Arid
DOI10.1007/s00442-004-1550-2
Water relations in grassland and desert ecosystems exposed to elevated atmospheric CO2
Morgan, JA; Pataki, DE; Korner, C; Clark, H; Del Grosso, SJ; Grunzweig, JM; Knapp, AK; Mosier, AR; Newton, PCD; Niklaus, PA; Nippert, JB; Nowak, RS; Parton, WJ; Polley, HW; Shaw, MR
通讯作者Morgan, JA
来源期刊OECOLOGIA
ISSN0029-8549
出版年2004
卷号140期号:1页码:11-25
英文摘要

Atmospheric CO2 enrichment may stimulate plant growth directly through (1) enhanced photosynthesis or indirectly, through (2) reduced plant water consumption and hence slower soil moisture depletion, or the combination of both. Herein we describe gas exchange, plant biomass and species responses of five native or semi-native temperate and Mediterranean grasslands and three semi-arid systems to CO2 enrichment, with an emphasis on water relations. Increasing CO2 led to decreased leaf conductance for water vapor, improved plant water status, altered seasonal evapotranspiration dynamics, and in most cases, periodic increases in soil water content. The extent, timing and duration of these responses varied among ecosystems, species and years. Across the grasslands of the Kansas tallgrass prairie, Colorado shortgrass steppe and Swiss calcareous grassland, increases in aboveground biomass from CO2 enrichment were relatively greater in dry years. In contrast, CO2-induced aboveground biomass increases in the Texas C-3/C-4 grassland and the New Zealand pasture seemed little or only marginally influenced by yearly variation in soil water, while plant growth in the Mojave Desert was stimulated by CO2 in a relatively wet year. Mediterranean grasslands sometimes failed to respond to CO2-related increased late-season water, whereas semiarid Negev grassland assemblages profited. Vegetative and reproductive responses to CO2 were highly varied among species and ecosystems, and did not generally follow any predictable pattern in regard to functional groups. Results suggest that the indirect effects of CO2 on plant and soil water relations may contribute substantially to experimentally induced CO2-effects, and also reflect local humidity conditions. For landscape scale predictions, this analysis calls for a clear distinction between biomass responses due to direct CO2 effects on photosynthesis and those indirect CO2 effects via soil moisture as documented here.


英文关键词biomass carbon dioxide enrichment landscape predictions soil water stomata
类型Review
语种英语
国家USA ; Switzerland ; New Zealand ; Israel
收录类别SCI-E
WOS记录号WOS:000221850300002
WOS关键词TALLGRASS PRAIRIE ECOSYSTEM ; ALTERS SPECIES COMPOSITION ; PASCOPYRUM-SMITHII C-3 ; BOUTELOUA-GRACILIS C-4 ; LEAF GAS-EXCHANGE ; OPEN-TOP CHAMBERS ; CALCAREOUS GRASSLAND ; CARBON-DIOXIDE ; SOIL-MOISTURE ; PHOTOSYNTHETIC RESPONSES
WOS类目Ecology
WOS研究方向Environmental Sciences & Ecology
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/2XILL650/147739
作者单位(1)ARS, Rangeland Resources Res Unit, USDA, Ft Collins, CO 80526 USA;(2)Univ Utah, Dept Biol, Salt Lake City, UT 84112 USA;(3)Univ Basel, Inst Bot, CH-4056 Basel, Switzerland;(4)AgRes, Palmerston North, New Zealand;(5)Colorado State Univ, Nat Resource Ecol Lab, Ft Collins, CO 80525 USA;(6)Weizmann Inst Sci, Dept Environm Sci & Energy Res, IL-76100 Rehovot, Israel;(7)Colorado State Univ, Dept Biol, Ft Collins, CO 80525 USA;(8)Kansas State Univ, Dept Biol, Manhattan, KS 66502 USA;(9)Univ Nevada, Dept NERS, Reno, NV 89557 USA;(10)USDA ARS, Grassland Soil & Water Res Lab, Temple, TX 76502 USA;(11)Nature Conservancy, Calif Chapter, San Francisco, CA 94105 USA
推荐引用方式
GB/T 7714
Morgan, JA,Pataki, DE,Korner, C,et al. Water relations in grassland and desert ecosystems exposed to elevated atmospheric CO2[J]. Colorado State University,2004,140(1):11-25.
APA Morgan, JA.,Pataki, DE.,Korner, C.,Clark, H.,Del Grosso, SJ.,...&Shaw, MR.(2004).Water relations in grassland and desert ecosystems exposed to elevated atmospheric CO2.OECOLOGIA,140(1),11-25.
MLA Morgan, JA,et al."Water relations in grassland and desert ecosystems exposed to elevated atmospheric CO2".OECOLOGIA 140.1(2004):11-25.
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