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Yield, quality and weed control in soybean crop as affected by several cultural and weed management practices

机译:大豆作物中的产量,质量和杂草控制受到几种文化和杂草管理实践的影响

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In the field of Agricultural University of Athens, the effects of false seedbed technique, stale seedbed, chemical and ecologically based control on weed growth and soybean yield were evaluated (2019). The experimental treatments were: normal seedbed, normal seedbed along with pre-emergence chemical control, false seedbed, stale seedbed with glyphosate and stale seedbed with pelargonic acid. In the plots of normal seedbed along with pre-emergence chemical control, pendimethalin was applied at rate of 1560 g a.i. ha-1. In the plots of stale seedbed with glyphosate, glyphosate was applied at a rate of 2160 g a.e. ha-1 and in the plots of stale seedbed with pelargonic acid, pelargonic acid was applied at a rate of 31020 g a.i. ha-1. The experiment was conducted in a randomized complete block design with three replicates. The results revealed that stale seedbed combined either with glyphosate or pelargonic acid application reduced annual weeds’ density by 94 and 95% as compared to normal seedbed. Stale seedbed along with pelargonic acid reduced the density of perennial weeds by 36, 38 and 41% as compared to the combination of normal seedbed and pre-emergence chemical control, normal seedbed and false seedbed, respectively. The application of glyphosate in stale seedbed plots was also effective against perennial weeds. It was also observed that stale seedbed along with glyphosate increased soybean seed yield by 17, 19 and 35% as compared to the combination of normal seedbed and pendimethalin application, false seedbed and normal seedbed, respectively. Beneficial were also the effects of the combination of stale seedbed and pelargonic acid not only on soybean seed yield but also on soybean protein content. Further research is needed in order to investigate the role of false and stale seedbeds as integrated weed management practices in various crops and under different soil and climatic conditions. Research is also needed to evaluate pelargonic acid for weed control in stale seedbeds since it is an eco-friendly herbicide with no restrictions for organic farming.
机译:在雅典农业大学的领域,假苗床技术,陈旧的苗床,化学的作用和杂草的生长,大豆产量生态为基础的控制进行评估(2019)。实验处理为:正常苗床,以芽前化学控制,假苗床,陈旧苗床与草甘膦和陈旧苗床用壬酸沿正常苗床。与芽前化学控制沿正常苗床的地块,胺硝草1560克活性的速率施加HA-1。与草甘膦陈旧苗床的曲线,草甘膦在2160克A.E.的速率施加HA-1,并与壬酸陈旧苗床的曲线,壬酸在31020克A.I.的比率施用HA-1。实验在完全随机区组设计,3次重复进行。结果表明,陈旧苗床组合或者用草甘膦或壬酸应用由94和95%降低一年生杂草密度相对于正常苗床如。陈旧苗床连同壬酸由36,38和41%相比,分别正常苗床和芽前化学控制,正常苗床和假苗床的组合,减少多年生杂草的密度。草甘膦在陈旧苗床图上的应用也对多年生杂草有效。还观察到,与草甘膦沿着陈旧苗床17,19和35%相比于正常的苗床和胺硝草的应用,假苗床和正常苗床,分别组合增加的大豆的种子产量。有益也不仅对大豆的种子产量也对大豆蛋白含量陈旧苗床和壬酸的组合的作用。还需要进一步研究,以调查的虚假和陈旧的苗床在各种作物,不同土壤和气候条件下的杂草综合管理实践中的作用。还需要研究以评估在陈旧苗床杂草控制壬酸,因为它是一种环保型的除草剂与用于有机农业没有任何限制。

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