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Each life stage matters: the importance of assessing the response to climate change over the complete life cycle in butterflies

机译:每个生命阶段都很重要:评估蝴蝶整个生命周期对气候变化的响应的重要性

摘要

1. As ectothermic organisms, butterflies have widely been used as models to explore the predicted impacts of climate change. However, most studies explore only one life stage; to our best knowledge, none have integrated the impact of temperature on the vital rates of all life stages for a species of conservation concern. 2. Besides, most population viability analysis models for butterflies are based on yearly population growth rate,precluding the implementation and assessment of important climate change scenarios, where climate change occurs mainly, or differently, during some seasons. 3. Here, we used a combination of laboratory and field experiments to quantify the impact of temperature on all life stages of a vulnerable glacial relict butterfly. Next, we integrated these impacts into an overall population response using a deterministic periodic matrix model and explored the impact of several climate change scenarios. 4. Temperature positively affected egg, pre-diapause larva and pupal survival, and the number of eggs laid by a female ; only the survival of overwintering larva was negatively affected by an increase in temperature. Despite the positive impact of warming on many life stages, population viability was reduced under all scenarios, with predictions of much shorter times to extinction than under the baseline (current temperature situation) scenario. Indeed, model predictions were the most sensitive to changes in survival of overwintering larva, the only stage negatively affected by warming. 5. A proper consideration of every stage of the life cycle is important when designing conservation guidelines in the light of climate change. This is in line with the resource-based habitat view, which explicitly refers to the habitat as a collection of resources needed for all life stages of the species. We, therefore, encourage adopting a resource-based habitat view for population viability analysis and development of conservation guidelines for butterflies, and more generally, other organisms. Life stages that are cryptic or difficult to study should not be forsaken as they may be key determinants in the overall response to climate change, as we found with overwintering Boloria eunomia larvae.
机译:1.蝴蝶作为外热生物,已广泛用作探索气候变化的预期影响的模型。但是,大多数研究仅探索一个生命阶段。据我们所知,没有一个人考虑到温度对某种保护物种的生命周期的影响。 2.此外,大多数蝴蝶的种群生存力分析模型都是基于人口的年增长率,不包括重要气候变化情景的实施和评估,在这些情景中,气候变化主要或不同地在某些季节发生。 3.在这里,我们结合了实验室和野外实验来量化温度对脆弱的冰川遗存蝴蝶所有生命阶段的影响。接下来,我们使用确定性周期矩阵模型将这些影响整合到总体人口响应中,并探讨了几种气候变化情景的影响。 4.温度对蛋,成年前的幼虫和p的存活以及雌性产卵的数量有积极影响;只有越冬幼虫的存活受到温度升高的负面影响。尽管变暖对许多生命阶段都产生了积极影响,但在所有情况下,种群的生存能力都下降了,并且预测灭绝时间比基线(当前温度情况)下要短得多。实际上,模型预测对越冬幼虫的生存变化最敏感,这是受变暖负面影响的唯一阶段。 5.在根据气候变化制定保护准则时,对生命周期的每个阶段进行适当考虑非常重要。这与基于资源的栖息地观点一致,后者明确将栖息地称为物种所有生命阶段所需的资源的集合。因此,我们鼓励采用基于资源的栖息地视图来进行种群生存力分析,并为蝴蝶以及更广泛的其他生物制定保护准则。正如我们发现越冬越桔红蝇幼虫发现的那样,不应该放弃那些难以解释或难以研究的生命阶段,因为它们可能是对气候变化总体反应的关键决定因素。

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