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Genetic variation facilitates seedling establishment but not population growth rate of a perennial invader

机译:遗传变异促进幼苗的建立但不利于多年生入侵者的种群增长率

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摘要

>Background and Aims Assessing the demographic consequences of genetic variation is fundamental to invasion biology. However, genetic and demographic approaches are rarely combined to explore the effects of genetic variation on invasive populations in natural environments. This study combined population genetics, demographic data and a greenhouse experiment to investigate the consequences of genetic variation for the population fitness of the perennial, invasive herb Lupinus polyphyllus.>Methods Genetic and demographic data were collected from 37 L. polyphyllus populations representing different latitudes in Finland, and genetic variation was characterized based on 13 microsatellite loci. Associations between genetic variation and population size, population density, latitude and habitat were investigated. Genetic variation was then explored in relation to four fitness components (establishment, survival, growth, fecundity) measured at the population level, and the long-term population growth rate (λ). For a subset of populations genetic variation was also examined in relation to the temporal variability of λ. A further assessment was made of the role of natural selection in the observed variation of certain fitness components among populations under greenhouse conditions.>Key Results It was found that genetic variation correlated positively with population size, particularly at higher latitudes, and differed among habitat types. Average seedling establishment per population increased with genetic variation in the field, but not under greenhouse conditions. Quantitative genetic divergence (QST) based on seedling establishment in the greenhouse was smaller than allelic genetic divergence (F′ST), indicating that unifying selection has a prominent role in this fitness component. Genetic variation was not associated with average survival, growth or fecundity measured at the population level, λ or its variability.>Conclusions The study suggests that although genetic variation may facilitate plant invasions by increasing seedling establishment, it may not necessarily affect the long-term population growth rate. Therefore, established invasions may be able to grow equally well regardless of their genetic diversity.
机译:>背景和目标:评估遗传变异的人口统计学影响是入侵生物学的基础。但是,很少将遗传和人口统计学方法结合起来探讨遗传变异对自然环境中入侵种群的影响。本研究结合种群遗传学,人口统计学数据和温室试验,研究遗传变异对多年生入侵植物羽扇豆羽扇豆种群适应性的影响。>方法收集了37 L的遗传和人口统计学数据。在芬兰代表不同纬度的多叶population种群,并基于13个微卫星基因座对遗传变异进行了表征。研究了遗传变异与种群数量,种群密度,纬度和栖息地之间的关联。然后,研究了在人口水平上测得的四个适应性组成部分(建立,生存,生长,繁殖力)的遗传变异以及长期人口增长率(λ)。对于一部分人口,还检查了与λ的时间变异性相关的遗传变异。进一步评估了自然选择在温室条件下所观察到的种群中某些健身成分变化中的作用。>主要结果发现遗传变异与种群大小呈正相关,特别是在高纬度地区,并且在栖息地类型之间也有所不同。随着田间遗传变异,每个种群的平均苗木数量增加,但在温室条件下却没有。基于温室中幼苗建立的定量遗传差异(QST)小于等位基因遗传差异(F'ST),表明统一选择在该适应性成分中具有重要作用。遗传变异与群体水平上的平均存活,生长或繁殖力,λ或变异性无关。>结论研究表明,尽管遗传变异可能通过增加幼苗的形成而促进植物入侵,但可能不会必然影响人口的长期增长率。因此,无论其遗传多样性如何,既定的入侵都可能能够同样良好地生长。

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