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鸟类塑造城市宽容度的特征在世界各地有所不同。

Traits shaping urban tolerance in birds differ around the world.

机构信息

Ecology and Evolutionary Biology, University of California, Los Angeles, Los Angeles, CA 90095, USA.

Ecology and Evolutionary Biology, University of California, Los Angeles, Los Angeles, CA 90095, USA.

出版信息

Curr Biol. 2023 May 8;33(9):1677-1688.e6. doi: 10.1016/j.cub.2023.03.024. Epub 2023 Apr 5.

Abstract

As human density increases, biodiversity must increasingly co-exist with urbanization or face local extinction. Tolerance of urban areas has been linked to numerous functional traits, yet few globally consistent patterns have emerged to explain variation in urban tolerance, which stymies attempts at a generalizable predictive framework. Here, we calculate an Urban Association Index (UAI) for 3,768 bird species in 137 cities across all permanently inhabited continents. We then assess how this UAI varies as a function of ten species-specific traits and further test whether the strength of trait relationships vary as a function of three city-specific variables. Of the ten species traits, nine were significantly associated with urban tolerance. Urban-associated species tend to be smaller, less territorial, have greater dispersal ability, broader dietary and habitat niches, larger clutch sizes, greater longevity, and lower elevational limits. Only bill shape showed no global association with urban tolerance. Additionally, the strength of several trait relationships varied across cities as a function of latitude and/or human population density. For example, the associations of body mass and diet breadth were more pronounced at higher latitudes, while the associations of territoriality and longevity were reduced in cities with higher population density. Thus, the importance of trait filters in birds varies predictably across cities, indicating biogeographic variation in selection for urban tolerance that could explain prior challenges in the search for global patterns. A globally informed framework that predicts urban tolerance will be integral to conservation as increasing proportions of the world's biodiversity are impacted by urbanization.

摘要

随着人口密度的增加,生物多样性必须越来越多地与城市化共存,否则将面临局部灭绝。城市地区的耐受性与许多功能特征有关,但很少有全球一致的模式出现来解释城市耐受性的变化,这阻碍了可推广的预测框架的尝试。在这里,我们为 137 个城市的 3768 种鸟类计算了一个城市关联指数 (UAI)。然后,我们评估了这种 UAI 如何随十个特定物种的特征而变化,并进一步测试了物种关系的强度是否随三个城市特定变量而变化。在十个物种特征中,有九个与城市耐受性显著相关。与城市相关的物种往往体型较小,领地性较弱,扩散能力较强,食性和栖息地范围较广,窝卵数较大,寿命较长,海拔限制较低。只有喙的形状与城市耐受性没有全球关联。此外,一些特征关系的强度因纬度和/或人类人口密度的不同而在城市之间有所不同。例如,体型和饮食广度的相关性在较高纬度更为明显,而在人口密度较高的城市中,领地性和寿命的相关性则降低。因此,在鸟类中,特征过滤器的重要性在不同城市中具有可预测的变化,这表明对城市耐受性的选择存在生物地理变化,这可以解释之前在寻找全球模式方面的挑战。一个具有全球视野的框架,可以预测城市的耐受性,这将是保护工作的重要组成部分,因为世界上越来越多的生物多样性受到城市化的影响。

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