Abrupt shifts in phenology and vegetation productivity under climate extremes

被引:187
作者
Ma, Xuanlong [1 ]
Huete, Alfredo [1 ]
Moran, Susan [2 ]
Ponce-Campos, Guillermo [2 ]
Eamus, Derek [3 ]
机构
[1] Univ Technol Sydney, Plant Funct Biol & Climate Change Cluster, Broadway, NSW, Australia
[2] USDA ARS, Southwest Watershed Res Ctr, Tucson, AZ USA
[3] Univ Technol Sydney, Sch Life Sci, Broadway, NSW, Australia
基金
澳大利亚研究理事会;
关键词
climate extremes; carbon cycling; remote sensing; ecological resilience; semiarid; SEMIARID ECOSYSTEMS; TEMPORAL DYNAMICS; SPATIAL-PATTERNS; CARBON UPTAKE; DROUGHT; VARIABILITY; AUSTRALIA; FOREST; REDUCTION; RAINFALL;
D O I
10.1002/2015JG003144
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Amplification of the hydrologic cycle as a consequence of global warming is predicted to increase climate variability and the frequency and severity of droughts. Recent large-scale drought and flooding over numerous continents provide unique opportunities to understand ecosystem responses to climatic extremes. In this study, we investigated the impacts of the early 21st century extreme hydroclimatic variations in southeastern Australia on phenology and vegetation productivity using Moderate Resolution Imaging Spectroradiometer Enhanced Vegetation Index and Standardized Precipitation-Evapotranspiration Index. Results revealed dramatic impacts of drought and wet extremes on vegetation dynamics, with abrupt between year changes in phenology. Drought resulted in widespread reductions or collapse in the normal patterns of seasonality such that in many cases there was no detectable phenological cycle during drought years. Across the full range of biomes examined, we found semiarid ecosystems to exhibit the largest sensitivity to hydroclimatic variations, exceeding that of arid and humid ecosystems. This result demonstrated the vulnerability of semiarid ecosystems to climatic extremes and potential loss of ecosystem resilience with future mega-drought events. A skewed distribution of hydroclimatic sensitivity with aridity is of global biogeochemical significance because it suggests that current drying trends in semiarid regions will reduce hydroclimatic sensitivity and suppress the large carbon sink that has been reported during recent wet periods (e.g., 2011 La Nina).
引用
收藏
页码:2036 / 2052
页数:17
相关论文
共 63 条
[1]   The dominant role of semi-arid ecosystems in the trend and variability of the land CO2 sink [J].
Ahlstrom, Anders ;
Raupach, Michael R. ;
Schurgers, Guy ;
Smith, Benjamin ;
Arneth, Almut ;
Jung, Martin ;
Reichstein, Markus ;
Canadell, Josep G. ;
Friedlingstein, Pierre ;
Jain, Atul K. ;
Kato, Etsushi ;
Poulter, Benjamin ;
Sitch, Stephen ;
Stocker, Benjamin D. ;
Viovy, Nicolas ;
Wang, Ying Ping ;
Wiltshire, Andy ;
Zaehle, Soenke ;
Zeng, Ning .
SCIENCE, 2015, 348 (6237) :895-899
[2]   Drought stress and carbon uptake in an Amazon forest measured with spaceborne imaging spectroscopy [J].
Asner, GP ;
Nepstad, D ;
Cardinot, G ;
Ray, D .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2004, 101 (16) :6039-6044
[3]   Terrestrial Gross Carbon Dioxide Uptake: Global Distribution and Covariation with Climate [J].
Beer, Christian ;
Reichstein, Markus ;
Tomelleri, Enrico ;
Ciais, Philippe ;
Jung, Martin ;
Carvalhais, Nuno ;
Roedenbeck, Christian ;
Arain, M. Altaf ;
Baldocchi, Dennis ;
Bonan, Gordon B. ;
Bondeau, Alberte ;
Cescatti, Alessandro ;
Lasslop, Gitta ;
Lindroth, Anders ;
Lomas, Mark ;
Luyssaert, Sebastiaan ;
Margolis, Hank ;
Oleson, Keith W. ;
Roupsard, Olivier ;
Veenendaal, Elmar ;
Viovy, Nicolas ;
Williams, Christopher ;
Woodward, F. Ian ;
Papale, Dario .
SCIENCE, 2010, 329 (5993) :834-838
[4]  
Beringer J., 2014, OZFLUX SYNTHESIS
[5]   Regional vegetation die-off in response to global-change-type drought [J].
Breshears, DD ;
Cobb, NS ;
Rich, PM ;
Price, KP ;
Allen, CD ;
Balice, RG ;
Romme, WH ;
Kastens, JH ;
Floyd, ML ;
Belnap, J ;
Anderson, JJ ;
Myers, OB ;
Meyer, CW .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2005, 102 (42) :15144-15148
[6]   Land surface phenological response to decadal climate variability across Australia using satellite remote sensing [J].
Broich, M. ;
Huete, A. ;
Tulbure, M. G. ;
Ma, X. ;
Xin, Q. ;
Paget, M. ;
Restrepo-Coupe, N. ;
Davies, K. ;
Devadas, R. ;
Held, A. .
BIOGEOSCIENCES, 2014, 11 (18) :5181-5198
[7]   Southeast Australia Autumn Rainfall Reduction: A Climate-Change-Induced Poleward Shift of Ocean-Atmosphere Circulation [J].
Cai, Wenju ;
Cowan, Tim .
JOURNAL OF CLIMATE, 2013, 26 (01) :189-205
[8]   Rainfall reductions over Southern Hemisphere semi-arid regions: the role of subtropical dry zone expansion [J].
Cai, Wenju ;
Cowan, Tim ;
Thatcher, Marcus .
SCIENTIFIC REPORTS, 2012, 2
[9]   Ecosystem resilience despite large-scale altered hydroclimatic conditions [J].
Campos, Guillermo E. Ponce ;
Moran, M. Susan ;
Huete, Alfredo ;
Zhang, Yongguang ;
Bresloff, Cynthia ;
Huxman, Travis E. ;
Eamus, Derek ;
Bosch, David D. ;
Buda, Anthony R. ;
Gunter, Stacey A. ;
Scalley, Tamara Heartsill ;
Kitchen, Stanley G. ;
McClaran, Mitchel P. ;
McNab, W. Henry ;
Montoya, Diane S. ;
Morgan, Jack A. ;
Peters, Debra P. C. ;
Sadler, E. John ;
Seyfried, Mark S. ;
Starks, Patrick J. .
NATURE, 2013, 494 (7437) :349-352
[10]   Europe-wide reduction in primary productivity caused by the heat and drought in 2003 [J].
Ciais, P ;
Reichstein, M ;
Viovy, N ;
Granier, A ;
Ogée, J ;
Allard, V ;
Aubinet, M ;
Buchmann, N ;
Bernhofer, C ;
Carrara, A ;
Chevallier, F ;
De Noblet, N ;
Friend, AD ;
Friedlingstein, P ;
Grünwald, T ;
Heinesch, B ;
Keronen, P ;
Knohl, A ;
Krinner, G ;
Loustau, D ;
Manca, G ;
Matteucci, G ;
Miglietta, F ;
Ourcival, JM ;
Papale, D ;
Pilegaard, K ;
Rambal, S ;
Seufert, G ;
Soussana, JF ;
Sanz, MJ ;
Schulze, ED ;
Vesala, T ;
Valentini, R .
NATURE, 2005, 437 (7058) :529-533