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Biodiversity patterns in tropical montane rainforest flora of Costa Rica.

机译:哥斯达黎加热带山区雨林植物区系中的生物多样性模式。

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摘要

This dissertation examines patterns of plant biodiversity and distribution of understory shrubs in the pantropical and specious family, Rubiaceae, in montane rainforest in Costa Rica. Conducting vegetation surveys between 100 and 2800 m along a continuous elevational gradient in old growth tropical rainforest, I tested the predictions of competing hypotheses for species richness patterns across various environmental gradients. These hypotheses included mid domain effect, area effect, climatic variables, and environmental variables such as soil nutrients. Results indicated a peak in species richness in the mid-elevations, with rainfall best predicting richness.;A test of species propagation methods and a common garden transplant design enabled an investigation into the vulnerability of understory species to increasing temperatures associated with global climate change. A factorial design identified the most effective propagation methods for cuttings across substrate, chemical applications of rooting hormone, cutting type and life form within six species of the genus Psychotria (Rubiaceae). Cutting survival and biomass accumulation were not influenced by use of rooting hormone. The effects of substrate, cutting type and growth form produced significantly different results with the greatest survival in forest soil treatments in shadehouses, using stem cuttings and small shruby growth forms.;Physiological examinations of leaf temperature tolerance for species in the genus Psychotria, specifically investigating the performance of the photosystem II, revealed complex patterns of response to predicted warming. Within naturally occurring individuals along the elevational gradient and cuttings transplanted to a common garden, there were little direct effects of temperature on photosystem II, due to broad temperature tolerances. However, biomass accumulation was reduced with increased warming demonstrating an important direct effect on productivity.;Species responses to key factors such as temperature and rainfall are complex and species-specific but overall, as shown here, they influence the distribution of biodiversity in montane tropical ecosystems. Accurately predicting the effects of global climate change on the future distributions of tropical species enables us to assess the vulnerability of montane rainforests to global warming and better strive towards its protection for future generations, particularly where biodiversity is high in the mid-elevations, which are poorly protected in existing reserves.
机译:本文研究了哥斯达黎加山区热带雨林的泛热带和杂种科茜草科的植物生物多样性模式和林下灌木的分布。在旧的热带雨林中,沿着连续的海拔梯度在100到2800 m之间进行植被调查,我测试了在各种环境梯度下关于物种丰富度模式的竞争假设的预测。这些假设包括中域效应,面积效应,气候变量和环境变量,例如土壤养分。结果表明中部物种丰富度达到峰值,降雨最能预测丰富度。通过对物种繁殖方法的测试和常见的花园移栽设计,可以调查林下物种对与全球气候变化相关的温度升高的脆弱性。一个析因设计确定了最有效的繁殖方法,可用于跨越基层的插条,生根激素的化学应用,插条类型和六种精神科(菊科)生命形式的生命形式。 use插激素不会影响插存活和生物量积累。基质,cutting插类型和生长形式的影响产生了截然不同的结果,其中使用茎插条和小的灌木状生长形式在遮荫棚的森林土壤处理中具有最大的存活率。光系统II的性能揭示了对预期变暖的复杂响应模式。在沿海拔梯度自然发生的个体中,以及将插枝移植到公共花园中,由于温度耐受性较广,温度对光系统II的直接影响很小。然而,生物量积累随着升温的增加而减少,这表明对生产力有重要的直接影响。;物种对关键因素(例如温度和降雨)的反应是复杂的,且因物种而异,但总体而言,如此处所示,它们影响山地热带生物多样性的分布生态系统。准确预测全球气候变化对热带物种未来分布的影响,使我们能够评估山地雨林对全球变暖的脆弱性,并更好地致力于保护子孙后代,尤其是在海拔较高的生物多样性较高的地区现有储备保护不力。

著录项

  • 作者

    Gilman, Alex Caroline.;

  • 作者单位

    University of California, Los Angeles.;

  • 授予单位 University of California, Los Angeles.;
  • 学科 Biology Botany.;Biology Ecology.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 123 p.
  • 总页数 123
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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