首页> 外文期刊>Environmental Conservation >Thematic Section: Bringing Species and Ecosystems Together with Remote Sensing Tools to Develop New Biodiversity Metrics and Indicators Canopy Cover Shapes Bat Diversity across an Urban and Agricultural Landscape Mosaic
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Thematic Section: Bringing Species and Ecosystems Together with Remote Sensing Tools to Develop New Biodiversity Metrics and Indicators Canopy Cover Shapes Bat Diversity across an Urban and Agricultural Landscape Mosaic

机译:主题部分:将物种和生态系统与遥感工具结合起来,以开发新的生物多样性指标和指标树冠覆盖物塑造了城市和农业景观马赛克上的蝙蝠多样性

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摘要

Human alteration of the planet's terrestrial landscapes for agriculture, habitation and commerce is reshaping wildlife communities. The threat of land cover change to wildlife is pronounced in regions with rapidly growing human populations. We investigated how species richness and species-specific occurrence of bats changed as a function of land cover and canopy (tree) cover across a rapidly changing region of Florida, USA. Contrary to our predictions, we found negligible effects of agriculture and urban development on the occurrence of all species. In contrast, we found that a remotely sensed metric of canopy cover on a broad scale (25 km(2)) was a good predictor of the occurrence of eight out of ten species. The occurrence of all smaller bats (vespertilionids) in our study increased with 0-50% increases in canopy cover, while larger bats showed different patterns. Occurrence of Brazilian free-tailed bats (Tadarida brasiliensis) decreased with increasing canopy cover, and Florida bonneted bats (Eumops floridanus) were not influenced by canopy cover. We conclude that remotely sensed measures of canopy cover can provide a more reliable predictor of bat species richness than land-cover types, and efforts to prevent the loss of bat diversity should consider maintaining canopy cover across mosaic landscapes with diverse land-cover types.
机译:人类为农业,居住和商业目的对地球陆地景观的改变正在重塑野生动植物群落。在人口迅速增长的地区,土地覆盖改变对野生生物的威胁是显而易见的。我们调查了在美国佛罗里达州一个快速变化的地区中,蝙蝠的物种丰富度和特定物种的蝙蝠如何随土地覆盖和树冠(树木)的覆盖而变化。与我们的预测相反,我们发现农业和城市发展对所有物种的发生的影响微不足道。相比之下,我们发现,在较大范围(25 km(2))上,遥感测量的树冠覆盖度可以很好地预测十种中有八种的发生。在我们的研究中,所有较小的蝙蝠(黄per)的发生率均随着树冠覆盖率的增加0-50%而增加,而较大的蝙蝠则表现出不同的模式。巴西无尾蝙蝠(Tadarida brasiliensis)的发生率随着冠层覆盖率的增加而降低,而佛罗里达冠状蝙蝠(Eumops floridanus)不受冠层覆盖率的影响。我们得出的结论是,与土地覆盖类型相比,遥感测度的冠层覆盖度可以提供更可靠的蝙蝠物种丰富程度的预测指标,为防止蝙蝠多样性丧失而开展的工作应考虑在具有多种土地覆盖类型的镶嵌景观中保持冠层覆盖度。

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