Climate change may increase Quebec boreal forest productivity in high latitudes by shifting its current composition

被引:9
作者
Ameray, Abderrahmane [1 ,2 ]
Cavard, Xavier [1 ,2 ]
Bergeron, Yves [1 ,2 ,3 ]
机构
[1] Univ Quebec Abitibi Temiscamingue UQAT, Inst Rech Forets, Rouyn Noranda, PQ, Canada
[2] Univ Quebec Abitibi Temiscamingue UQAT, Ctr Etud Foret, Rouyn Noranda, PQ, Canada
[3] Dept Sci Biol, Montreal, PQ, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
forest carbon; climate change; wildfires; PnET-Succession; LANDIS-II; competition; mortality; AGE-CLASS-STRUCTURE; FIRE REGIME; THERMAL-ACCLIMATION; CARBON-DYNAMICS; BLACK SPRUCE; PHOTOSYNTHESIS; MODELS; PROJECTIONS; DISTURBANCE; MANAGEMENT;
D O I
10.3389/ffgc.2023.1020305
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Several recent studies point out that climate change is expected to influence boreal forest succession, disturbances, productivity, and mortality. However, the effect of climate change on those processes and their interactions is poorly understood. We used an ecophysiological-based mechanistic landscape model to study those processes and their interactions and predict the future productivity and composition under climate change scenarios (RCP) for 300 years (2010-2310). The effects of climate change and wildfires on forest composition, biomass carbon sequestration and storage, and mortality were assessed in three management units of Quebec boreal forest, distributed along a longitudinal gradient from west to east: North-of-Quebec (MU1), Saguenay-Lac-Saint-Jean (MU2), and Cote-Nord region (MU3). Coniferous mortality variation was explained by competitive exclusion and wildfires, which are related to climate change. In the studied MU, we found a decrease in coniferous pure occupancy at the landscape scale and an increase in mixed deciduous forests in MU1 and MU2, and an increase in mixed coniferous, mainly black spruce and balsam fir in MU3. On the other hand, for extreme scenarios (RCP4.5 and RCP8.5), in the absence of broadleaves dispersal, the open woodland occupancy could increase to more than 8, 22, and 10% in MU1, MU2, and MU3 respectively. Also, climate change might increase overall biomass carbon stock two times for RCP2.6 and RCP4.5 scenarios compared to the baseline this may be explained by the extension of the growing season and the reduction of potential cold-temperature injuries. Generally, western regions were more sensitive to climate changes than the eastern regions (MU3), in fact under RCP8.5 biomass carbon stock will be decreasing in the long-term for MU1 compared to the current climate. This study provides a good starting point to support future research on the multiple factors affecting forest C budget under global change.
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页数:19
相关论文
共 75 条
[1]   A GENERALIZED, LUMPED-PARAMETER MODEL OF PHOTOSYNTHESIS, EVAPOTRANSPIRATION AND NET PRIMARY PRODUCTION IN TEMPERATE AND BOREAL FOREST ECOSYSTEMS [J].
ABER, JD ;
FEDERER, CA .
OECOLOGIA, 1992, 92 (04) :463-474
[2]   Forest Carbon Management: a Review of Silvicultural Practices and Management Strategies Across Boreal, Temperate and Tropical Forests [J].
Ameray, Abderrahmane ;
Bergeron, Yves ;
Valeria, Osvaldo ;
Girona, Miguel Montoro ;
Cavard, Xavier .
CURRENT FORESTRY REPORTS, 2021, 7 (04) :245-266
[3]  
[Anonymous], 2021, PBS News Hour video, P15
[4]   Projected changes in fire activity and severity feedback in the spruce-feather moss forest of western Quebec, Canada [J].
Augustin, Fougere ;
Girardin, Martin P. ;
Terrier, Aurelie ;
Grondin, Pierre ;
Lambert, Marie-Claude ;
Leduc, Alain ;
Bergeron, Yves .
TREES FORESTS AND PEOPLE, 2022, 8
[5]   Increasing fire and the decline of fire adapted black spruce in the boreal forest [J].
Baltzer, Jennifer L. ;
Day, Nicola J. ;
Walker, Xanthe J. ;
Greene, David ;
Mack, Michelle C. ;
Alexander, Heather D. ;
Arseneault, Dominique ;
Barnes, Jennifer ;
Bergeron, Yves ;
Boucher, Yan ;
Bourgeau-Chavez, Laura ;
Brown, Carissa D. ;
Carriere, Suzanne ;
Howard, Brian K. ;
Gauthier, Sylvie ;
Parisien, Marc-Andre ;
Reid, Kirsten A. ;
Rogers, Brendan M. ;
Roland, Carl ;
Sirois, Luc ;
Stehn, Sarah ;
Thompson, Dan K. ;
Turetsky, Merritt R. ;
Veraverbeke, Sander ;
Whitman, Ellen ;
Yang, Jian ;
Johnstone, Jill F. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2021, 118 (45)
[6]   Thermal acclimation of photosynthesis and respiration of southern and northern white spruce seed sources tested along a regional climatic gradient indicates limited potential to cope with temperature warming [J].
Benomar, Lahcen ;
Lamhamedi, Mohammed S. ;
Pepin, Steeve ;
Rainville, Andre ;
lambert, Marie-Claude ;
Margolis, Hank A. ;
Bousquet, Jean ;
Beaulieu, Jean .
ANNALS OF BOTANY, 2018, 121 (03) :443-457
[7]   Forest management guidelines based on natural disturbance dynamics: Stand- and forest-level considerations [J].
Bergeron, Y ;
Harvey, B ;
Leduc, A ;
Gauthier, S .
FORESTRY CHRONICLE, 1999, 75 (01) :49-54
[8]   Natural fire regime: A guide for sustainable management of the Canadian boreal forest [J].
Bergeron, Y ;
Leduc, A ;
Harvey, BD ;
Gauthier, S .
SILVA FENNICA, 2002, 36 (01) :81-95
[9]   Past, current, and future fire frequencies in Quebec's commercial forests: implications for the cumulative effects of harvesting and fire on age-class structure and natural disturbance-based management [J].
Bergeron, Yves ;
Cyr, Dominic ;
Drever, C. Ronnie ;
Flannigan, Mike ;
Gauthier, Sylvie ;
Kneeshaw, Daniel ;
Lauzon, Eve ;
Leduc, Alain ;
Le Goff, Heloise ;
Lesieur, Daniel ;
Logan, Kimberley .
CANADIAN JOURNAL OF FOREST RESEARCH, 2006, 36 (11) :2737-2744
[10]   Projections of future forest age class structure under the influence of fire and harvesting: implications for forest management in the boreal forest of eastern Canada [J].
Bergeron, Yves ;
Vijayakumar, Dinesh Babu Irulappa Pillai ;
Ouzennou, Hakim ;
Raulier, Frederic ;
Leduc, Alain ;
Gauthier, Sylvie .
FORESTRY, 2017, 90 (04) :485-495