Simulation of Total Dry Matter Production of Glycine Max L Merrill Under Weed Management Practices

H. Mohammadi, H. Ghulami, A. Rezaei
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Abstract

An investigation on “Weed Management and Crop Growth Modeling in Soybean” was carry out on red sandy loam soil at UAS, Main Research Station, Hebbal, Bangalore during Rabi 2010 (September to December). The weed control practices included in the study were i) Pendimethalin 30 EC 1.0 kg a.i./ha – 3 days after sowing, ii) Imazethapyr 10 SL 100 g a.i./ha – 20 days after sowing, iii) Quizalofop-p-ethyl 5 EC 50 g a.i./ha – 20 days after sowing, iv) Chlorimuron ethyl 25 WP 6 g a.i./ha – 20 days after sowing, v) Hand weeding (20 & 40 DAS) and vi) un-weeded control. The experiment was designed as RCBD with four replications. Growth models – Richards, Logistic, Cubic polynomial and Quadratic polynomial simulated the course of dry matter production/plant by >97per cent under all weed management practices, indicating that weed competition did not alter the pattern of crop growth, but affected the total production substantially.
杂草管理条件下甘氨酸(Glycine Max L Merrill)全干物质产量模拟
2010年Rabi(9 - 12月)期间,在班加罗尔Hebbal主要研究站UAS对红砂壤土进行了“大豆杂草管理和作物生长模型”调查。研究中包括的除草措施为:i)播后3天,戊二甲基灵30 EC 1.0 kg a.i./ha; ii)播后20天,吡唑乙酯10 SL 100 g a.i./ha; iii)播后20天,Quizalofop-p-ethyl 5 EC 50 g a.i./ha; iv)播后20天,氯脲乙酯25 WP 6 g a.i./ha; v)手除草(20和40 DAS)和vi)除草控制。试验设计为RCBD,共4个重复。生长模型——Richards、Logistic、三次多项式和二次多项式对所有杂草管理措施下干物质生产/植株过程的模拟结果均大于97%,表明杂草竞争并未改变作物生长模式,但对总产量产生了实质性影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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