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The role of plant trait variation in community assembly and plant diversity at local to continental scales.

机译:在本地到大陆范围内,植物性状变异在群落聚集和植物多样性中的作用。

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摘要

The trait based approach has been proposed as a way to reconcile community ecology. Despite recent advances in trait based ecology, such as the development of global trait databases and standardized methodology for trait collections, it remains unclear to what degree traits vary across individuals, species, and communities. In addition, the drivers of trait variation may shed light on the underlying processes that maintain species diversity and community assembly at local to continental scales yet these have been poorly studied. In this study, I examine both the magnitude of trait variation as well as the patterns of trait variation at local to continental scales in order to understand the drivers of diversity patterns across environmental gradients.;First, I quantified the magnitude of trait variation at local scales in a dry tropical forest and determined that intraspecific variation is not negligible and can be quite large for compound-leaved species. However, I showed that the sample sizes necessary for quantifying trait variation are tractable and should encourage the adoption of trait variation in trait based ecology. Second, I tested whether climatic variables are predominantly responsible for observed trait variation across dry tropical forests in the Americas. I showed that climatic variability, specifically variability in precipitation, explained a large degree of observed trait variation across dry tropical forests and may provide a unique approach for classifying dry tropical forests based on their inherent degree of climatic seasonality. Third, I quantified patterns of trait variation at continental scales across elevational gradients at high to low latitudes. I showed that climatic variables largely drive patterns of trait variation at high latitudes while biotic factors largely drive patterns of trait variation at low, tropical latitudes. This finding has implications for understanding large-scale patterns of species diversity across elevational and latitudinal gradients. Finally, I apply trait variation to life history theory by quantifying variation in two life history traits (growth and reproduction) in a tropical tree species using a legacy dataset. I showed that variation in these two life history traits is due to both resource availability and allometric related effects on both traits. In sum, this study advances our understanding of the magnitude and underlying drivers of trait variation at local to continental scales.
机译:已经提出了基于特征的方法,作为调和社区生态的一种方法。尽管基于特征的生态学方面取得了最新进展,例如开发了全球性状数据库和用于特征收集的标准化方法,但仍不清楚性状在不同程度上因个体,物种和社区而异。此外,性状变异的驱动力可能揭示了在局部至大陆范围内维持物种多样性和群落聚集的潜在过程,但对这些过程的研究却很少。在这项研究中,我研究了性状变异的大小以及局部到大陆尺度上性状变异的模式,以了解跨环境梯度的多样性模式的驱动力;首先,我量化了局部性状的特征变异的幅度可以在干燥的热带森林中生长,并确定种内变异不可忽略,而对于有叶阔叶树种而言,变异可能很大。但是,我证明量化性状变异所必需的样本数量是易处理的,应该鼓励在基于性状的生态学中采用性状变异。其次,我测试了气候变量是否主要是导致美洲干燥热带森林中观察到的性状变化的原因。我发现气候变化,特别是降水变化,解释了热带干旱森林中观察到的大量性状变化,并可能根据热带气候固有的气候季节性程度为干旱热带森林分类提供独特的方法。第三,我量化了从高纬度到低纬度的海拔梯度在大陆尺度上性状变化的模式。我发现气候变量在很大程度上驱动了高纬度地区性状的变化,而生物因素在很大程度上推动了热带低纬度地区的性状的变化。这一发现对理解跨海拔和纬度梯度的物种多样性的大规模模式具有启示意义。最后,我通过使用遗留数据集量化热带树木物种中两个生命史特征(生长和繁殖)的变异,将特征变异应用于生命史理论。我证明了这两个生活史特征的变异是由于资源的可获得性和对这两个特征的异速生长相关的影响。总而言之,这项研究使我们对局部到大陆尺度的性状变异的大小和潜在动因有了更深入的了解。

著录项

  • 作者

    Hulshof, Catherine M.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Biology Ecology.;Environmental Sciences.;Biology Botany.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 169 p.
  • 总页数 169
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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