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Seed production is reduced by small population size in natural populations of the invasive grass Lolium multiflorum

机译:入侵草多花黑麦草自然种群中种群数量少,种子产量降低

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As founders of new invasions or survivors of control efforts, small populations can play important roles in biological invasions. Theory and models have explored how population size can affect invasion probability and dynamics. In contrast, there have been few studies of small population size and invasions in the wild, especially for plants. Here, we identified 21 naturally-occurring small populations of the invasive annual grass Lolium multiflorum to elucidate the effects of population size on plant reproduction and potential invasiveness. We compared seed production of focal plants to three attributes of the population: population size, a focal plant’s floret neighborhood (a measure of the size and pollen production of nearby potential pollen donors), and focal plant size. Population size and floret neighborhood were weighted by inter-plant distance to account for variation in density and spatial arrangement. Variation among populations in the proportion of florets producing a seed was explained by population size and floret neighborhood. In contrast, the focal plant’s size did not significantly affect the seed production proportion. A decrease in reproduction due to the size and density of the population (while accounting for maternal size) is an Allee effect, which may limit the ability to predict invasion risks and rates early in the invasion process, particularly if the effect is not recognized.
机译:作为新的入侵者的建立或控制努力的幸存者,小种群可以在生物入侵中发挥重要作用。理论和模型已经探索了人口规模如何影响入侵概率和动力学。相比之下,很少有关于小种群数量和在野外入侵的研究,特别是对于植物。在这里,我们确定了21种自然存在的入侵一年生禾本科黑麦草的小种群,以阐明种群规模对植物繁殖和潜在入侵的影响。我们将重点植物的种子产量与人口的三个属性进行了比较:种群大小,重点植物的小花邻域(衡量附近潜在花粉供体的大小和花粉产量的标准)和重点植物的大小。通过植物间距离对种群大小和小花邻域加权,以说明密度和空间布置的变化。种群大小和小花邻域可以解释种群之间产生种子的小花比例的变化。相反,焦点植物的大小并没有显着影响种子产量的比例。由于人口的大小和密度(同时考虑孕产妇的大小)而导致的繁殖减少是Allee效应,这可能会限制在入侵过程早期预测入侵风险和发生率的能力,特别是如果这种效应未被认识。

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