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High temperature constrains reproductive success in a temperate lizard: implications for distribution range limits and the impacts of climate change

机译:高温限制了温带蜥蜴的繁殖成功:对分布范围限制和气候变化的影响

摘要

We investigated whether the current distribution of Lacerta schreiberi is likely to be constrained by incubation conditions. We used an incubation experiment in the laboratory to examine the effects of temperature and moisture on lizard reproductive traits, in order to clarify the ecological processes that underlie the distribution patterns of this lizard and to build more reliable mechanistic models. We then investigated to what extent range limits of L. schreiberi coincided with those predicted from incubation experiments and actual temperature variation experienced in the field. This was done by intersecting documented presence localities of the species with interpolated spatial layers of soil temperature. Reproductive success (hatching success, morphological traits and growth rates) was strongly and negatively affected by high temperature. In contrast, incubation moisture only affected neonate size and its positive effects were only realized at moderate to low temperature. Documented temperature sensitivity suggests that successful embryonic development is likely to be compromised by available thermal conditions, and that this species is unable to colonize warmer areas such as those where L. schreiberi is absent beyond its distribution range limits. An important addition is that incubation moisture does not appear to influence overall embryonic development. We would expect contemporary climate warming to cause upward elevational shifts which may be more or less critical depending on the availability of preferred habitat.
机译:我们调查了当前的Lacerta schreiberi分布是否可能受到孵化条件的限制。我们在实验室中进行了一个孵化实验,以检验温度和湿度对蜥蜴繁殖性状的影响,以阐明构成该蜥蜴分布模式的生态过程,并建立更可靠的机理模型。然后,我们研究了Schreiberi的范围限制与孵化实验和现场实际温度变化所预测的范围一致。这是通过将已记录物种的存在位置与土壤温度的内插空间层相交来完成的。繁殖成功(孵化成功,形态特征和生长速率)受到高温的强烈和负面影响。相反,孵化中的水分仅影响新生儿的体型,其积极作用仅在中等至低温下才能实现。记录在案的温度敏感性表明,成功的胚胎发育可能会受到可用的热条件的影响,并且该物种无法在温度较高的地区定居,例如不存在超过其分布范围限制的施氏乳杆菌的那些地区。一个重要的补充是,孵化中的水分似乎不会影响总体胚胎发育。我们希望当代气候变暖会导致海拔高度上升,这取决于首选栖息地的可用性可能或多或少是关键的。

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