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Taxonomic, functional, and phenetic components of latitudinal gradients in biodiversity: Perspectives on the community ecology of New World bats.

机译:生物多样性中纬度梯度的分类,功能和物候成分:关于新大陆蝙蝠社区生态学的观点。

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摘要

The explanation of the mechanistic basis to latitudinal gradients in diversity has challenged ecologists for more than a quarter of a century. Although the ubiquity of the latitudinal gradient in species richness is well documented at coarse scales of resolution, it is unclear to what extent this pattern is recapitulated at not only the level of local communities but also for any other aspect of biodiversity. Because biodiversity represents the totality of variation in living things, it is likely that no one measure such as species richness, or any one perspective, such as that of taxonomic diversity, can provide a complete characterization. Investigations that explore a number of distinct aspects of biodiversity (i.e., taxonomic, functional, or phenetic diversity) will provide for more refined measures and potentially allow for deeper understanding into its distribution across space and time. I examined the way in which attributes of New World bat biodiversity varied with each other and with latitude. Species abundance distributions for 32 intensively sampled local sites between 42.25°N and 24.12°S latitude provided data from which I determined three suites of diversity measures, each of which provided a distinctive yet related characterization of biodiversity [taxonomic diversity (14 indices), functional diversity (4 indices), morphological diversity (6 indices)]. All components demonstrated similar relationships with each other as well as with latitude. Components of diversity were related by virtue of changes in magnitude and not changes in evenness and their highest diversities were found toward the equator and lowest diversities were found toward the poled. Nonetheless, gradients in functional and phenetic diversity not be accounted for solely by variation in taxonomic diversity. Moreover, quantitative differences regarding latitudinal gradients exist among components. These results exemplify that variation in biodiversity is complex throughout the New World. Moreover, its multifaceted nature admonished the difficulty of its estimation using single indices such as species richness. Future conservation efforts should embrace the complexity of biodiversity and strive to protect it in its numerous and varied forms.
机译:在过去的四分之一个世纪中,对多样性的纬度梯度的机理基础的解释一直对生态学家提出了挑战。尽管在粗略的分辨率下已很好地证明了物种丰富度的纬度梯度无处不在,但目前尚不清楚这种模式在多大程度上在地方社区和生物多样性的其他方面得以概括。由于生物多样性代表了生物多样性的全部变化,因此很可能没有一种方法(例如物种丰富度)或任何一种观点(例如生物分类多样性)都无法提供完整的特征。探索生物多样性许多不同方面(即生物分类,功能或物候多样性)的调查将提供更完善的措施,并有可能使人们更深入地了解其在空间和时间上的分布。我研究了新大陆蝙蝠生物多样性的属性相互之间和随纬度变化的方式。在北纬42.25°至24.12°S之间的32个密集采样的本地物种的物种丰度分布提供了数据,据此我确定了三套多样性指标,每套指标均提供了独特但相关的生物多样性特征[分类学多样性(14个指标),功能多样性(4个指标),形态多样性(6个指标)]。所有组件之间以及与纬度之间都显示出相似的关系。多样性的组成因幅度的变化而相关,而不是均匀性的变化,它们的最高多样性被发现朝向赤道,而最低多样性被发现朝向极地。但是,功能和物候多样性的梯度不能仅通过分类学多样性的变化来解释。此外,组件之间存在关于纬度梯度的定量差异。这些结果表明,整个新世界中生物多样性的变化是复杂的。此外,它的多面性使人们难以使用物种丰富度等单一指标进行估计。未来的保护工作应包括生物多样性的复杂性,并努力以多种多样的形式对其进行保护。

著录项

  • 作者

    Stevens, Richard Dallell.;

  • 作者单位

    Texas Tech University.;

  • 授予单位 Texas Tech University.;
  • 学科 Ecology.;Zoology.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 193 p.
  • 总页数 193
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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