Effect of precipitation variability on net primary production and soil respiration in a Chihuahuan Desert grassland

被引:327
作者
Thomey, Michell L. [1 ]
Collins, Scott L. [1 ]
Vargas, Rodrigo [2 ]
Johnson, Jennifer E. [1 ]
Brown, Renee F. [1 ]
Natvig, Donald O. [1 ]
Friggens, Michael T. [1 ]
机构
[1] Univ New Mexico, Dept Biol MSC03 2020, Albuquerque, NM 87131 USA
[2] CICESE, Dept Biol Conservac, Ensenada 22860, Baja California, Mexico
基金
美国国家科学基金会;
关键词
carbon cycle; desert grasslands; leaf gas exchange; precipitation variability; primary production; soil respiration; SEMIARID GRASSLAND; CO2; FLUX; RAINFALL VARIABILITY; TEMPORAL DYNAMICS; INNER-MONGOLIA; SONORAN DESERT; GAS-EXCHANGE; RESPONSES; WATER; CARBON;
D O I
10.1111/j.1365-2486.2010.02363.x
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
Precipitation regimes are predicted to become more variable with more extreme rainfall events punctuated by longer intervening dry periods. Water-limited ecosystems are likely to be highly responsive to altered precipitation regimes. The bucket model predicts that increased precipitation variability will reduce soil moisture stress and increase primary productivity and soil respiration in aridland ecosystems. To test this hypothesis, we experimentally altered the size and frequency of precipitation events during the summer monsoon (July through September) in 2007 and 2008 in a northern Chihuahuan Desert grassland in central New Mexico, USA. Treatments included (1) ambient rain, (2) ambient rain plus one 20 mm rain event each month, and (3) ambient rain plus four 5 mm rain events each month. Throughout two monsoon seasons, we measured soil temperature, soil moisture content (theta), soil respiration (R-s), along with leaf-level photosynthesis (A(net)), predawn leaf water potential (Psi(pd)), and seasonal aboveground net primary productivity (ANPP) of the dominant C-4 grass, Bouteloua eriopoda. Treatment plots receiving a single large rainfall event each month maintained significantly higher seasonal soil theta which corresponded with a significant increase in R-s and ANPP of B. eriopoda when compared with plots receiving multiple small events. Because the strength of these patterns differed between years, we propose a modification of the bucket model in which both the mean and variance of soil water change as a consequence of interannual variability from 1 year to the next. Our results demonstrate that aridland ecosystems are highly sensitive to increased precipitation variability, and that more extreme precipitation events will likely have a positive impact on some aridland ecosystem processes important for the carbon cycle.
引用
收藏
页码:1505 / 1515
页数:11
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