The response of fast- and slow-growing Acacia species to elevated atmospheric CO2:: an analysis of the underlying components of relative growth rate

被引:72
作者
Atkin, OK [1 ]
Schortemeyer, M [1 ]
McFarlane, N [1 ]
Evans, JR [1 ]
机构
[1] Australian Natl Univ, Res Sch Biol Sci, Environm Biol Grp, Canberra, ACT 0200, Australia
基金
澳大利亚研究理事会;
关键词
Acacia; elevated CO2; growth analysis; relative growth rate; nitrogen productivity;
D O I
10.1007/s004420050889
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
In this study we assessed the impact of elevated CO2 with unlimited water and complete nutrient on the growth and nitrogen economy of ten woody Acacia species that differ in relative growth rate (RGR). Specifically. we asked whether fast- and slow-growing species systematically differ in their response to elevated CO2. Four slow-growing species from semi-arid environments (Acacia aneura, A. colei, A. coriacea and A. tetragonophylla) and six fast-growing species from mesic environments (Acacia dealbata, A. implexa, A. mearnsii, A. melanoxylon, A. irrorata and A. saligna) were grown in glasshouses with either ambient (similar to 350 ppm) or elevated (similar to 700 ppm) atmospheric CO2. All species reached greater final plant mass with the exception of A. aneura, and RGR, averaged across all species, increased by 10% over a 12-week period when plants were exposed to elevated CO2. The stimulation of RGR was evident throughout the 12-week growth period. Elevated CO2 resulted in less foliage area per unit foliage dry mass, which was mainly the result of an increase in foliage thickness with a smaller contribution from greater dry matter content per unit fresh mass. The net assimilation rate (NAR, increase in plant mass per unit foliage area and time) of the plants grown at elevated CO2 was higher in all species (on average 30% higher than plants in ambient CO2) and was responsible for the increase in RGR. The higher NAR was associated with a substantial increase in foliar nitrogen productivity in all ten Acacia species. Plant nitrogen concentration was unaltered by growth at elevated CO2 for the slow-growing Acacia species, but declined by 10% for faster-growing species. The rate of nitrogen uptake per unit root mass was higher in seven of the species when grown under elevated CO2, and leaf area per unit root mass was reduced by elevated CO2 in seven of the species. The absolute increase in RGR due to growth under elevated CO2 was greater for fast- than for slow-growing Acacia species.
引用
收藏
页码:544 / 554
页数:11
相关论文
共 42 条
  • [1] The causes of inherently slow growth in alpine plants: An analysis based on the underlying carbon economies of alpine and lowland Poa species
    Atkin, OK
    Botman, B
    Lambers, H
    [J]. FUNCTIONAL ECOLOGY, 1996, 10 (06) : 698 - 707
  • [2] Atkin OK, 1998, INHERENT VARIATION IN PLANT GROWTH, P259
  • [3] Variation in the components of relative growth rate in ten Acacia species from contrasting environments
    Atkin, OK
    Schortemeyer, M
    McFarlane, N
    Evans, JR
    [J]. PLANT CELL AND ENVIRONMENT, 1998, 21 (10) : 1007 - 1017
  • [4] The relationship between the relative growth rate and nitrogen economy of alpine and lowland Poa species
    Atkin, OK
    Botman, B
    Lambers, H
    [J]. PLANT CELL AND ENVIRONMENT, 1996, 19 (11) : 1324 - 1330
  • [5] CO2-INDUCED GROWTH ENHANCEMENTS OF COOCCURRING TREE SPECIES DECLINE AT DIFFERENT RATES
    BAZZAZ, FA
    MIAO, SL
    WAYNE, PM
    [J]. OECOLOGIA, 1993, 96 (04) : 478 - 482
  • [6] RAPID COLORIMETRIC DETERMINATION OF NITRATE IN PLANT-TISSUE BY NITRATION OF SALICYLIC-ACID
    CATALDO, DA
    HAROON, M
    SCHRADER, LE
    YOUNGS, VL
    [J]. COMMUNICATIONS IN SOIL SCIENCE AND PLANT ANALYSIS, 1975, 6 (01) : 71 - 80
  • [7] TANSLEY REVIEW NO-71 - EFFECTS OF ELEVATED ATMOSPHERIC CO2 ON WOODY-PLANTS
    CEULEMANS, R
    MOUSSEAU, M
    [J]. NEW PHYTOLOGIST, 1994, 127 (03) : 425 - 446
  • [8] THE MINERAL-NUTRITION OF WILD PLANTS
    CHAPIN, FS
    [J]. ANNUAL REVIEW OF ECOLOGY AND SYSTEMATICS, 1980, 11 : 233 - 260
  • [9] CROP RESPONSES TO CARBON-DIOXIDE DOUBLING - A LITERATURE SURVEY
    CURE, JD
    ACOCK, B
    [J]. AGRICULTURAL AND FOREST METEOROLOGY, 1986, 38 (1-3) : 127 - 145
  • [10] Dijkstra P., 1989, Causes and Consequences of Variation in Growth Rate and Productivity of Higher Plants, P125