Arid
DOI10.5194/bg-11-621-2014
Differential effects of extreme drought on production and respiration: synthesis and modeling analysis
Shi, Z.1; Thomey, M. L.2; Mowll, W.3,4; Litvak, M.2; Brunsell, N. A.5; Collins, S. L.2; Pockman, W. T.2; Smith, M. D.3,4; Knapp, A. K.3,4; Luo, Y.1
通讯作者Shi, Z.
来源期刊BIOGEOSCIENCES
ISSN1726-4170
EISSN1726-4189
出版年2014
卷号11期号:3页码:621-633
英文摘要

Extremes in climate may severely impact ecosystem structure and function, with both the magnitude and rate of response differing among ecosystem types and processes. We conducted a modeling analysis of the effects of extreme drought on two key ecosystem processes, production and respiration, and, to provide a broader context, we complemented this with a synthesis of published results that cover a wide variety of ecosystems. The synthesis indicated that across a broad range of biomes, gross primary production (GPP) was generally more sensitive to extreme drought (defined as proportional reduction relative to average rainfall periods) than was ecosystem respiration (ER). Furthermore, this differential sensitivity between production and respiration increased as drought severity increased; it occurred only in grassland ecosystems, and not in evergreen needle- leaf and broad- leaf forests or woody savannahs. The modeling analysis was designed to enable a better understanding of the mechanisms underlying this pattern, and focused on four grassland sites arrayed across the Great Plains, USA. Model results consistently showed that net primary productivity (NPP) was reduced more than heterotrophic respiration (Rh) by extreme drought (i.e., 67% reduction in annual ambient rainfall) at all four study sites. The sensitivity of NPP to drought was directly attributable to rainfall amount, whereas the sensitivity of Rh to drought was driven by soil drying, reduced carbon (C) input and a drought-induced reduction in soil C content a much slower process. However, differences in reductions in NPP and Rh diminished as extreme drought continued, due to a gradual decline in the soil C pool leading to further reductions in Rh. We also varied the way in which drought was imposed in the modeling analysis; it was either imposed by simulating reductions in rainfall event size (ESR) or by reducing rainfall event number (REN). Modeled NPP and Rh decreased more by ESR than REN at the two relatively mesic sites but less so at the two xeric sites. Our findings suggest that responses of production and respiration differ in magnitude, occur on different timescales, and are affected by different mechanisms under extreme, prolonged drought.


类型Article
语种英语
国家USA
收录类别SCI-E
WOS记录号WOS:000334099700007
WOS关键词CHIHUAHUAN DESERT GRASSLAND ; NET PRIMARY PRODUCTION ; ECOSYSTEM CARBON ; PRECIPITATION VARIABILITY ; RAINFALL MANIPULATIONS ; SOIL RESPIRATION ; TEMPERATE FOREST ; CLIMATE EXTREMES ; WATER DYNAMICS ; USE EFFICIENCY
WOS类目Ecology ; Geosciences, Multidisciplinary
WOS研究方向Environmental Sciences & Ecology ; Geology
来源机构Colorado State University
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/181059
作者单位1.Univ Oklahoma, Dept Microbiol & Plant Biol, Norman, OK 73019 USA;
2.Univ New Mexico, Dept Biol, Albuquerque, NM 87131 USA;
3.Colorado State Univ, Dept Biol, Ft Collins, CO 80523 USA;
4.Colorado State Univ, Grad Degree Program Ecol, Ft Collins, CO 80523 USA;
5.Univ Kansas, Dept Geog, Lawrence, KS 66045 USA
推荐引用方式
GB/T 7714
Shi, Z.,Thomey, M. L.,Mowll, W.,et al. Differential effects of extreme drought on production and respiration: synthesis and modeling analysis[J]. Colorado State University,2014,11(3):621-633.
APA Shi, Z..,Thomey, M. L..,Mowll, W..,Litvak, M..,Brunsell, N. A..,...&Luo, Y..(2014).Differential effects of extreme drought on production and respiration: synthesis and modeling analysis.BIOGEOSCIENCES,11(3),621-633.
MLA Shi, Z.,et al."Differential effects of extreme drought on production and respiration: synthesis and modeling analysis".BIOGEOSCIENCES 11.3(2014):621-633.
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