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Effects of early thermal environment on the behavior and learning of a lizard with bimodal reproduction

机译:早期热环境对具有双峰繁殖的蜥蜴的行为和学习的影响

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Early developmental temperatures influence the physiology and behavior of reptiles, with important consequences for their fitness and survival. For example, many viviparous lizards are cold adapted which may restrict their activity times during the reproductive season, increasing their susceptibility to global warming. However, it is unclear if and how lizards with different reproductive modes (oviparity vs. viviparity) can respond to rising temperatures by modifying their life-history traits. We examined the effect of developmental temperatures on hatchling behavior and learning in viviparous and oviparous populations of the lizard Saiphos equalis to test whether their reproductive behavior can buffer against rising temperatures. Gravid females from both populations were subjected to current or projected end-of-century (future) thermal environments to evaluate differences in the exploratory, foraging and antipredator behavior, and spatial learning ability of their offspring. We found that viviparous lizards were more exploratory and had a less-pronounced antipredator response than oviparous lizards. Regardless of the mode of reproduction, elevated temperatures reduced the exploratory behavior of hatchling lizards. Elevated temperatures also reduced the foraging efficiency of oviparous, but not viviparous, hatchlings. Finally, future-gestated oviparous hatchlings were more likely to choose the correct refuge and made fewer mistakes in a spatial learning task; however, we found only weak evidence of spatial learning in S. equalis. Our results suggest that although global warming is likely to have a negative impact on phenotypic traits, in S. equalis, some of these effects may be ameliorated by maternal behavior and/or physiological responses during pregnancy, particularly in viviparous populations. Significance statement Computational modeling studies suggest that live-bearing lizards (viviparous) are more vulnerable to global warming compared with egg-laying ones (oviparous). However, there is little experimental evidence showing that viviparous species are indeed at a greater risk of extinction. Using a lizard species that has both oviparous and viviparous populations, we tested the effect of high developmental temperatures (projected for 2100) on the behavior and learning of their offspring. We found that elevated temperatures had a stronger negative effect on egg-laying lizards by producing hatchlings with lower foraging efficiency. Our results suggest that viviparous mothers can ameliorate some of the effects of global warming on their offspring. Moreover, our study suggests that if live bearers are indeed more vulnerable to global warming, it is likely not due to maladaptive behavior in offspring, but rather, to other causes that affect pregnant females.
机译:早期发育温度影响爬行动物的生理和行为,对其健身和生存的重要影响。例如,许多viviparous蜥蜴是冷调整的,这可能会限制他们在生殖季节期间的活动时间,从而提高它们对全球变暖的易感性。但是,目前尚不清楚是否有不同生殖模式(Oviparity与Viviparity)的蜥蜴可以通过修改其寿命历史特征来响应上升的温度。我们研究了发展温度对孵化行为和学习的诱导和卵巢群体的效果,蜥蜴SAIPHOS等于对其生殖行为是否可以缓冲温度缓冲的。来自群体的妊娠女性受到当前或预计的世纪末(未来)热环境,以评估探索性,觅食和反凡行为的差异,以及其后代的空间学习能力。我们发现viviparous蜥蜴更探索,并具有比卵巢蜥蜴更少明显的反向器响应。无论繁殖模式如何,高温降低了孵化蜥蜴的探索性行为。升高的温度也降低了卵巢的觅食效率,但不viviparous,而不是viviach。最后,未来刺激的卵巢幼龟更有可能选择正确的避难所,并在空间学习任务中取得了较少的错误;但是,我们发现了S.等特定空间学习的弱点。我们的研究结果表明,尽管全球变暖可能对表型性状产生负面影响,但在S.等于,其中一些效应可能被怀孕期间的母体行为和/或生理反应进行了缓解,特别是在viviparous群体中可以改善。重要性陈述计算建模研究表明,与卵铺设(卵泡)相比,患有活血管蜥蜴(viviparous)更容易受到全球变暖的影响。然而,很少的实验证据表明,viviparous物种确实是更大的灭绝风险。使用具有卵巢和viviAl种群的蜥蜴物种,我们测试了高发展温度的影响(预计2100)对后代的行为和学习。我们发现,通过生产较低的锻炼效率,升高的温度对蛋敷蜥蜴的负面影响更强。我们的结果表明,Viviparous Mothers可以改善全球变暖对后代的一些影响。此外,我们的研究表明,如果活着承担者确实更容易受到全球变暖的影响,可能不会因后代的不良行为而不是影响怀孕女性的其他原因。

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