Three-Dimensional Habitat Structure Drives Avian Functional and Trait Diversity Across North America

IF 2.3 2区 生物学 Q2 ECOLOGY
Colin P. Sweeney, William Peterman, Kaiguang Zhao, Karen Goodell, Benjamin Zuckerberg, Marta A. Jarzyna
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Abstract

Understanding how three-dimensional (3D) habitat structure drives biodiversity patterns is key to predicting how habitat alteration and loss will affect species and community-level patterns in the future. To date, few studies have contrasted the effects of 3D habitat composition with those of 3D habitat configuration on biodiversity, with existing investigations often limited to measures of taxonomic diversity (i.e., species richness). Here, we examined the influence of Light Detecting and Ranging (LiDAR)-derived 3D habitat structure–both its composition and configuration–on multiple facets of bird diversity. Specifically, we used data from the National Ecological Observatory Network (NEON) to test the associations between 11 measures of 3D habitat structure and avian species richness, functional and trait diversity, and phylogenetic diversity. We found that 3D habitat structure was the most consistent predictor of avian functional and trait diversity, with little to no effect on species richness or phylogenetic diversity. Functional diversity and individual trait characteristics were strongly associated with both 3D habitat composition and configuration, but the magnitude and the direction of the effects varied across the canopy, subcanopy, midstory, and understory vertical strata. Our findings suggest that 3D habitat structure influences avian diversity through its effects on traits. By examining the effects of multiple aspects of habitat structure on multiple facets of avian diversity, we provide a broader framework for future investigations on habitat structure.

Abstract Image

三维栖息地结构驱动北美鸟类功能和性状多样性
了解三维(3D)栖息地结构如何驱动生物多样性模式是预测未来栖息地变化和丧失如何影响物种和群落水平模式的关键。迄今为止,很少有研究对比三维栖息地组成和三维栖息地配置对生物多样性的影响,现有的研究往往局限于分类多样性(即物种丰富度)的测量。在这里,我们研究了光探测和测距(LiDAR)衍生的三维栖息地结构(包括其组成和配置)对鸟类多样性的多个方面的影响。具体来说,我们使用国家生态观测站网络(NEON)的数据来测试11种三维栖息地结构与鸟类物种丰富度、功能和性状多样性以及系统发育多样性之间的关联。我们发现,三维栖息地结构是鸟类功能和性状多样性最一致的预测因子,对物种丰富度和系统发育多样性几乎没有影响。功能多样性和个体性状特征均与三维生境组成和构型密切相关,但影响的幅度和方向在冠层、亚冠层、中层和林下垂直层之间存在差异。我们的研究结果表明,三维栖息地结构通过对鸟类性状的影响来影响鸟类多样性。通过研究栖息地结构的多个方面对鸟类多样性的影响,我们为未来栖息地结构的研究提供了一个更广泛的框架。
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来源期刊
CiteScore
4.40
自引率
3.80%
发文量
1027
审稿时长
3-6 weeks
期刊介绍: Ecology and Evolution is the peer reviewed journal for rapid dissemination of research in all areas of ecology, evolution and conservation science. The journal gives priority to quality research reports, theoretical or empirical, that develop our understanding of organisms and their diversity, interactions between them, and the natural environment. Ecology and Evolution gives prompt and equal consideration to papers reporting theoretical, experimental, applied and descriptive work in terrestrial and aquatic environments. The journal will consider submissions across taxa in areas including but not limited to micro and macro ecological and evolutionary processes, characteristics of and interactions between individuals, populations, communities and the environment, physiological responses to environmental change, population genetics and phylogenetics, relatedness and kin selection, life histories, systematics and taxonomy, conservation genetics, extinction, speciation, adaption, behaviour, biodiversity, species abundance, macroecology, population and ecosystem dynamics, and conservation policy.
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