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Thermal tolerance, acclimatory capacity and vulnerability to global climate change

机译:热耐受性,适应能力和对全球气候变化的脆弱性

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摘要

Despite evidence that organismal distributions are shifting in response to recent climatic warming, we have little information on direct links between species' physiology and vulnerability to climate change. We demonstrate a positive relationship between upper thermal tolerance and its acclimatory ability in a well-defined clade of closely related European diving beetles. We predict that species with the lowest tolerance to high temperatures will be most at risk from the adverse effects of future warming, since they have both low absolute thermal tolerance and poor acclimatory ability. Upper thermal tolerance is also positively related to species' geographical range size, meaning that species most at risk are already the most geographically restricted ones, being endemic to Mediterranean mountain systems. Our findings on the relationship between tolerance and acclimatory ability contrast with results from marine animals, suggesting that generalizations regarding thermal tolerance and responses to future rapid climate change may be premature.
机译:尽管有证据表明生物体分布正在响应最近的气候变暖而发生变化,但我们几乎没有有关物种生理与气候变化脆弱性之间直接联系的信息。我们证明了在紧密相关的欧洲潜水甲虫的明确分支中,较高的耐​​热性与其适应能力之间存在正相关关系。我们预测,对高温的耐受性最低的物种将受到未来变暖的不利影响的最大风险,因为它们的绝对热耐受性低且适应能力差。较高的耐热性也与物种的地理范围大小成正比,这意味着处于最高风险的物种已经是地理上受限制最大的物种,是地中海山区系统特有的。我们关于耐受性和适应能力之间关系的发现与海洋动物的结果相反,这表明关于热耐受性和对未来快速气候变化的反应的概括可能为时过早。

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