Fire as a fundamental ecological process: research advances and frontiers
Kendra K. McLauchlan,Philip E. Higuera,Jessica R. Miesel,Brendan M. Rogers,Jennifer A. Schweitzer,Jacquelyn K. Shuman,Alan J. Tepley,J. Morgan Varner,Thomas T. Veblen,Solny A. Adalsteinsson,Jennifer K. Balch,Patrick J. Baker,Enric Batllori,Erica Bigio,Paulo M. Brando,Megan E. Cattau,Melissa L. Chipman,Janice L. Coen,Raelene M. Crandall,Lori D. Daniels,Neal J. Enright,Wendy S. Gross,Brian J. Harvey,Jeff A. Hatten,Sharon M. Hermann,Rebecca E. Hewitt,Leda N. Kobziar,Jennifer B. Landesmann,Michael M. Loranty,S. Yoshi Maezumi,Linda O. Mearns,Max A. Moritz,Jonathan Myers,Juli G. Pausas,Adam F. A. Pellegrini,William J. Platt,Jennifer Roozeboom,Hugh D. Safford,Fernanda Santos,Robert M. Scheller,Rosemary L. Sherriff,Kevin G. Smith,Melinda D. Smith,Adam C. Watts +43 more
TL;DR: In this paper, the diversity of ways in which fire operates as a fundamental ecological and evolutionary process on Earth is described, and the need to study fire across temporal scales, to assess the mechanisms underlying a variety of ecological feedbacks involving fire and to improve representation of fire in a range of modelling contexts.
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Abstract: 1. Fire is a powerful ecological and evolutionary force that regulates organismal traits, population sizes, species interactions, community composition, carbon and nutrient cycling and ecosystem function. It also presents a rapidly growing societal challenge, due to both increasingly destructive wildfires and fire exclusion in fire-dependent ecosystems. As an ecological process, fire integrates complex feedbacks among biological, social and geophysical processes, requiring coordination across several fields and scales of study. 2. Here, we describe the diversity of ways in which fire operates as a fundamental ecological and evolutionary process on Earth. We explore research priorities in six categories of fire ecology: (a) characteristics of fire regimes, (b) changing fire regimes, (c) fire effects on above-ground ecology, (d) fire effects on below-ground ecology, (e) fire behaviour and (f) fire ecology modelling. 3. We identify three emergent themes: the need to study fire across temporal scales, to assess the mechanisms underlying a variety of ecological feedbacks involving fire and to improve representation of fire in a range of modelling contexts. 4. Synthesis: As fire regimes and our relationships with fire continue to change, prioritizing these research areas will facilitate understanding of the ecological causes and consequences of future fires and rethinking fire management alternatives.
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References
Fire in the Earth System
David M. J. S. Bowman,Jennifer K. Balch,Jennifer K. Balch,Jennifer K. Balch,Paulo Artaxo,William J. Bond,Jean M. Carlson,Mark A. Cochrane,Carla M. D'Antonio,Ruth DeFries,John Doyle,Sandy P. Harrison,Fay H. Johnston,Jon E. Keeley,Jon E. Keeley,Meg A. Krawchuk,Christian A. Kull,J. Brad Marston,Max A. Moritz,I. Colin Prentice,Christopher I. Roos,Andrew C. Scott,Thomas W. Swetnam,Guido R. van der Werf,Stephen J. Pyne +24 more
TL;DR: What is known and what is needed to develop a holistic understanding of the role of fire in the Earth system are reviewed, particularly in view of the pervasive impact of fires and the likelihood that they will become increasingly difficult to control as climate changes.
Effects of fire on properties of forest soils: a review
TL;DR: This work is a review of the up-to-date literature dealing with changes imposed by fires on properties of forest soils, and ecological implications of these changes are described.
Conceptual Synthesis in Community Ecology
TL;DR: Organizing the material of community ecology according to this framework can clarify the essential similarities and differences among the many conceptual and theoretical approaches to the discipline, and allow for the articulation of a very general theory of community dynamics.
Impact of anthropogenic climate change on wildfire across western US forests
TL;DR: It is demonstrated that human-caused climate change caused over half of the documented increases in fuel aridity since the 1970s and doubled the cumulative forest fire area since 1984, and suggests that anthropogenic climate change will continue to chronically enhance the potential for western US forest fire activity while fuels are not limiting.
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Interannual variability in global biomass burning emissions from 1997 to 2004
G. R. van der Werf,James T. Randerson,Louis Giglio,G. J. Collatz,Prasad S. Kasibhatla,Avelino F. Arellano,Avelino F. Arellano +6 more
TL;DR: In this paper, the authors investigated fire emissions during the 8 year period from 1997 to 2004 using satellite data and the CASA biogeochemical model, and found that on average approximately 58 Pg C year −1 was fixed by plants as NPP, and approximately 95% of this was returned back to the atmosphere via R h.
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