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Rapid increase in growth and productivity can aid invasions by a non-native tree

机译:快速增长的生产力和生产力可以帮助非本地树木入侵

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摘要

Research on biological invasions has produced detailed theories describing range expansions of introduced populations. However, current knowledge of evolutionary factors associated with invasive range expansions, especially those related to rapid evolution of long-lived organisms, is still rudimentary. Here, we used a system of six 40-year-old invasive pine populations that originated from replicated introduction events to study evolution in productivity, growth, and chemical defence traits. We tested the hypotheses that invasive populations were undergoing rapid phenotypic change as populations spread, that populations exhibit trade-offs between evolution in growth and chemical defences, and that rates of rapid evolution in plant growth and productivity effect rates of invasion. Although all invasions started from replicated pools of genetic material and equal propagule pressure, we found divergence in mean values for the six invasive populations in the six traits measured. Not only were there between-population variations but also invasive populations were also rapidly changing along each invasive population expansion. Two populations displayed greater leaf areas (LAs) and smaller specific LAs (SLAs) during range expansion. Four populations had faster growth rates at the leading edge of the invasion front in comparison with plants at the rear edge. In terms of total plant defences, non-volatile resin increased in plants along one invasion gradient and decreased in a second, total needle phenolics increased in plants along one invasion gradient and total wood phenolics increased in plants along the one invasion gradient and decreased in a second. We found no trade-offs between investments in growth and chemical defence. Also, faster rates of change in growth rate and LA were positively associated with greater dispersal distances of invasive populations, suggesting rapid evolution may increase invasiveness. Understanding the roles of both natural and human-mediated ecological and evolutionary processes in population-level dynamics is key to understanding the ability of non-native species to invade.
机译:关于生物入侵的研究已经产生了详细的理论,描述了引入种群的范围扩展。但是,与侵入性范围扩展有关的进化因素的当前知识,特别是与长寿生物的快速进化有关的进化因素,仍然是基本的。在这里,我们使用了一个系统,该系统由六个具有40年历史的入侵松树种群组成,这些种群起源于重复的引进事件,以研究生产力,生长和化学防御性状的演变。我们检验了以下假设:入侵种群随着种群扩散而经历快速的表型变化,种群表现出生长进化与化学防御之间的权衡,植物生长的快速进化速率和入侵的生产率影响速率。尽管所有入侵都是从遗传物质的复制池和相等的繁殖体压力开始的,但我们发现在所测量的六个特征中,六个入侵种群的平均值存在差异。不仅种群之间存在差异,而且随着每次入侵种群的扩展,入侵种群也在迅速变化。在范围扩展期间,两个种群显示出较大的叶面积(LA)和较小的特定LA(SLA)。与后缘的植物相比,入侵前缘的四个种群的生长速度更快。就植物总防御力而言,植物中的非挥发性树脂沿一种入侵梯度增加,而在一秒内下降,植物中的总针状酚类化合物沿一种入侵梯度增加,而总木酚类化合物沿一种入侵梯度增加,而总木酚类化合物沿一种入侵梯度减少。第二。我们发现在增长和化学防御方面的投资之间没有权衡取舍。而且,生长速率和LA的更快变化速率与更大的入侵种群扩散距离呈正相关,这表明快速进化可能会增加入侵能力。了解自然和人类介导的生态和进化过程在种群水平动态中的作用,是了解非本地物种入侵能力的关键。

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