Temperature dependence of growth, development, and photosynthesis in maize under elevated CO2

被引:132
|
作者
Kim, Soo-Hyung
Gitz, Dennis C.
Sicherb, Richard C.
Baker, Jeffrey T.
Timlin, Dennis J.
Reddy, Vangirnalla R.
机构
[1] Univ Washington, Coll Forest Resources, Seattle, WA 98195 USA
[2] USDA ARS, Crop Syst & Global Change Lab, Beltsville, MD 20705 USA
[3] USDA ARS, Cropping Syst Res Lab, Lubbock, TX 79415 USA
[4] USDA ARS, Cropping Syst Res Lab, Big Spring, TX 79720 USA
关键词
zea mays; C4; plant; photosynthesis; temperature; interaction-; CO2; enrichment; acclimation; global climate change; stomatal conductance; C-4; enzymes; sunlit sirowth chambers; model parameters;
D O I
10.1016/j.envexpbot.2007.06.005
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Global atmospheric carbon dioxide concentrations (C-a) are rising. As a consequence, recent climate models have projected that global surface air temperature may increase 1.4-5.8 degrees C with the doubling of C-a by the end of the century. Because, changes in C-a and temperature are likely to occur concomitantly, it is important to evaluate how the temperature dependence of key physiological processes are affected by rising C-a in major crop plants including maize (Zea mays L.), a globally important grain crop with C-4 photosynthetic pathway. We investigated the temperature responses of photosynthesis, growth, and development of maize plants grown at five temperature regimes ranging from 19/13 to 38.5/32.5 degrees C under current (370 mu mol mol(-1)) and doubled (750 mu mol mol(-1)) C-a throughout the vegetative stages using sunlit controlled environmental chambers in order to test if the temperature dependence of these processes was altered by elevated C-a Leaf and canopy photosynthetic rates, C-4 enzyme activities. leaf appearance rates, above ground biomass accumulation and leaf area were measured. We then applied temperature response functions (e.g.. Arrhenius and Beta distribution models) to fit the measured data in order to provide parameter estimates of the temperature dependence p for modeling photosynthesis and development at current and elevated C-a in maize. Biomass, leaf area, leaf appearance rate, and photosynthesis measured at growth C-a was not changed in response to CO2 enrichment. Carboxylation efficiency and the activities Of C-4 enzymes were reduced with CO2 enrichment indicating possible photosynthetic acclimation of the C-4 cycle. All measured parameters responded to growth temperatures. p Leaf appearance rate and leaf photosynthesis showed curvilinear response with optimal temperatures near 32 and 34 degrees C, respectively. Total above,ground biomass and leaf area were negatively correlated with growth temperature. The dependence of leaf appearance rate, biomass, leaf area, leaf and canopy photosynthesis. and C-4 enzyme activities on growth temperatures was comparable between current and elevated C-a. The results of this study suggest that the temperature effects on growth, development, and photosynthesis may remain unchanged in elevated C-a compared with current C-a in maize. Published by Elsevier B.V.
引用
收藏
页码:224 / 236
页数:13
相关论文
共 50 条
  • [41] Interactive effects of elevated CO2, temperature and nitrogen on photosynthesis of wheat grown under temperature gradient tunnels
    Martínez-Carrasco, R
    Pérez, P
    Morcuende, R
    ENVIRONMENTAL AND EXPERIMENTAL BOTANY, 2005, 54 (01) : 49 - 59
  • [42] Specification of adaxial and abaxial stomata, epidermal structure and photosynthesis to CO2 enrichment in maize leaves
    Driscoll, SP
    Prins, A
    Olmos, E
    Kunert, KJ
    Foyer, CH
    JOURNAL OF EXPERIMENTAL BOTANY, 2006, 57 (02) : 381 - 390
  • [43] MODELING PHOTOSYNTHESIS OF COTTON GROWN IN ELEVATED CO2
    HARLEY, PC
    THOMAS, RB
    REYNOLDS, JF
    STRAIN, BR
    PLANT CELL AND ENVIRONMENT, 1992, 15 (03): : 271 - 282
  • [44] Elevated [CO2] raises the temperature optimum of photosynthesis and thus promotes net photosynthesis of winter wheat and rice
    Lv, Chunhua
    Huang, Yao
    Sun, Wenjuan
    Yu, Lingfei
    Hu, Zhenghua
    PHYSIOLOGIA PLANTARUM, 2022, 174 (04)
  • [45] Effects of elevated CO2 and temperature on photosynthesis and Rubisco in rice and soybean
    Vu, JCV
    Allen, LH
    Boote, KJ
    Bowes, G
    PLANT CELL AND ENVIRONMENT, 1997, 20 (01): : 68 - 76
  • [46] Does elevated CO2 protect photosynthesis from damage by high temperature via modifying leaf water status in maize seedlings?
    Qu, M. N.
    Bunce, J. A.
    Shi, Z. S.
    PHOTOSYNTHETICA, 2014, 52 (02) : 211 - 216
  • [47] EFFECT OF ELEVATED CO2 ON THE PHOTOSYNTHESIS, RESPIRATION AND GROWTH OF PERENNIAL RYEGRASS
    RYLE, GJA
    POWELL, CE
    TEWSON, V
    JOURNAL OF EXPERIMENTAL BOTANY, 1992, 43 (251) : 811 - 818
  • [48] Effects of solar ultraviolet-B radiation, temperature and CO2 on growth and physiology of sunflower and maize seedlings
    Mark, U
    Tevini, M
    PLANT ECOLOGY, 1997, 128 (1-2) : 224 - 234
  • [49] THE SENSITIVITY OF C-3 PHOTOSYNTHESIS TO INCREASING CO2 CONCENTRATION - A THEORETICAL-ANALYSIS OF ITS DEPENDENCE ON TEMPERATURE AND BACKGROUND CO2 CONCENTRATION
    KIRSCHBAUM, MUF
    PLANT CELL AND ENVIRONMENT, 1994, 17 (06): : 747 - 754
  • [50] Effects of water and nitrogen coupling on watermelon growth, photosynthesis and yield under CO2 enrichment
    Hong, Tingting
    Cai, Zelin
    Li, Rui
    Liu, Jiecheng
    Li, Jinglai
    Wang, Zheng
    Zhang, Zhi
    AGRICULTURAL WATER MANAGEMENT, 2022, 259