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首页> 外文期刊>Global change biology >Northward displacement of optimal climate conditions for ecotypes of Eriophorum vaginatum L. across a latitudinal gradient in Alaska
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Northward displacement of optimal climate conditions for ecotypes of Eriophorum vaginatum L. across a latitudinal gradient in Alaska

机译:跨纬度梯度在阿拉斯加对生态型阴道草的最佳气候条件的北移

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摘要

Plants are often genetically specialized as ecotypes attuned to local environmental conditions. When conditions change, the optimal environment may be physically displaced from the local population, unless dispersal or insitu evolution keep pace, resulting in a phenomenon called adaptational lag. Using a 30-year-old reciprocal transplant study across a 475km latitudinal gradient, we tested the adaptational lag hypothesis by measuring both short-term (tiller population growth rates) and long-term (17-year survival) fitness components of Eriophorum vaginatum ecotypes in Alaska, where climate change may have already displaced the optimum. Analyzing the transplant study as a climate transfer experiment, we showed that the climate optimum for plant performance was displaced ca. 140km north of home sites, although plants were not generally declining in size at home sites. Adaptational lag is expected to be widespread globally for long-lived, ecotypically specialized plants, with disruptive consequences for communities and ecosystems.
机译:植物通常在基因上被改造为适合当地环境条件的生态型。当条件改变时,除非分散或原位进化保持同步,否则最佳环境可能会与当地人口发生物理错位,从而导致称为适应滞后的现象。我们在475 km的纬度梯度上进行了30年的双向移植研究,我们通过测量生态型阴道生态草的短期(分iller人口增长率)和长期(17年生存)适应性成分,测试了适应滞后假说。在阿拉斯加,气候变化可能已经取代了最佳选择。通过将移植研究作为气候转移实验进行分析,我们发现,对于植物生长性能而言,最佳气候被取代了。在家园以北140公里处,尽管家园的植物大小通常没有减少。适应滞后现象预计将在全球范围内广泛存在,以供长期生存的,具有生态学意义的专门植物使用,对社区和生态系统造成破坏性影响。

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