Effect Of Weeding and Pest Control on Root Dynamics of Soybean (Glycine max (L.) Merril) on Sugarcane-Soybean Intercropping System

Iskandar Umarie, W. Widiarti, Oktarina Oktarina, Ika Isnaini Rahayu, Muharromatul Hikmah
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Abstract

Soybean (Glycine max (L.) Merill) is one of the important commodities in the provision of food, feed, and industrial materials, so it has become a major commodity in international trade. The need for global soybeans increases every year, along with population growth, improvement in per capita income, and the development of a food industry that is made from soybeans. This research was conducted in the experimental garden of the Faculty of Agriculture, Muhammadiyah University, Jember, Jember, East Java, Indonesia. The research was conducted in the form of factorial field experiments. The First Factor is F1: Weed Weeding Frequency, as many as 3 levels, yi: F1: Weeding once (15 hst), F2: Weeding 2 times (15, 30 hst), F3: Weeding 3 times (15, 30, and 45 days after) ) and and the second factor is Pest Control by 4 levels: I1 = Chemical Insecticide (Decis 25 EC), I2 = Vegetable Insecticide, I3 = Vegetable Insecticide Soursop Extract, I4 = Vegetable Insecticide of Neem Extract. The treatments above were arranged using a Complete Randomized Block Design (RCBD) which was repeated three times. The results of the study of weed frequency treatment significantly affected the growth of root nodules and the development of the roots of soybean plants. The best weed weeding frequency is weeding three times in one growing season. Treatment of pest control significantly affects the growth of root nodules and the development of the roots of soybean plants. The best pest control is pest control with chemical insecticides. The interaction of weed weeding frequency with pest control significantly influences the growth of root nodules and the root growth of soybean plants. The best interaction in this study is the interaction between the frequency of weeding three times sugar with pest control using chemical insecticides
除草和除虫对大豆根系动态的影响甘蔗-大豆间作制度的研究
大豆(甘氨酸max (l))美林(merrill)是提供食品、饲料和工业原料的重要商品之一,因此它已成为国际贸易中的主要商品。随着人口的增长、人均收入的提高以及以大豆为原料的食品工业的发展,全球对大豆的需求每年都在增加。本研究在印度尼西亚东爪哇省Jember市Muhammadiyah大学农学院的实验园进行。本研究以析因场实验的形式进行。第一个因素是F1:除草频率,多达3个级别,yi: F1:除草一次(15、30小时),F2:除草2次(15、30小时),F3:除草3次(15、30、45天)),第二个因素是4个级别的害虫防治:I1 =化学杀虫剂(Decis 25 EC), I2 =植物杀虫剂,I3 =植物杀虫剂酸橙提取物,I4 =印楝提取物植物杀虫剂。上述处理采用完全随机区组设计(RCBD),重复三次。研究结果表明,杂草频率处理对大豆根瘤生长和根系发育有显著影响。最好的除草频率是在一个生长季节除草三次。病虫害防治处理对大豆根瘤生长和根系发育有显著影响。最好的害虫防治方法是使用化学杀虫剂。除草频率与病虫害防治的交互作用对大豆根瘤生长和根系生长有显著影响。本研究的最佳交互作用是三次除草频率与化学杀虫剂防治害虫的交互作用
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来源期刊
International Journal of Applied Science and Engineering
International Journal of Applied Science and Engineering Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
2.90
自引率
0.00%
发文量
22
期刊介绍: IJASE is a journal which publishes original articles on research and development in the fields of applied science and engineering. Topics of interest include, but are not limited to: - Applied mathematics - Biochemical engineering - Chemical engineering - Civil engineering - Computer engineering and software - Electrical/electronic engineering - Environmental engineering - Industrial engineering and ergonomics - Mechanical engineering.
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