4.8 Article

Over half of western United States' most abundant tree species in decline

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NATURE COMMUNICATIONS
卷 12, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41467-020-20678-z

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  1. National Science Foundation [DMS-1916395, EF-1253225, EF-1241874]
  2. US Department of Agriculture, Forest Service, Region 9, Forest Health Protection, Northern Research Station
  3. US National Park Service
  4. Michigan State University AgBioResearch

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Research has shown that over half of the most abundant tree species in the western United States have experienced population declines in the last two decades, with subalpine tree species showing particularly severe decline, indicating significant changes in forest composition and structure.
Changing forest disturbance regimes and climate are driving accelerated tree mortality across temperate forests. However, it remains unknown if elevated mortality has induced decline of tree populations and the ecological, economic, and social benefits they provide. Here, we develop a standardized forest demographic index and use it to quantify trends in tree population dynamics over the last two decades in the western United States. The rate and pattern of change we observe across species and tree size-distributions is alarming and often undesirable. We observe significant population decline in a majority of species examined, show decline was particularly severe, albeit size-dependent, among subalpine tree species, and provide evidence of widespread shifts in the size-structure of montane forests. Our findings offer a stark warning of changing forest composition and structure across the western US, and suggest that sustained anthropogenic and natural stress will likely result in broad-scale transformation of temperate forests globally. The nature of forest disturbances are changing, yet consequences for forest dynamics remain uncertain. Using a new index, Stanke et al. show the populations of over half of the most abundant tree species in the western US have declined in the last two decades, with grim implications for how temperate forests globally will respond to sustained anthropogenic and natural stress.

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