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首页> 外文期刊>Climate Change Responses >Historical changes in thermoregulatory traits of alpine butterflies reveal complex ecological and evolutionary responses to recent climate change
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Historical changes in thermoregulatory traits of alpine butterflies reveal complex ecological and evolutionary responses to recent climate change

机译:高寒蝴蝶温度调节性状的历史变化揭示了对近期气候变化的复杂生态和进化反应

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BackgroundTrait evolution and plasticity are expected to interactively influence responses to climate change, but rapid changes in and increased variability of temperature may limit evolutionary responses. We use historical specimens to document changes in the size and thermoregulatory traits of a montane butterfly, Colias meadii, in Colorado, USA over the past 60?years (1953–2012). We quantify forewing wing length, ventral wing melanin that increases solar absorption, and the length of thorax setae that reduces convective heat loss.ResultsThe mean of all three traits has increased during this time period despite climate warming. Phenological shifts may have extended the active season earlier at low elevations and later at high elevations, increasing exposure to cool temperatures and selecting for increases in thermoregulatory traits. Fitness increases at higher elevations due to warming could also increase thermoregulatory traits. Warmer temperatures during pupal development and later flight dates in the season are associated with decreased wing melanin, indicating a role of phenotypic plasticity in historical trait changes.ConclusionsPhenotypic shifts result from a complex interplay of ecological and evolutionary responses to climate change. Environmental variability within and across seasons can limit the evolutionary responses of populations to increasing mean temperatures during climate change.
机译:背景特质的演变和可塑性预计会交互影响对气候变化的响应,但是温度的快速变化和温度变化性可能会限制进化的响应。我们使用历史标本记录了过去60年来(1953-2012年)美国科罗拉多州的山地蝴蝶Colias meadii的大小和温度调节性状的变化。我们量化了前翅的长度,增加太阳吸收的腹侧黑色素和减少对流热损失的胸部刚毛的长度。结果尽管气候变暖,这三个特征的平均值在这段时间内都增加了。物候变化可能在低海拔和高海拔之后早些时候延长了活动季节,增加了在凉爽温度下的暴露程度,并选择增加了温度调节性状。由于变暖,高海拔地区的体能增加也可能增加体温调节性状。 development发育期间的较暖温度和该季节的较晚飞行日期与机翼黑色素的减少有关,表明表型可塑性在历史性状变化中的作用。结论表型转变是由于生态学和进化对气候变化的反应相互影响所致。季节内和季节间的环境变化会限制人口对气候变化过程中平均气温升高的演化反应。

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