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适应的空间尺度在本地一年生植物及其对气候变化响应中的作用。

The spatial scale of adaptation in a native annual plant and its implications for responses to climate change.

机构信息

Department of Ecology, Evolution and Behavior, University of Minnesota, St. Paul, Minnesota, 55108.

Department of Botany, University of Wyoming, Laramie, Wyoming, 82071.

出版信息

Evolution. 2022 Dec;76(12):2916-2929. doi: 10.1111/evo.14583. Epub 2022 Aug 7.

Abstract

Spatial patterns of adaptation provide important insights into agents of selection and expected responses of populations to climate change. Robust inference into the spatial scale of adaptation can be gained through reciprocal transplant experiments that combine multiple source populations and common gardens. Here, we examine the spatial scale of local adaptation of the North American annual plant common ragweed, Ambrosia artemisiifolia, using data from four common gardens with 22 source populations sampled from across a ∼1200 km latitudinal gradient within the native range. We found evidence of local adaptation at the northernmost common garden, but maladaptation at the two southern gardens, where more southern source populations outperformed local populations. Overall, the spatial scale of adaptation was large-at the three gardens where distance between source populations and gardens explained variation in fitness, it took an average of 820 km for fitness to decline to 50% of its predicted maximum. Taken together, these results suggest that climate change has already caused maladaptation, especially across the southern portion of the range, and may result in northward range contraction over time.

摘要

适应的空间模式为选择因子和种群对气候变化的预期反应提供了重要的见解。通过结合多个来源种群和共同花园的相互移植实验,可以获得对适应的空间尺度的稳健推断。在这里,我们使用来自四个共同花园的数据,这些花园共有来自原生范围内约 1200 公里纬度梯度的 22 个来源种群,研究了北美一年生植物普通豚草(Ambrosia artemisiifolia)的局部适应的空间尺度。我们发现最北部的共同花园存在适应的证据,但在两个南部的花园中存在适应不良的证据,在那里更多的南部来源种群表现优于当地种群。总的来说,适应的空间尺度很大——在三个花园中,来源种群和花园之间的距离解释了适应性的变化,适应性下降到预测最大值的 50%平均需要 820 公里。这些结果表明,气候变化已经导致了适应不良,尤其是在范围的南部,随着时间的推移,可能会导致范围向北收缩。

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