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首页> 外文期刊>Weed Technology >Weed Management, Fiber Quality, and Net Returns in No-Tillage Transgenic and Nontransgenic Cotton (Gossypium hirsutum)1
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Weed Management, Fiber Quality, and Net Returns in No-Tillage Transgenic and Nontransgenic Cotton (Gossypium hirsutum)1

机译:免耕转基因和非转基因棉花(陆地棉)的杂草管理,纤维质量和净收益 1

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摘要

Studies on weed management systems with bromoxynil-resistant, glyphosate-resistant, and nontransgenic cotton cultivars in a no-tillage environment were evaluated in North Carolina and Tennessee in 1997 and 1998. All weed management systems in nontransgenic and bromoxynil-resistant cotton controlled sicklepod 72 to 78%, whereas sicklepod was controlled at least 94% in glyphosate-resistant cotton. Entireleaf and pitted morningglory, smooth pigweed, and common cocklebur were controlled at least 92% with all management systems. Fiber quality was also measured in Tennessee. Micronaire and fiber strength ranged from 4.35 to 4.55 units and 28.6 to 30.1 g/tex, respectively, in bromoxynil-resistant and glyphosate-resistant cultivars that received postemergence over-the-top (POT) herbicides. Harvest trash content ranged from 0.80 to 1.15% in systems where POT and late postemergence–directed (LAYBY) herbicides were used and was 1.65% where multiple glyphosate applications were used with no LAYBY herbicides. Cotton lint yield and net returns were generally highest in systems that included bromoxynil or pyrithiobac POT followed by cyanazine plus MSMA LAYBY or multiple glyphosate treatments where no LAYBY herbicides were used.
机译:在北卡罗来纳州和田纳西州,分别于1997年和1998年评估了在非耕作环境中具有耐溴草腈,抗草甘膦和非转基因棉花的杂草处理系统的研究。所有非转基因和耐溴苯腈的棉花控制的镰刀植物的杂草管理系统72达到78%,而在抗草甘膦的棉花中,镰刀菌病至少控制了94%。在所有管理系统中,整个叶子和凹陷的牵牛花,光滑的杂草和普通的鸟蛤都被控制了至少92%。纤维质量也在田纳西州进行了测量。在接受芽后顶置(POT)除草剂的耐溴苯腈和草甘膦的品种中,马克隆值和纤维强度分别为4.35至4.55单位和28.6至30.1 g / tex。在使用POT和后期芽后定向(LAYBY)除草剂的系统中,收获垃圾的含量在0.80至1.15%的范围内,而在不使用LAYBY除草剂的情况下使用多次草甘膦的系统中,收割垃圾的含量为1.65%。在以下系统中,棉花皮棉的单产和净收益通常最高,其中包括溴苯腈或硫代硫菌POT,然后是氰嗪加MSMA LAYBY或多次使用草甘膦处理的系统,其中不使用LAYBY除草剂。

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