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Biodiversity in a rapidly changing world: From local interactions to large scale patterns.

机译:瞬息万变的世界中的生物多样性:从本地互动到大规模模式。

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摘要

Invasions and extinctions have reorganized the earth's biota and altered biodiversity across all spatial scales. At the local scale, invasions have outpaced extinctions for many taxonomic groups. This suggests that food webs, which represent feeding interactions at the local scale, may be increasing in species richness. Importantly, the non-random addition and deletion of species has also altered the compositional similarity between regions or locales (beta diversity). In this dissertation, I addressed local scale interactions by exploring the influence of food web structure on invasion success in model food webs. I also quantified patterns of change in taxonomic and functional similarity across space and time to understand the effects of invasions and extinctions on large scale spatial patterns of diversity.;I used a Lotka-Volterra food web model to develop predictions about how trophic structure influences invasion success (Chapter 1). My model makes four predictions that can be tested in natural or experimental communities; (1) invasion success of top predators will increase with greater diversity in native prey items, (2) basal invasion will be controlled by the number of native consumers, (3) invasive omnivore establishment will be controlled by diversity in the lowest trophic level of potential prey items, and (4) intermediate invasion success will be controlled by the diversity of native predators.;I developed two methods that measure large scale spatial patterns of biodiversity. The dendrogram-based method, which quantifies change in taxonomic similarity, (Chapter 2) introduces three metrics that each describes a different aspect of change in taxonomic similarity as depicted by a dendrogram. The utility of the dendrogram-based method was exemplified by the case study of the Hawaiian Island avifauna, which showed that between-island similarity in the historical time period follows the geologic history of the islands and the influence of prior extinction filters on the perceived homogenization of assemblages. The second method is a trait based method for quantifying change in functional similarity through time (Chapter 3). Simulations indicate that functional and taxonomic similarity are positively correlated as trait complementarity increases. Functional and taxonomic similarity are positively correlated for the breeding and foraging traits in bird assemblages at ten locales across the United States from 1968 to 2008.;The impact of humans on biodiversity is complex in that it involves measuring both taxonomic and functional attributes of communities across different spatial scales. Methods for elucidating anthropogenic impacts on biodiversity and ecosystem function must take this into consideration when assessing impacts and developing conservation planning.
机译:入侵和灭绝重新组织了地球的生物群,并在所有空间尺度上改变了生物多样性。在当地范围内,许多生物分类的入侵已超过灭绝。这表明,代表当地规模的摄食相互作用的食物网可能会增加物种丰富度。重要的是,物种的非随机添加和删除也改变了区域或区域之间的组成相似性(β多样性)。在本文中,我通过探讨食物网结构对模型食物网入侵成功的影响,探讨了局部尺度的相互作用。我还量化了空间和时间上生物分类学和功能相似性变化的模式,以了解入侵和灭绝对大规模多样性空间格局的影响。;我使用Lotka-Volterra食物网模型对营养结构如何影响入侵进行了预测成功(第1章)。我的模型做出了四个可以在自然或实验社区中检验的预测。 (1)顶级掠食者的入侵成功将随着本地猎物的多样性增加而增加;(2)基础入侵将由本地消费者的数量控制;(3)入侵杂食动物的建立将受到最低营养级别的多样性的控制。潜在的猎物,以及(4)中间入侵的成功将由本地捕食者的多样性控制。我开发了两种方法来测量生物多样性的大规模空间格局。基于树形图的方法可以量化分类相似性的变化(第2章)引入了三个度量,每个度量描述了树形图所描绘的分类相似性变化的不同方面。以树状图为基础的方法的实用性以夏威夷岛鸟类的案例研究为例,该研究表明,历史时期内的岛屿间相似性遵循岛屿的地质历史以及先前的消光滤镜对感知同质化的影响的集合。第二种方法是基于特征的方法,用于量化功能相似性随时间的变化(第3章)。模拟表明,功能和分类相似性与性状互补性增加成正相关。从1968年到2008年,美国十个地区的鸟类组合的繁殖和觅食性状在功能和分类上的相似性呈正相关。;人类对生物多样性的影响是复杂的,因为它涉及测量整个社区的分类和功能属性不同的空间尺度。在评估影响和制定保护计划时,必须考虑到人为因素对生物多样性和生态系统功能的影响的方法。

著录项

  • 作者

    Baiser, Benjamin.;

  • 作者单位

    Rutgers The State University of New Jersey - New Brunswick.;

  • 授予单位 Rutgers The State University of New Jersey - New Brunswick.;
  • 学科 Biology Ecology.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 135 p.
  • 总页数 135
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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