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Overwintering temperature and body condition shift emergence dates of spring-emerging solitary bees

机译:春季新兴孤独蜜蜂的越冬温度和身体状况移位日期

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摘要

Solitary bees in seasonal environments must align their life-cycles with favorable environmental conditions and resources; the timing of their emergence is highly fitness relevant. In several bee species, overwintering temperature influences both emergence date and body weight at emergence. High variability in emergence dates among specimens overwintering at the same temperatures suggests that the timing of emergence also depends on individual body conditions. However, possible causes for this variability, such as individual differences in body size or weight, have been rarely studied. In a climate chamber experiment using two spring-emerging mason bees (Osmia cornuta and O. bicornis), we investigated the relationship between temperature, emergence date, body weight, and body size, the last of which is not affected by overwintering temperature. Our study showed that body weight declined during hibernation more strongly in warm than in cold overwintering temperatures. Although bees emerged earlier in warm than in cold overwintering temperatures, at the time of emergence, bees in warm overwintering temperatures had lower body weights than bees in cold overwintering temperatures (exception of male O. cornuta). Among specimens that experienced the same overwintering temperatures, small and light bees emerged later than their larger and heavier conspecifics. Using a simple mechanistic model we demonstrated that spring-emerging solitary bees use a strategic approach and emerge at a date that is most promising for their individual fitness expectations. Our results suggest that warmer overwintering temperatures reduce bee fitness by causing a decrease in body weight at emergence. We showed furthermore that in order to adjust their emergence dates, bees use not only temperature but also their individual body condition as triggers. This may explain differing responses to climate warming within and among bee populations and may have consequences for bee-plant interactions as well as for the persistence of bee populations under climate change.
机译:在季节性环境必须调整其生命周期与有利的环境条件和资源孤蜜蜂;其出现的时间是高度相关的健康。在一些蜂种,越冬温度影响都出现日期和体重的出现。试样在同一温度中越冬出苗日期高可变性表明,出现的时间还取决于个人的身体状况。然而,可能的原因这种可变性,如在车身尺寸或重量的个体差异,已很少研究。在使用两个弹簧新兴梅森蜜蜂(壁蜂枸骨和O.菱)的气候室的实验中,我们研究了温度,出苗日期,体重和身体大小之间的关系,其中最后的不受越冬温度。我们的研究表明,体重冬眠期间更有力地暖比下降在寒冷的气温越冬。虽然蜜蜂早在温水比冷水温度越冬出现,在出现的时间,在温暖的越冬温度蜜蜂有体重比在寒冷的蜜蜂越冬温度(男O.枸骨的除外)较低。这当中经历了同样的越冬温度标本,小而轻的蜜蜂出现晚于他们的较大和较重同种。利用简单的机械模型,我们表明,春季出现的孤蜜蜂使用的战略方针,并出现在其最有前途的其个人健身的预期日期。我们的研究结果表明,温暖的越冬温度由出现引起体重下降减少蜜蜂健身。我们还发现,以调整他们的出现日期,蜜蜂不仅使用温度,而且他们个人的身体条件作为触发器。这也许可以解释不同的气候中和蜜蜂种群间变暖的响应,并可能对蜜蜂的植物相互作用以及对蜜蜂种群的气候变化下的持久性后果。

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