MODELING AND PREDICTION OF DEVELOPMENTAL PROCESS IN RICE .1. STRUCTURE AND METHOD OF PARAMETER-ESTIMATION OF A MODEL FOR SIMULATING DEVELOPMENTAL PROCESS TOWARD HEADING

被引:65
作者
HORIE, T
NAKAGAWA, H
机构
[1] Laboratory of Crop Science, Kyoto University, Sakyo-ku
关键词
Development; Developmental index; Developmental rate; Heading date; Model; Prediction; Rice; Simulation;
D O I
10.1626/jcs.59.687
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Rice developmental stage is quantified by a continuous variable termed developmental index, DVI, of which value at the emergence is defined to be 0 and at the heading to be 1.0. The value of DVI at any moment between these two boundary stages can be given by integrating the developmental rate, DVR, with respect to time, in a similar way as de Wit et al. (1970) applied. We propose the following equation for DVR of rice as a function of daily mean temperature T and day length L, [formula omitted] where G is a minimum number of days required for heading of a given cultivar; Th is the temperature at wihch DVR is the half of the maximum under a given day length; Lc is the critical day length for development; DVI* is the value of DVI at which the crop becomes sensitive to photoperiod; A and B are the parameters. By utilizing the Simplex method, aleast square regression method for non-linear fun ctions, the values of these parameters can be estimated from experimental data sets on rice phenology and the environments obtained under field conditions. The model explained heading dates of Nipponbare rice grown under 35 different conditions with S.E.=3.6 days, while the traditional effective degree day model explained the same data with S.E.=6.5 days. © 1990, CROP SCIENCE SOCIETY OF JAPAN. All rights reserved.
引用
收藏
页码:687 / 695
页数:9
相关论文
共 14 条
[1]  
Draper N., Smith H., Selecting the “best” regression equation, Applied Regression Analysis, pp. 294-352, (1980)
[2]  
Garner W.W., Allard H.A., Effect of the relative length of day and night and other factors of the environment on growth and reproduction in plants, J. Agric. Res., 18, pp. 553-606, (1920)
[3]  
Horie T., The effect of climatic variations on rice yields in Hokkaido, (1987)
[4]  
Ikeda K., Studies on initiation of floral bud and subsequent development in rice plants. I. Floral development as influenced by the photoperiodic conditions, Bull. Fac. Agric. Mie Univ., 40, pp. 1-9, (1970)
[5]  
Ikeda K., Studies on initiation and subsequent development of floral bud in rice plants. III. Appearance of photoperiodic sensitivity and its changes with plant age, Bull. Fac. Agric. Mie Univ., 48, pp. 1-8, (1975)
[6]  
Annual report for 1974, IRRI, (1975)
[7]  
Major D.J., Johnson D.R., Tanner J.W., Anderson I.C., Effects of day length and temperature on soybean development, Crop Sci., 15, pp. 174-179, (1975)
[8]  
Robertson G.W., A biometeorological time scale for a cereal crop involving day and night temperature and photoperiod, Int. J. Biometeorol., 12, pp. 191-223, (1968)
[9]  
Sakamoto S., Toriyama K., Studies on the breeding of non-seasonal short duration rice varieties, with special reference to the heading characteristics of Japanese varieties, Bull. Chugo-ku Agric. Exp. Stn. A., 14, pp. 147-165, (1967)
[10]  
Takimoto A., Ikeda K., Effect of twilight on photoperiodic induction in some short day plants, Plant Cell Physiol., 2, pp. 213-229, (1961)