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Effects of local and landscape processes on animal distribution and abundance.

机译:局部和景观过程对动物分布和丰度的影响。

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摘要

Investigations of processes that drive animal distribution and abundance are often approached at one of two different scales and therefore focus on different processes. At local scales, animals are thought to select home ranges or territory patches in an ideal manner by occupying them in order of their fitness potential, but a variety of processes can decouple choices from their fitness consequences and create non-ideal patterns of distribution. At landscape scales, the spatial arrangement of habitat patches and their size and isolation are thought to influence distribution patterns because extinction probability declines with increasing patch area and colonization probability declines with increasing patch isolation. Although understanding the relative effects of local and landscape processes on distribution is essential for conservation, very few studies have explicitly considered the fitness potential or quality of habitat when doing so, especially at small scales relevant to the behavioral choices of individuals. I integrated behavioral and landscape approaches for understanding distribution by assessing the relative and combined effects of habitat quality at territory-specific scales and the effects of habitat amount, habitat configuration, and matrix structure at landscape scales on long-term occupancy dynamics of Ferruginous Pygmy-Owls over 12 years. To quantify habitat quality, I considered the estimated additive and interactive effects of habitat resources, stochastic factors (e.g., weather), and conspecific density on reproductive output based on extensive demographic monitoring over 10 years in the same territory patches.;Habitat resources explained a much greater proportion of variation in reproductive output than weather or conspecifics, but realized habitat quality was best described by the interactive effects of all these factors. High-quality habitats buffered the negative effects of conspecifics and amplified the benefits of favorable weather, but did not buffer the disadvantages of harsh weather. The positive, density-independent effects of favorable weather at low conspecific densities were offset by intraspecific competition at high densities. Habitat quality had greater effects than landscape processes on patch occupancy dynamics, and its effects were best described by interactions among habitat resources, weather, and conspecifics. Nonetheless landscape factors also had important effects: habitat amount had greater effects than habitat fragmentation or matrix structure, effects that were either positive or negative depending on local habitat quality. Although metapopulation theory is the dominant paradigm upon which many conservation strategies are based, improving local habitat quality may yield greater returns, especially when the surrounding landscape context is considered.
机译:通常以两种不同的规模之一来研究驱动动物分布和丰富度的过程,因此着眼于不同的过程。在地方尺度上,人们认为动物会按照其适应潜力的顺序通过占据它们来以理想的方式选择家园或地块,但是各种过程可能会使选择与其适应性后果脱钩,并形成非理想的分布方式。在景观尺度上,栖息地斑块的空间布局及其大小和隔离被认为会影响分布模式,因为灭绝概率随斑块面积的增加而降低,而定居概率随斑块隔离度的增加而降低。尽管了解局部和景观过程对分布的相对影响对于保护至关重要,但很少有研究明确考虑栖息地的适应潜力或质量,尤其是在与个人行为选择有关的小范围内。通过评估特定地区尺度上栖息地质量的相对和综合影响以及景观尺度上栖息地数量,栖息地配置和基质结构对铁质侏儒-长期居住动态的影响,我整合了行为和景观方法来理解分布。猫头鹰超过12年。为了量化栖息地质量,我根据对同一地区10年的广泛人口监测,考虑了栖息地资源,随机因素(例如天气)和同种密度对生殖产出的估计的加性和交互作用。与天气或同种物种相比,生殖产出变化的比例要大得多,但是所有这些因素的相互作用都可以最好地说明已实现的栖息地质量。高质量的栖息地缓冲了物种的负面影响,扩大了有利天气的好处,但没有缓解恶劣天气的不利影响。低同种密度下有利天气对密度的积极影响不被高密度种内竞争所抵消。生境质量对斑块占用动态的影响大于景观过程,其影响最好通过栖息地资源,天气和物种之间的相互作用来描述。尽管如此,景观因素也有重要影响:生境数量比生境破碎化或基质结构影响更大,取决于当地生境质量,其影响是正面的还是负面的。尽管人口迁移理论是许多保护策略所依据的主要范式,但改善当地栖息地质量可能会产生更大的回报,尤其是考虑到周围的景观环境时。

著录项

  • 作者

    Flesch, Aaron David.;

  • 作者单位

    University of Montana.;

  • 授予单位 University of Montana.;
  • 学科 Biology Ecology.;Biology Zoology.;Agriculture Wildlife Conservation.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 205 p.
  • 总页数 205
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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