Relationships between dynamics of nitrogen uptake and dry matter accumulation in maize crops.: Determination of critical N concentration

被引:377
作者
Plénet, D
Lemaire, G
机构
[1] INRA, Unite Agron, F-33883 Villenave Dornon, France
[2] INRA, Unite Ecophysiol, F-86600 Lusignan, France
关键词
allometry; critical nitrogen concentration; growth; leaf area index; N uptake; Zea mays L;
D O I
10.1023/A:1004783431055
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
The concept of critical nitrogen concentration (%N-c) has been proposed as the minimum %N in shoots required to produce the maximum aerial biomass at a given time. Several authors have shown that %N-c declines as a function of aerial biomass accumulation (W) and the %N-c - W relationship has been proposed as a diagnostic tool of N status in different crops, excluding maize. From data obtained in five nitrogen fertilisation experiments in irrigated maize crops, 26 critical data-points were selected with a precise statistical procedure. An allometric relation was fitted and a critical %N-W relationship model is proposed in maize as: If W < 1 t ha(-1) %N-c = 3.40 If 1 t ha(-)1 less than or equal to W less than or equal to 22 t ha(-1) %N-c = 3.40 (W)(-0.37) The model is applicable to maize crop development between emergence and silking + 25 days. The model was tested and validated with data obtained in a network of 17 N fertilisation experiments conducted in France under contrasting pedoclimatic conditions. In only nine out of 280 data-points (3.2%), the plant N status was mispredicted when +/- 5% error around %N-c was allowed. A critical N uptake model (Nu(c), kg N ha(-1)) is proposed as Nu(c) = 34 (W)(0.63) A comparison between Nu(c) and N uptake observed in N treatments giving the maximal grain yields has shown that maize crops assimilate at least 30 kg N ha(-1) in a storage N pool at the silking stage. The significance of the critical %N-W and Nu-W relationships is discussed in relation to theoretical models proposed in whole plant ecophysiology. Different relationships calculated between leaf area index and aerial biomass accumulation, and between N uptake and leaf area were consistent with previous results for other crops. This strengthens the interest of the critical %N-W relationship for use as diagnostic tool of nitrogen status in maize crops.
引用
收藏
页码:65 / 82
页数:18
相关论文
共 52 条
[11]   SOURCES, FLUXES, AND SINKS OF NITROGEN DURING EARLY REPRODUCTIVE GROWTH OF MAIZE (ZEA-MAYS-L) [J].
CRAWFORD, TW ;
RENDIG, VV ;
BROADBENT, FE .
PLANT PHYSIOLOGY, 1982, 70 (06) :1654-1660
[12]   ALLOCATING LEAF NITROGEN FOR THE MAXIMIZATION OF CARBON GAIN - LEAF AGE AS A CONTROL ON THE ALLOCATION PROGRAM [J].
FIELD, C .
OECOLOGIA, 1983, 56 (2-3) :341-347
[13]  
FIELD C, 1983, EC PLANT FORM FUNCTI, P25
[14]  
GIAUFFRET C, 1991, MAYDICA, V36, P25
[15]   DECLINE IN PERCENTAGE N OF C3 AND C4 CROPS WITH INCREASING PLANT MASS [J].
GREENWOOD, DJ ;
LEMAIRE, G ;
GOSSE, G ;
CRUZ, P ;
DRAYCOTT, A ;
NEETESON, JJ .
ANNALS OF BOTANY, 1990, 66 (04) :425-436
[16]   GROWTH-RATE AND PERCENT N OF FIELD-GROWN CROPS - THEORY AND EXPERIMENTS [J].
GREENWOOD, DJ ;
GASTAL, F ;
LEMAIRE, G ;
DRAYCOTT, A ;
MILLARD, P ;
NEETESON, JJ .
ANNALS OF BOTANY, 1991, 67 (02) :181-190
[17]  
Grindlay Douglas J. C., 1993, Journal of the Science of Food and Agriculture, V63, P116
[19]   MAXIMIZING DAILY CANOPY PHOTOSYNTHESIS WITH RESPECT TO THE LEAF NITROGEN ALLOCATION PATTERN IN THE CANOPY [J].
HIROSE, T ;
WERGER, MJA .
OECOLOGIA, 1987, 72 (04) :520-526