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Population dynamics and invasion rate of an invasive, tropical understory shrub, Ardisia elliptica.

机译:入侵的热带林下灌木Ardisia elliptica的种群动态和入侵率。

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摘要

Populations of invasive, non-native plant species readily establish new populations, maintain high growth rates, occur at high densities, and exclude populations of native species. Because population explosion is the first step in biological invasions, considerable insight into the processes that contribute to the success of invasive species can be gained from population level studies. The goal of this research was to understand the factors and processes that are contributing to the demographic success of an invasive tropical shrub (Ardisia elliptica) within local patches and across the landscape in Everglades National Park. I used matrix models to evaluate which life-history stages may be contributing the most to population growth and spread in southern Florida and to evaluate how different types of dispersal agents may contribute to its spread. A. elliptica is an understory shrub that can form dense thickets and exclude native plants. Results from this study suggest that water availability places a limit on seed survival and germination strongly influencing the distribution of A. elliptica and the potential impact it will have on native communities. A habitat dominated by A. elliptica supports an impoverished bird community and favors dominance by Gray Catbirds. Consistent with the enemy release hypothesis, A. elliptica suffered significantly lower foliar herbivory rates than its native congener, A. escallonioides, however, results from a simulated herbivory experiment indicated that even moderate levels of leaf area loss over a year did not have any significant impacts on its growth or potential reproductive output. Population dynamics of A. elliptica varied spatially and temporally. For populations that had the highest growth rates, elasticity structure was evenly distributed throughout the life cycle. Despite the abundance of catbirds in habitats dominated by A. elliptica and their fondness for A. elliptica fruits, catbirds may not have contributed much to the rate of spread of A. elliptica across the study region. Instead, infrequent long-distance dispersal by raccoons may have been more important to its invasion rate. Simulations indicated that only an integrative approach to management that targets multiple life history processes will result in a substantial reduction in the population growth rate of A. elliptica.
机译:入侵性,非本土植物物种的种群很容易建立新种群,保持较高的生长速度,以高密度发生,并且不包括本土物种。由于种群爆炸是生物入侵的第一步,因此可以从种群水平研究中深入了解有助于入侵物种成功的过程。这项研究的目的是了解在大沼泽地国家公园内局部斑块内以及整个景观中入侵热带灌木(Ardisia elliptica)在人口统计方面取得成功的因素和过程。我使用矩阵模型来评估哪些生命史阶段可能对佛罗里达州南部的人口增长和传播贡献最大,并评估不同类型的传播媒介如何对其传播产生影响。椭圆草是一种林下灌木,可形成致密的灌木丛,并排斥本地植物。这项研究的结果表明,水的可利用性限制了种子的存活和发芽,极大地影响了椭圆菌的分布及其对当地社区的潜在影响。由椭圆形小球菌(A. elliptica)主导的栖息地为贫困的鸟类群落提供了支持,并支持灰猫(Gray Catbirds)的优势地位。与敌方释放假说相符,椭圆形拟南芥的叶食草率明显低于其本地同类物埃斯卡隆尼德,但模拟食草试验的结果表明,即使一年中叶面积的中等损失也没有任何显着性。影响其增长或潜在的生殖产出。椭圆果蝇的种群动态在空间和时间上都变化。对于增长率最高的人群,弹性结构在整个生命周期中分布均匀。尽管在以椭圆虫为主的生境中有大量的鸟鸟,并且他们喜欢椭圆形的果实,但猫鸟可能对椭圆菌在整个研究区域的传播速度没有太大贡献。取而代之的是,浣熊很少进行远距离驱散可能对其入侵率更为重要。模拟表明,只有针对多种生活史过程的综合管理方法才会导致椭圆果蝇种群增长率的大幅下降。

著录项

  • 作者

    Koop, Anthony Louis.;

  • 作者单位

    University of Miami.;

  • 授予单位 University of Miami.;
  • 学科 Biology Ecology.; Biology Botany.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 209 p.
  • 总页数 209
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生态学(生物生态学);植物学;
  • 关键词

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