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1.
New Phytol ; 238(3): 952-970, 2023 05.
Article in English | MEDLINE | ID: mdl-36694296

ABSTRACT

Wildfires are a global crisis, but current fire models fail to capture vegetation response to changing climate. With drought and elevated temperature increasing the importance of vegetation dynamics to fire behavior, and the advent of next generation models capable of capturing increasingly complex physical processes, we provide a renewed focus on representation of woody vegetation in fire models. Currently, the most advanced representations of fire behavior and biophysical fire effects are found in distinct classes of fine-scale models and do not capture variation in live fuel (i.e. living plant) properties. We demonstrate that plant water and carbon dynamics, which influence combustion and heat transfer into the plant and often dictate plant survival, provide the mechanistic linkage between fire behavior and effects. Our conceptual framework linking remotely sensed estimates of plant water and carbon to fine-scale models of fire behavior and effects could be a critical first step toward improving the fidelity of the coarse scale models that are now relied upon for global fire forecasting. This process-based approach will be essential to capturing the influence of physiological responses to drought and warming on live fuel conditions, strengthening the science needed to guide fire managers in an uncertain future.


Subject(s)
Fires , Wildfires , Plants , Plant Physiological Phenomena , Water , Carbon , Ecosystem
2.
Heliyon ; 8(12): e11883, 2022 Dec.
Article in English | MEDLINE | ID: mdl-36471840

ABSTRACT

Biodiversity management in Ecuador, and across Latin America, focuses on using protected areas for conservation purposes. However, this management strategy does not adequately consider biodiversity interactions with humans by neglecting socio-ecological systems that provide many benefits especially to indigenous and other rural peoples. This paper reviews successful examples of local applications of adaptive co-management that incorporate socio-ecological interactions and the benefits they provide to rural communities in Latin America. These examples show the potential of applying adaptive co-management to manage biodiversity and to revitalize the development of rural communities across the region.

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