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Local‐ and landscape‐scale variables shape insect diversity in an urban biodiversity hot spot

机译:局部和景观尺度变量影响城市生物多样性热点地区的昆虫多样性

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摘要

Local community structure is shaped by processes acting at local and landscape scales. The relative importance of drivers operating across different spatial scales is difficult to test without observations across regional or latitudinal gradients. Cities exhibit strong but predictable environmental gradients overlaying a mosaic of highly variable but repeated habitat types within a constrained area. Thus, cities present a unique opportunity to explore how both local and landscape factors influence local biotic communities. We used insect communities to examine the interactions among local environmental variables (such as temperature and relative humidity), local habitat characteristics (such as plant community composition), and broad‐scale patterns of urbanization (including biophysical, human‐built, and socioeconomic variables) on local insect abundance, species richness, and species composition in Los Angeles, a hot, dry, near‐desert city. After accounting for seasonal trends, insect species richness and abundance were highest in drier and hotter sites, but the magnitude of local environmental effects varied with the degree of urbanization. In contrast, insect species composition was best predicted by broad‐scale urbanization trends, with the more native communities occurring in less urbanized sites and more cosmopolitan insects occurring in highly urbanized sites. However, insect species richness and abundance were >30% higher and insect composition was similar across sites that hosted either native or drought‐tolerant plants, regardless of the degree of urbanization. These results demonstrate that urban insect biodiversity is a product of interacting mechanisms working at both local and landscape scales. However, local‐scale changes to urban habitats, such as cultivating plants that are adapted to the natural environment nearest the city, can positively impact urban biodiversity regardless of location.
机译:当地社区的结构是由在地方和景观尺度上起作用的过程决定的。如果没有对区域或纬度梯度的观测,就很难检验驾驶员在不同空间尺度上的相对重要性。在受限区域内,城市呈现出强烈但可预测的环境梯度,覆盖了高度可变但栖息地类型重复的镶嵌图。因此,城市提供了一个独特的机会来探索当地和景观因素如何影响当地的生物群落。我们使用昆虫群落研究了局部环境变量(例如温度和相对湿度),局部栖息地特征(例如植物群落组成)和大规模城市化模式(包括生物物理,人为构建和社会经济变量)之间的相互作用。 )关于洛杉矶这个炎热,干燥,接近沙漠的城市的本地昆虫数量,物种丰富度和物种组成的信息。在考虑了季节性趋势之后,在较干燥和较热的地点,昆虫物种的丰富度和丰度最高,但是局部环境影响的程度随城市化程度而变化。相比之下,昆虫种类的组成最好通过大规模的城市化趋势来预测,其中更多的本地社区发生在城市化程度较低的地点,而更多的世界性昆虫发生在高度城市化的地点。但是,无论城市化程度如何,在寄养本地植物或耐旱植物的地点,昆虫物种的丰富度和丰度都高出30%以上,并且昆虫的组成相似。这些结果表明,城市昆虫生物多样性是在地方和景观尺度上相互作用机制的产物。但是,城市栖息地的局部变化,例如种植适合离城市最近的自然环境的植物,无论位置如何,都可以对城市生物多样性产生积极影响。

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