RADIATION-USE EFFICIENCY OF SUNFLOWER CROPS - EFFECTS OF SPECIFIC LEAF NITROGEN AND ONTOGENY

被引:64
作者
HALL, AJ
CONNOR, DJ
SADRAS, VO
机构
[1] UNIV MELBOURNE,SCH AGR & FORESTRY,PARKVILLE,VIC 3052,AUSTRALIA
[2] CSIRO,COTTON RES UNIT,NARRABRI,NSW 2390,AUSTRALIA
关键词
RADIATION-USE EFFICIENCY; SPECIFIC LEAF NITROGEN; SUNFLOWER; HELIANTHUS-ANNUUS;
D O I
10.1016/0378-4290(94)00108-O
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Loss of nitrogen from the leaves and a reduction in specific leaf nitrogen (SLN, g N m-2) is associated with grain filling in sunflower (Helianthus annuus L.). To explore the relationship between crop radiation-use efficiency (RUE, g MJ-1) and SLN, crop biomass accumulation and radiation interception were measured between the bud-visible and physiological-maturity stages in crops growing under combinations of two levels of applied nitrogen (0 and 5 g N m-2) and two population densities (2.4 and 4.8 plants m-2). Both nitrogen fertilization and density had significant (P = 0.05) effects on crop biomass yield, nitrogen uptake, leaf area index and SLN, but the nitrogen effects were more pronounced for these and other crop variables. Linear regressions of accumulated biomass (OCdwt, corrected for the energy costs of oil synthesis in the grain) on accumulated intercepted short-wave radiation between bud visible and early grain filling provided appropriate and significantly (P = 0.05) different estimates of RUE for the pooled 0 g N m-2 (1.01 g OCdwt MJ-1) and 5 g N m-2 (1.18 g OCdwt MJ-1) treatments. When calculated for each inter-harvest interval, crop RUE varied in a curvilinear fashion during the season, with a broad optimum from 40 to 70 days after emergence of the crops, and with lower values earlier and later in the season. The reduction in RUE toward physiological maturity was particularly marked. A plot of RUE against SLN revealed a reduction in RUE at small SLN values, but the relationship may be confounded by ontogenetic changes in other factors. A published model (Sinclair and Horie (1989), Crop Sci., 29: 90-98) was used to explore the RUE/SLN relationship. The model was unable to reproduce the decline in RUE during the second half of the grain-filling period. It is suggested that an important cause of this failure may be the partition, in the model, of a fixed, rather than a variable, fraction of crop gross photosynthesis to respiration.
引用
收藏
页码:65 / 77
页数:13
相关论文
共 32 条
[1]   SYSTEMS-APPROACH TO THE ADAPTATION OF SUNFLOWER TO NEW ENVIRONMENTS .1. PHENOLOGY AND DEVELOPMENT [J].
ANDERSON, WK ;
SMITH, RCG ;
MCWILLIAM, JR .
FIELD CROPS RESEARCH, 1978, 1 (02) :141-152
[2]  
[Anonymous], POTENTIAL PRODUCTIVI
[3]   A SUNFLOWER SIMULATION-MODEL .1. MODEL DEVELOPMENT [J].
CHAPMAN, SC ;
HAMMER, GL ;
MEINKE, H .
AGRONOMY JOURNAL, 1993, 85 (03) :725-735
[4]  
Charles-Edwards D.A., 1986, MODELING PLANT GROWT
[5]   EFFECT OF NITROGEN-CONTENT ON THE PHOTOSYNTHETIC CHARACTERISTICS OF SUNFLOWER LEAVES [J].
CONNOR, DJ ;
HALL, AJ ;
SADRAS, VO .
AUSTRALIAN JOURNAL OF PLANT PHYSIOLOGY, 1993, 20 (03) :251-263
[6]   A MODEL FOR SIMULATING PHOTOSYNTHESIS IN PLANT COMMUNITIES [J].
DUNCAN, WG ;
LOOMIS, RS ;
WILLIAMS, WA ;
HANAU, R .
HILGARDIA, 1967, 38 (04) :181-&
[7]   A COMPARATIVE-ANALYSIS OF THE GROWTH OF SWEET AND FORAGE SORGHUM CROPS .1. DRY-MATTER PRODUCTION, PHENOLOGY AND MORPHOLOGY [J].
FERRARIS, R ;
CHARLESEDWARDS, DA .
AUSTRALIAN JOURNAL OF AGRICULTURAL RESEARCH, 1986, 37 (05) :495-512
[8]   RADIATION ABSORPTION, GROWTH AND YIELD OF CEREALS [J].
GALLAGHER, JN ;
BISCOE, PV .
JOURNAL OF AGRICULTURAL SCIENCE, 1978, 91 (AUG) :47-60
[9]   CONTRIBUTION OF PRE-ANTHESIS ASSIMILATES TO GRAIN-FILLING IN IRRIGATED AND WATER-STRESSED SUNFLOWER CROPS .1. ESTIMATES USING LABELED CARBON [J].
HALL, AJ ;
CONNOR, DJ ;
WHITFIELD, DM .
FIELD CROPS RESEARCH, 1989, 20 (02) :95-112
[10]   ROOT RESPIRATION DURING GRAIN FILLING IN SUNFLOWER - THE EFFECTS OF WATER-STRESS [J].
HALL, AJ ;
CONNOR, DJ ;
WHITFIELD, DM .
PLANT AND SOIL, 1990, 121 (01) :57-66