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Forest dynamics in the U.S. indicate disproportionate attrition in western forests rural areas and public lands

机译:美国的森林动态表明西部森林农村地区和公共土地的损耗量不成比例

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摘要

Forests are experiencing significant changes; studying geographic patterns in forests is critical in understanding the impact of forest dynamics to biodiversity, soil erosion, water chemistry and climate. Few studies have examined forest geographic pattern changes other than fragmentation; however, other spatial processes of forest dynamics are of equal importance. Here, we study forest attrition, the complete removal of forest patches, that can result in complete habitat loss, severe decline of population sizes and species richness, and shifts of local and regional environmental conditions. We aim to develop a simple yet insightful proximity-based spatial indicator capturing forest attrition that is independent of spatial scale and boundaries with worldwide application potential. Using this proximity indicator, we evaluate forest attrition across ecoregions, land ownership and urbanization stratifications across continental United States of America. Nationally, the total forest cover loss was approximately 90,400 km2, roughly the size of the state of Maine, constituting a decline of 2.96%. Examining the spatial arrangement of this change the average FAD was 3674m in 1992 and increased by 514m or 14.0% in 2001. Simulations of forest cover loss indicate only a 10m FAD increase suggesting that the observed FAD increase was more than an order of magnitude higher than expected. Furthermore, forest attrition is considerably higher in the western United States, in rural areas and in public lands. Our mathematical model (R2 = 0.93) supports estimation of attrition for a given forest cover. The FAD metric quantifies forest attrition across spatial scales and geographic boundaries and assesses unambiguously changes over time. The metric is applicable to any landscape and offers a new complementary insight on forest landscape patterns from local to global scales, improving future exploration of drivers and repercussions of forest cover changes and supporting more informative management of forest carbon, changing climate and species biodiversity.
机译:森林正在发生重大变化;研究森林的地理模式对于了解森林动态对生物多样性,土壤侵蚀,水化学和气候的影响至关重要。除了碎片化,很少有研究检查森林地理格局的变化。但是,森林动力学的其他空间过程也同样重要。在这里,我们研究森林流失,森林斑块的完全清除,这可能导致栖息地完全丧失,种群数量和物种丰富度严重下降以及局部和区域环境条件的变化。我们旨在开发一种简单而有见地的,基于接近度的空间指标,以捕获森林损耗,该指标与空间规模和边界无关,具有全球应用潜力。使用这个接近度指标,我们评估了整个美利坚合众国大陆上整个生态区域的森林损耗,土地所有权和城市化分层。在全国范围内,森林覆盖总损失约为90,400 km 2 ,大约是缅因州的大小,下降了2.96%。检查这种变化的空间安排,1992年的平均FAD为3674m,2001年增加了514m或14.0%。对森林覆盖率损失的模拟表明,FAD仅增加了1000m,这表明所观察到的FAD的增加大于一个数量级。预期。此外,在美国西部,农村地区和公共土地上,森林流失率要高得多。我们的数学模型(R 2 = 0.93)支持对给定森林覆盖率的损耗估算。 FAD指标可量化森林在空间尺度和地理边界上的损耗,并评估其随时间的变化。该指标适用于任何景观,并提供了从地方到全球范围的森林景观格局的新补充见解,改善了对森林覆盖变化的驱动力和影响的未来探索,并支持对森林碳,气候和物种生物多样性的更多信息管理。

著录项

  • 期刊名称 other
  • 作者

    Sheng Yang; Giorgos Mountrakis;

  • 作者单位
  • 年(卷),期 -1(12),2
  • 年度 -1
  • 页码 e0171383
  • 总页数 19
  • 原文格式 PDF
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