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Adaptive divergence at the margin of an invaded range

机译:入侵范围边缘的自适应发散

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摘要

Invasive plant species threaten biological communities globally. However, relatively little is known about how evolutionary processes vary over the course of an invasion. To evaluate the importance of historical and adaptive drivers of range expansion, we compare the performance of North American populations of invasive Lonicera japonica from areas established 100-150 years ago, now the southern core of the range, to populations from the northern range margin, established within the last 65 years. Growth and survival of individuals from 17 core and 14 margin populations were compared in common gardens at both regions. After three years, margin plants were larger than core plants regardless of planting region, with 34% more branches and 36% greater biomass. Growth rate was directly related to survival, and margin plants also had 30% greater survival than core plants across both regions. Larger size of individuals from margin populations suggests either that the shorter growing period at the northern margin has selected for more rapid growth or that range expansion has selected for plants with a greater colonizing ability, including rapid establishment and growth. Because this evolution has resulted in enhanced survival and increased growth rate it may drive spread, increasing the likelihood of further invasion.
机译:外来入侵物种威胁着全球的生物群落。然而,关于入侵过程中进化过程如何变化的知识知之甚少。为了评估范围扩展的历史因素和适应性驱动因素的重要性,我们比较了100-150年前建立的,现在是该范围南部核心地区的北美入侵忍冬种群的性能与北部范围边缘的种群的性能,成立于过去65年。在两个地区的公共花园中比较了来自17个核心和14个边缘人群的个体的生长和存活情况。三年后,无论种植区域如何,边缘植物都比核心植物大,分支增加34%,生物量增加36%。生长率与存活率直接相关,在两个地区,边缘植物的存活率也比核心植物高30%。来自边缘种群的个体数量较大,这表明要么选择了北部边缘较短的生长期以实现更快的生长,要么选择了具有更大定植能力(包括快速建立和生长)的植物的范围扩展。由于这种进化导致了存活率的提高和增长率的提高,因此可能会推动扩散,增加进一步入侵的可能性。

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