The SCREENING OF HERBICIDES FOR EFFECTIVE CONTROL OF WEEDS IN SOYBEAN (Glycine max L.)

M. Safdar, M. Nadeem, A. Rehman, Amjed Ali, N. Iqbal, Qaisar Mumtaz, A. Javed
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Abstract

Little is known about best herbicidal weed option for weed eradication in soybean in agro-climatic circumstances of Sargodha, Punjab, Pakistan. A two year field study was accomplished at College of Agriculture experimental site Sargodha in spring seasons of 2018 and 2019 to evaluate the efficacy of different herbicides adjacent to major weeds present in soybean. The study consisted of 8 herbicide treatments including two pre-emergence herbicides (pendimethalin at 489.1 g a.i. ha-1, pendimethalin + S-metolachlor at 731.1 g a.i. ha-1) which are applied immediately after sowing and six post-emergence herbicides (oxyfluorfen at 237.1 g a.i. ha-1, metribuzin at 518.7 g a.i. ha-1, quizalofop-p-ethyl at 148.2 g a.i. ha-1, acetochlor at 741 g a.i. ha-1, halosulfuron at 37 g a.i. ha-1and topramezone at 21.5 g a.iha-1) which were used 25 days subsequent to sowing. In contrast to control, all herbicides have shown significant decline in weed density (up to 94%) and dry weight (up to 88%); and caused significant increases in plant height (up to 85%), pod bearing branches (up to 77%), number of pods per plant (up to 83%), 100-seed weight (up to 37%) and seed yield (up to 160%) of soybean. Among herbicides, topramezone at 21.5 g a.i ha-1 gave significantly the highest (1234 and 1272 kg ha-1 in the year 2018 and 2019) seed yield of soybean and HEIs (1.28 and 1.03 in year 2018 and 2019, respectively). However, oxyfluorfen at 237.1 g a.i. ha-1, pendimethalin + S-metolachlor at 731.1 g a.i. ha-1, pendimethalin at 489.1 g a.i. ha-1, quizalofop-p-ethyl at 148.2 g a.i.ha-1 followed it. The regression analysis depicted a significant negative moderate relationship of soybean seed yield with weed dry weight (R2 = 0.7074), and pods per plant (R2 = 0.7012) was proved to be the main yield component responsible for higher yield of soybean.
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大豆杂草有效防治除草剂的筛选
在巴基斯坦旁遮普省萨戈达的农业气候条件下,对大豆杂草根除的最佳除草剂选择知之甚少。本研究于2018年和2019年春季在农学院实验基地Sargodha完成了为期两年的田间研究,以评估大豆主要杂草附近不同除草剂的效果。该研究包括8种除草剂处理,包括播种后立即施用的2种羽化前除草剂(489.1 g a.i. ha-1、二甲甲烷+ s -甲草胺731.1 g a.i. ha-1)和6种羽化后除草剂(237.1 g a.i. ha-1、518.7 g a.i. ha-1、148.2 g a.i. ha-1、741 g a.i. ha-1、741 g a.i. ha-1)。在播种后25天施用氟磺隆37 g A.I. ha-1和topamezone 21.5 g A.I. ha-1。与对照相比,所有除草剂的杂草密度(高达94%)和干重(高达88%)均有显著下降;对大豆株高(85%)、结荚分枝(77%)、单株荚果数(83%)、百粒重(37%)和籽粒产量(160%)均有显著提高。在除草剂中,施用21.5 g a.i ha-1的topramezone对大豆和HEIs的种子产量最高(2018年和2019年分别为1234和1272 kg ha-1)(2018年和2019年分别为1.28和1.03)。然而,紧随其后的是237.1 g a.i.ha-1的氟氧芬、731.1 g a.i.ha-1的对二甲甲烷+ s -甲草胺、489.1 g a.i.ha-1的对二甲甲烷、148.2 g a.i.ha-1的对乙基quizalofp -p。回归分析表明,大豆种子产量与杂草干重呈显著负相关(R2 = 0.7074),单株荚果(R2 = 0.7012)是大豆高产的主要产量因素。
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