Plant Production Responses to Precipitation Differ Along an Elevation Gradient and Are Enhanced Under Extremes

被引:22
作者
Munson, Seth M. [1 ,2 ]
Bunting, Erin L. [3 ]
Bradford, John B. [1 ]
Butterfield, Bradley J. [2 ]
Gremer, Jennifer R. [4 ]
机构
[1] US Geol Survey, Southwest Biol Sci Ctr, 2255 N Gemini Dr, Flagstaff, AZ 86001 USA
[2] No Arizona Univ, Dept Biol Sci, 617 S Beaver St, Flagstaff, AZ 86011 USA
[3] Michigan State Univ, Dept Geog Environm & Spatial Sci, 637 Auditorium Rd, E Lansing, MI 48824 USA
[4] Univ Calif Davis, Dept Evolut & Ecol, Storer Hall 2320,One Shields Ave, Davis, CA 95616 USA
基金
美国国家科学基金会;
关键词
biomass; drought; climate change; grassland; net primary production; remote sensing; southwestern USA; CLIMATE-CHANGE; VEGETATION; DYNAMICS; DROUGHT; BIOMES;
D O I
10.1007/s10021-018-0296-3
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
The sensitivity of plant production to precipitation underlies the functioning of ecosystems. Studies that relate long-term mean annual precipitation and production across multiple sites (spatial relationship) or examine interannual linkages within a site (temporal relationship) can reveal biophysical controls over ecosystem function but have limited ability to infer responses to extreme changes in precipitation that may become more common under climate change. To overcome limitations of using a single approach, we integrated satellite- and ground-based estimates of production with a standardized, multi-site precipitation manipulation experiment across a grassland elevation gradient in the southwestern USA. The responsiveness of production to changes in precipitation followed the order: temporal (0.06-0.13gm(-2)mm(-1))<spatial (0.21gm(-2)mm(-1))<experimental relationship (0.25-0.42gm(-2)mm(-1)), suggesting that spatial and temporal relationships determined with satellite- and ground-based estimates cannot be extrapolated to determine the effect of extreme events. A strong production response to differences in mean annual precipitation across sites reinforces a regional control of water availability. Interannual sensitivity to precipitation was strongest at the low elevation grasslands, and the high elevation mixed conifer meadow had a large reduction in production in a drought year. Extreme experimental drought strongly reduced production in low elevation grasslands, but water addition had mixed effects. High elevation meadows were insensitive to both extreme drought and water addition. Our results highlight the importance of accounting for extreme climate regimes and site-level factors when scaling climate change effects up to regional and global scales.
引用
收藏
页码:699 / 708
页数:10
相关论文
共 29 条
[1]   Forecasting plant community impacts of climate variability and change: when do competitive interactions matter? [J].
Adler, Peter B. ;
Dalgleish, Harmony J. ;
Ellner, Stephen P. .
JOURNAL OF ECOLOGY, 2012, 100 (02) :478-487
[2]   Phenocams Bridge the Gap between Field and Satellite Observations in an Arid Grassland Ecosystem [J].
Browning, Dawn M. ;
Karl, Jason W. ;
Morin, David ;
Richardson, Andrew D. ;
Tweedie, Craig E. .
REMOTE SENSING, 2017, 9 (10)
[3]   Climate legacy and lag effects on dryland plant communities in the southwestern US [J].
Bunting, Erin L. ;
Munson, Seth M. ;
Villarreal, Miguel L. .
ECOLOGICAL INDICATORS, 2017, 74 :216-229
[4]   Aridity increases below-ground niche breadth in grass communities [J].
Butterfield, Bradley J. ;
Bradford, John B. ;
Munson, Seth M. ;
Gremer, Jennifer R. .
PLANT ECOLOGY, 2017, 218 (04) :385-394
[5]   Integrating experimental and gradient methods in ecological climate change research [J].
Dunne, JA ;
Saleska, SR ;
Fischer, ML ;
Harte, J .
ECOLOGY, 2004, 85 (04) :904-916
[6]   Few multiyear precipitation-reduction experiments find ashift in the productivity-precipitation relationship [J].
Estiarte, Marc ;
Vicca, Sara ;
Penuelas, Josep ;
Bahn, Michael ;
Beier, Claus ;
Emmett, Bridget A. ;
Fay, Philip A. ;
Hanson, Paul J. ;
Hasibeder, Roland ;
Kigel, Jaime ;
Kroel-Dulay, Gyorgy ;
Larsen, Klaus Steenberg ;
Lellei-Kovacs, Eszter ;
Limousin, Jean-Marc ;
Ogaya, Roma ;
Ourcival, Jean-Marc ;
Reinsch, Sabine ;
Sala, Osvaldo E. ;
Schmidt, Inger Kappel ;
Sternberg, Marcelo ;
Tielboerger, Katja ;
Tietema, Albert ;
Janssens, Ivan A. .
GLOBAL CHANGE BIOLOGY, 2016, 22 (07) :2570-2581
[7]  
Fay PA, 2015, NAT PLANTS, V1, DOI [10.1038/NPLANTS.2015.80, 10.1038/nplants.2015.80]
[8]   Vegetation structure is as important as climate for explaining ecosystem function across Patagonian rangelands [J].
Gaitan, Juan J. ;
Oliva, Gabriel E. ;
Bran, Donaldo E. ;
Maestre, Fernando T. ;
Aguiar, Martin R. ;
Jobbagy, Esteban G. ;
Buono, Gustavo G. ;
Ferrante, Daniela ;
Nakamatsu, Viviana B. ;
Ciari, Georgina ;
Salomone, Jorge M. ;
Massara, Virginia .
JOURNAL OF ECOLOGY, 2014, 102 (06) :1419-1428
[9]   Automated rainfall manipulation system: a reliable and inexpensive tool for ecologists [J].
Gherardi, Laureano A. ;
Sala, Osvaldo E. .
ECOSPHERE, 2013, 4 (02)
[10]   Pulse-drought atop press-drought: unexpected plant responses and implications for dryland ecosystems [J].
Hoover, David L. ;
Duniway, Michael C. ;
Belnap, Jayne .
OECOLOGIA, 2015, 179 (04) :1211-1221