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首页> 外文期刊>American Journal of Plant Sciences >Broadleaf Weed Control and Crop Safety with Premixed Pyrasulfotole and Bromoxynil in Winter Wheat
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Broadleaf Weed Control and Crop Safety with Premixed Pyrasulfotole and Bromoxynil in Winter Wheat

机译:预先混合的吡草硫磺和溴苯腈对小麦的阔叶杂草控制和作物安全

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For more than two decades acetolactate synthase (ALS) inhibiting herbicides have been the major weed control tools in winter wheat which resulted in selection of resistant weeds to those herbicides. Premix of pyrasulfotole & bromoxynil (Huskie?), a relatively new herbicide, was registered for use in wheat in 2008. Pyrasulfotole inhibits 4-hydoxyphenylpyruvate dioxygenase (HPPD) enzyme in susceptible plants and is the first significant new mode of action for use in cereals for more than two decades. Field experiments were conducted from 2007 to 2010 at two locations in Kansas, USA to test the efficacy of pyrasulfotole & bromoxynil for broadleaf weed control and crop safety in winter wheat. Treatments included pyrasulfotole & bromoxynil alone at 253 g·ai·ha-1 and tank mixtures of pyrasulfotole & bromoxynil at 207 g·ai·ha-1 with MCPA at 280 g·ai·ha-1, dicamba at 140 g·ai·ha-1 or metsulfuron-methyl at 4.2 g·ai·ha-1. Herbicides were applied postemergence in fall and spring seasons. Pyrasulfotole & bromoxynil alone or in combination with tank-mix partners, regardless of application time, controlled flixweed, blue mustard, bushy wallflower and field pennycress 98% or more. Henbit control was better when pyrasulfotole & bromoxynil treatments were applied in fall than spring (≥98% vs ≥67%). Pyrasulfotole & bromoxynil alone applied in spring was not effective on wild buckwheat, but tank mixing with dicamba or metsulfuron-methyl controlled it 84% or more. Pyrasulfotole & bromoxynil alone or as tank mixture caused little (≤7%) or no injury to wheat and the injury did not influence wheat grain yields. Based on excellent control of broadleaf weeds evaluated, pyrasulfotole & bromoxynil is an alternative tool to control ALS-inhibitor resistant weeds in winter wheat. Fall season application and tank mixing with other herbicides are desirable for effective and broad spectrum weed control.
机译:二十多年来,抑制乙酰乳酸合酶(ALS)的除草剂一直是​​冬小麦中主要的杂草控制工具,导致选择了对这些除草剂具有抗性的杂草。相对较新的除草剂吡草磺酚和溴苯腈的预混物(哈士奇?)已于2008年注册用于小麦。吡草酚可抑制易感植物中的4-羟基苯丙酮酸双加氧酶(HPPD)酶,是谷物中第一个重要的新作用方式。二十多年了从2007年至2010年,在美国堪萨斯州的两个地方进行了田间试验,以测试吡草硫醇和溴苯腈对冬小麦阔叶杂草控制和作物安全的功效。处理方法包括:单独使用253 g·ai·ha-1的吡草硫醇和溴苯腈,以及将207 g·ai·ha-1的吡草胺和溴苯腈与MCPA 280 g·ai·ha-1,麦草畏140 g·ai· ha-1或甲磺隆甲基在4.2 g·ai·ha-1。在秋季和春季对芽后进行除草剂施用。不论是施用时间长短,均可单独使用火草和溴苯腈,或与罐混伙伴结合使用,控制的西花草,蓝芥末,浓密的壁花和田地豆瓣菜98%或更高。与春季相比,秋季使用吡草硫醇和溴苯腈治疗时,亨比氏控制效果更好(≥98%,≥67%)。春季单独使用吡草脲和溴苯腈对野生荞麦无效,但与麦草畏或甲磺隆的罐混控制使其达到84%或更高。单独或以桶装混合物形式的吡草酚和溴苯腈对小麦几乎没有伤害(≤7%)或没有造成伤害,并且伤害没有影响小麦的单产。基于对阔叶杂草的出色控制,吡草磺酚和溴苯腈是控制冬小麦ALS抑制剂抗性杂草的替代工具。秋季施用和与其他除草剂的桶混对于有效和广谱除草是理想的。

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