,而是在嵌套减少巢深度时温暖的温度。此外,来自热情母亲的胚胎显示出对高温暴露的敏感性增加。仿真表明,批判性低温,而不是高温,历史上限制了我们研究人口的发展。因此,缓冲这种群体所需的可塑性未被选择。当这种变化导致新的压力源产生持续的气候变化,可塑性可能无法弥补持续的气候变化。

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