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Coevolution between invasive and native plants driven by chemical competition and soil biota

机译:化学竞争和土壤生物群驱动的入侵植物与本地植物之间的共同进化

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Although reciprocal evolutionary responses between interacting species are a driving force behind the diversity of life, pairwise coevolution between plant competitors has received less attention than other species interactions and has been considered relatively less important in explaining ecological patterns. However, the success of species transported across biogeographic boundaries suggests a stronger role for evolutionary relationships in shaping plant interactions. Alliaria petiolata is a Eurasian species that has invaded North American forest understories, where it competes with native understory species in part by producing compounds that directly and indirectly slow the growth of competing species. Here I show that populations of A. petiolata from areas with a greater density of interspecific competitors invest more in a toxic allelochemical under common conditions. Furthermore, populations of a native competitor from areas with highly toxic invaders are more tolerant to competition from the invader, suggesting revolutionary dynamics between the species. Field reciprocal transplants confirmed that native populations more tolerant to the invader had higher fitness when the invader was common, but these traits came at a cost when the invader was rare. Exotic species are often detrimentally dominant in their new range due to their evolutionary novelty; however, the development of new coevolutionary relationships may act to integrate exotic species into native communities.
机译:尽管相互作用物种之间的相互进化反应是生命多样性背后的驱动力,但植物竞争者之间的成对协同进化受到的关注少于其他物种相互作用,并且在解释生态模式方面被认为相对不那么重要。但是,跨生物地理边界运输的物种的成功表明,进化关系在塑造植物相互作用中具有更强的作用。蒜香小蒜属于欧亚物种,已入侵北美森林林下,在那里与本地林下种竞争,部分原因是通过产生直接或间接减慢竞争种生长的化合物。在这里,我表明,在共同条件下,种间竞争者密度较高的地区的矮牵牛种群对有毒的化感物质的投资更多。此外,来自具有高毒性入侵者地区的本地竞争对手的种群更能抵抗来自入侵者的竞争,这表明物种之间具有革命性的动态。互惠的田间移植证实,当入侵者很常见时,对入侵者更宽容的原住民具有较高的适应性,但是当入侵者很少时,这些特征就付出了代价。外来物种由于其进化上的新颖性,常常在其新范围内处于不利地位。但是,新的共同进化关系的发展可能会起到将外来物种融入本土社区的作用。

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