Topography alters tree growth-climate relationships in a semi-arid forested catchment

被引:96
作者
Adams, Hallie R. [1 ]
Barnard, Holly R. [1 ]
Loomis, Alexander K. [1 ]
机构
[1] Univ Colorado, Inst Arctic & Alpine Res, Dept Geog, Boulder, CO 80309 USA
来源
ECOSPHERE | 2014年 / 5卷 / 11期
基金
美国国家科学基金会;
关键词
dendrochronology; ecohydrology; lodgepole pine; Pinus contorta; Pinus ponderosa; ponderosa pine; semi-arid; topoclimate; topographic wetness index; water use efficiency; RADIAL GROWTH; NORTHERN ARIZONA; WATER-STRESS; DROUGHT; CARBON; PINE; COLORADO; VEGETATION; CONIFERS; PRECIPITATION;
D O I
10.1890/ES14-00296.1
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Topography and climate play an integral role in the spatial variability and annual dynamics of aboveground carbon sequestration. Despite knowledge of vegetation-climate-topography relationships on the landscape and hillslope scales, little is known about the influence of complex terrain coupled with hydrologic and topoclimatic variation on tree growth and physiology at the catchment scale. Climate change predictions for the semi-arid, western United States include increased temperatures, more frequent and extreme drought events, and decreases in snowpack, all of which put forests at risk of drought induced mortality and enhanced susceptibility to disturbance events. In this study, we determine how species-specific tree growth patterns and water use efficiency respond to interannual climate variability and how this response varies with topographic position. We found that Pinus contorta and Pinus ponderosa both show significant decreases in growth with water-limiting climate conditions, but complex terrain mediates this response by controlling moisture conditions in variable topoclimates. Foliar carbon isotope analyses show increased water use efficiency during drought for Pinus contorta, but indicate no significant difference in water use efficiency of Pinus ponderosa between a drought year and a non-drought year. The responses of the two pine species to climate indicate that semi-arid forests are especially susceptible to changes and risks posed by climate change and that topographic variability will likely play a significant role in determining the future vegetation patterns of semi-arid systems.
引用
收藏
页数:16
相关论文
共 60 条
[21]   FIRE HISTORY OF A PONDEROSA PINE DOUGLAS-FIR FOREST IN THE COLORADO FRONT RANGE [J].
GOLDBLUM, D ;
VEBLEN, TT .
PHYSICAL GEOGRAPHY, 1992, 13 (02) :133-148
[22]  
GREEN TH, 1992, NEW PHYTOL, V122, P627, DOI 10.1111/j.1469-8137.1992.tb00090.x
[23]  
Hansen J., 1990, Trees Structure and Function, V8, P172
[24]  
HEDDINGHAUS T.R., 1991, Seventh Conference on Applied Climatology, P242
[25]   Aspect control of water movement on hillslopes near the rain-snow transition of the Colorado Front Range [J].
Hinckley, Eve-Lyn S. ;
Ebel, Brian A. ;
Barnes, Rebecca T. ;
Anderson, Robert S. ;
Williams, Mark W. ;
Anderson, Suzanne P. .
HYDROLOGICAL PROCESSES, 2014, 28 (01) :74-85
[26]  
Hogg EH, 1997, J BIOGEOGR, V24, P527, DOI 10.1111/j.1365-2699.1997.00138.x
[27]  
HOLMES R L, 1983, Tree-Ring Bulletin, V43, P69
[28]   Longer growing seasons lead to less carbon sequestration by a subalpine forest [J].
Hu, Jia ;
Moore, David J. P. ;
Burns, Sean P. ;
Monson, Russell K. .
GLOBAL CHANGE BIOLOGY, 2010, 16 (02) :771-783
[29]   Impact of nitrogen fertilization on carbon and water balances in a chronosequence of three Douglas-fir stands in the Pacific Northwest [J].
Jassal, Rachhpal S. ;
Black, T. Andrew ;
Cai, Tiebo ;
Ethier, Gilbert ;
Pepin, Steeve ;
Bruemmer, Christian ;
Nesic, Zoran ;
Spittlehouse, David. L. ;
Trofymow, J. Anthony .
AGRICULTURAL AND FOREST METEOROLOGY, 2010, 150 (02) :208-218
[30]   13CO2 pulse-labelling of photoassimilates reveals carbon allocation within and between tree rings [J].
Kagawa, Akira ;
Sugimoto, Atsuko ;
Maximov, Trofim C. .
PLANT CELL AND ENVIRONMENT, 2006, 29 (08) :1571-1584