Publications by authors named "Michelle Coppoletta"

Article Synopsis
  • The primary aim of rare plant translocation is to establish self-sustaining populations that can endure over time, but most studies only analyze short-term success metrics like survival and reproduction.
  • A comprehensive analysis of 275 monitored at-risk plant translocations revealed that management techniques play a critical role in short-term success, while site attributes and species traits are more significant for long-term population persistence.
  • Key findings indicated that larger founder sizes enhance reproductive potential, whereas poor habitat quality and low seed production in species heighten the risk of extinction in the long run; effective management can help mitigate these challenges.
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Quaking aspen (Populus tremuloides) is a valued, minor component on northeastern California landscapes. It provides a wide range of ecosystem services and has been in decline throughout the region for the last century. This decline may be explained partially by the lack of fire on the landscape due to heavier fire suppression, as aspen benefit from fire that eliminates conifer competition and stimulates reproduction through root suckering.

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In areas where fire regimes and forest structure have been dramatically altered, there is increasing concern that contemporary fires have the potential to set forests on a positive feedback trajectory with successive reburns, one in which extensive stand-replacing fire could promote more stand-replacing fire. Our study utilized an extensive set of field plots established following four fires that occurred between 2000 and 2010 in the northern Sierra Nevada, California, USA that were subsequently reburned in 2012. The information obtained from these field plots allowed for a unique set of analyses investigating the effect of vegetation, fuels, topography, fire weather, and forest management on reburn severity.

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