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Differences in allometry and population structure between native and invasive populations of a tropical tree

机译:热带树木的原生种群和入侵种群之间的异速生长和种群结构差异

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Introduced species can establish self-replacing populations in introduction sites despite climatic differences between these sites and the native range. Schizolobium parahyba (Fabaceae) is a fast-growing tree from the Atlantic Forest in Brazil and is invasive in semideciduous forests. We studied the allometry and population structure of S. parahyba within its native and invaded ranges. We expected to find differences in allometric relationships and ontogenetic stage sizes between forest types. We measured individuals within native and invaded ranges and analysed height : diameter allometry using standardised major axis regression. We used the chi-squared test and permutational multivariate analysis of variance to compare the frequencies of individuals of each ontogenetic stage between native and invasive populations. We found that allometry differed between forest types for seedlings, but only marginally for adults. The population structure differed between ranges and suggests active recruitment of juvenile and subadult plants in invaded sites, where the species is naturalising.
机译:引入的物种可以在引进地点建立自我替代的种群,尽管这些地点与本地范围之间存在气候差异。 Schizolobium parahyba(Fabaceae)是来自巴西大西洋森林的快速生长的树木,在半落叶林中入侵。我们研究了 S的变构和种群结构。在其原生和侵袭范围内的副猪。我们期望在森林类型之间的异速生长关系和个体发育阶段大小上找到差异。我们测量了自然和侵入范围内的个体,并使用标准化的主轴回归分析了高度:直径异度。我们使用卡方检验和方差的排列多元分析来比较本地种群和入侵种群之间每个个体发育阶段个体的频率。我们发现,幼苗的异速生长法在不同类型的森林之间有所不同,但对于成虫而言仅略有不同。种群结构在不同范围之间有所不同,并表明在该物种正在归化的受侵害地点积极招募幼小和亚成年植物。

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