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Effect of winter cold duration on spring phenology of the orange tip butterfly Anthocharis cardamines

机译:冬季寒冷持续时间对桔顶蝴蝶花椰菜花蜜的春季物候的影响

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摘要

The effect of spring temperature on spring phenology is well understood in a wide range of taxa. However, studies on how winter conditions may affect spring phenology are underrepresented. Previous work on Anthocharis cardamines (orange tip butterfly) has shown population‐specific reaction norms of spring development in relation to spring temperature and a speeding up of post‐winter development with longer winter durations. In this experiment, we examined the effects of a greater and ecologically relevant range of winter durations on post‐winter pupal development of A. cardamines of two populations from the United Kingdom and two from Sweden. By analyzing pupal weight loss and metabolic rate, we were able to separate the overall post‐winter pupal development into diapause duration and post‐diapause development. We found differences in the duration of cold needed to break diapause among populations, with the southern UK population requiring a shorter duration than the other populations. We also found that the overall post‐winter pupal development time, following removal from winter cold, was negatively related to cold duration, through a combined effect of cold duration on diapause duration and on post‐diapause development time. Longer cold durations also lead to higher population synchrony in hatching. For current winter durations in the field, the A. cardamines population of southern UK could have a reduced development rate and lower synchrony in emergence because of short winters. With future climate change, this might become an issue also for other populations. Differences in winter conditions in the field among these four populations are large enough to have driven local adaptation of characteristics controlling spring phenology in response to winter duration. The observed phenology of these populations depends on a combination of winter and spring temperatures; thus, both must be taken into account for accurate predictions of phenology.
机译:春季温度对春季物候的影响在各种各样的分类单元中是众所周知的。但是,关于冬季条件如何影响春季物候的研究却很少。先前对花椰菜腰果胺(橙色尖蝶)的研究表明,春季发展与春季温度相关的种群特定反应规范,以及冬季持续时间越长,冬后发育速度越快。在这个实验中,我们检查了冬季持续时间更长且与生态相关的范围对英国两个种群和瑞典两个种群的棉铃虫冬季card发育的影响。通过分析p的体重减轻和代谢率,我们能够将整个冬季后的development发育分为滞育期和滞后发育。我们发现打破滞育所需的感冒持续时间之间存在差异,英国南部的人群所需的感冒持续时间比其他人群要短。我们还发现,从寒冷的冬天中移除后,整个冬季后的幼仔发育时间与寒冷的持续时间呈负相关,这是由于寒冷的持续时间对滞育时间和滞后后发育时间的综合影响。较长的感冒持续时间也会导致孵化中的种群同步性更高。对于当前田间冬季而言,由于冬季短,英国南部的A.cardamines种群发育速度可能降低,出苗同步性降低。随着未来的气候变化,这对于其他人群也可能成为一个问题。在这四个种群之间,田间冬季条件的差异足够大,以致于响应冬季持续时间,推动了控制春季物候特征的局部适应。这些人群观察到的物候状况取决于冬季和春季的温度。因此,对于物候学的准确预测,必须将两者都考虑在内。

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