Interaction of soil moisture and elevated CO2 on the above-ground growth rate, root length density and gas exchange of turves from temperate pasture

被引:36
作者
Newton, PCD
Clark, H
Bell, CC
Glasgow, EM
机构
[1] AgResearch, Grasslands Research Centre, Palmerston North
关键词
carbon dioxide; climate change; grassland; gas exchange; soil moisture deficit;
D O I
10.1093/jxb/47.6.771
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Interactions between water availability and elevated atmospheric CO2 concentrations have the potential to be important factors in determining future forage supply from temperate pastures, Using large turves from an established pasture, the response of these communities at 350 or 700 mu l l(-1) CO2 to a soil moisture deficit and to recovery from the deficit in comparison to turves that were well-watered throughout was measured, Prior to this experiment the turves had been exposed to the CO2 treatments for 324 d. Net CO2 exchange continued at elevated CO2 even when the volumetric soil moisture content was less than 0.10 m(3) m(-3) soil; at the same moisture deficit gas exchange at ambient CO2 was zero. The additional carbon fixed by the elevated CO2 turves was primarily allocated below-ground as shown by the maintenance of root length density at the same level as in well-watered turves, When the dry turves were rewatered there was compensatory growth at ambient CO2 so that the above-ground growth rate exceeded that of turves that had not experienced a moisture deficit, At the start of this experiment, the turves that were growing at 700 mu l l(-1) CO2 had a greater proportion of legume (principally white clover, Trifolium repens L.) in the harvested herbage, There was a trend for the legume content at elevated CO2 to be reduced under a soil moisture deficit. The results indicate different strategies in response to soil moisture deficits depending on the CO2 concentration, At ambient CO2, growth stopped, but plants were able to respond strongly on rewatering; while at elevated CO2 growth continued (particularly belowground), but no additional growth was evident on rewatering. Ecosystem gas exchange measurements taken at the end of the experiment (after 429 d of exposure to CO2) showed 33% more CO2 was fixed at elevated CO2 with only a small (12%) and nonsignificant downward regulation.
引用
收藏
页码:771 / 779
页数:9
相关论文
共 41 条
[1]   EFFECT OF NODULATION, NITROGEN-FIXATION AND CO2 ENRICHMENT ON THE PHYSIOLOGY, GROWTH AND DRY MASS ALLOCATION OF SEEDLINGS OF ALNUS-RUBRA BONG [J].
ARNONE, JA ;
GORDON, JC .
NEW PHYTOLOGIST, 1990, 116 (01) :55-66
[2]   A TILLAGE BIN AND TOOL TESTING APPARATUS FOR TURF SAMPLES [J].
BAKER, CJ .
JOURNAL OF AGRICULTURAL ENGINEERING RESEARCH, 1969, 14 (04) :357-&
[3]   THE RESPONSE OF PLANTS TO ELEVATED CO2 .1. COMPETITION AMONG AN ASSEMBLAGE OF ANNUALS AT 2 LEVELS OF SOIL-MOISTURE [J].
BAZZAZ, FA ;
CARLSON, RW .
OECOLOGIA, 1984, 62 (02) :196-198
[4]   THE RESPONSE OF NATURAL ECOSYSTEMS TO THE RISING GLOBAL CO2 LEVELS [J].
BAZZAZ, FA .
ANNUAL REVIEW OF ECOLOGY AND SYSTEMATICS, 1990, 21 :167-196
[5]   CARBON-DIOXIDE AND WATER LEVEL EFFECTS ON YIELD AND WATER-USE OF WINTER-WHEAT [J].
CHAUDHURI, UN ;
KIRKHAM, MB ;
KANEMASU, ET .
AGRONOMY JOURNAL, 1990, 82 (03) :637-641
[6]   THE INFLUENCE OF ELEVATED CO2 AND SIMULATED SEASONAL-CHANGES IN TEMPERATURE ON TISSUE TURNOVER IN PASTURE TURVES DOMINATED BY PERENNIAL RYEGRASS (LOLIUM-PERENNE) AND WHITE CLOVER (TRIFOLIUM-REPENS) [J].
CLARK, H ;
NEWTON, PCD ;
BELL, CC ;
GLASGOW, EM .
JOURNAL OF APPLIED ECOLOGY, 1995, 32 (01) :128-136
[7]  
CLARK H, 1996, IN PRESS J APPL ECOL
[8]  
CORRALL AJ, 1984, IMPACT CLIMATE GRASS, P36
[9]   MID-SEASON GAS-EXCHANGE OF AN ALPINE GRASSLAND UNDER ELEVATED CO2 [J].
DIEMER, MW .
OECOLOGIA, 1994, 98 (3-4) :429-435
[10]   CANOPY PHOTOSYNTHESIS OF CROPS AND NATIVE PLANT-COMMUNITIES EXPOSED TO LONG-TERM ELEVATED CO2 [J].
DRAKE, BG ;
LEADLEY, PW .
PLANT CELL AND ENVIRONMENT, 1991, 14 (08) :853-860