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Interaction between burndown systems and post-emergence weed control affecting soybean development and yield

机译:燃尽系统与出苗后杂草控制之间的相互作用会影响大豆的发育和产量

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This work aimed to evaluate the interaction between burndown methods and systems of post-emergence weed control in soybeans, cv. BRS 154, under no-tillage, in areas with expressive soil green cover. Thirteen treatments in a factorial scheme (3x4) +1, were evaluated. Main factors were composed by three burndown systems (desiccation immediately before sowing; desiccation 10 days prior to crop sowing and anticipated desiccation, composed by two burndown herbicide applications, being the first one 24 days prior to sowing and the second one immediately before sowing), four post-emergence weed control systems (no control, manual weeding, sequential herbicide application and single herbicide application) and an additional treatment constituted by an absolute check (no burndown and no post-emergence weed control). Although the final level of desiccation achieved by the different burndown systems was similar, the anticipation of cover desiccation provided by anticipated burndown system led to improved emergence and initial soybean development, leading to increased yield. Burndown choice also affected the initial weed fluxes after soybean emergence, with lower weed densities at anticipated burndown system, as a function of weed control of the first fluxes given by the second herbicide application in this system. Burndown at sowing date or 10 days prior to sowing decreased soybean development, leading to lower grain yields. Anticipated burndown allowed increased soybean yield, as compared to other burndown systems.
机译:这项工作旨在评估燃尽法和大豆出苗后除草系统之间的相互作用。 BRS 154,在免耕状态下,土壤绿色覆盖良好。评价了因子分解方案(3x4)+1中的13种处理方法。主要因素由三种燃尽系统组成(播种前立即干燥;播种前10天的干燥和预期的脱水,由两次燃尽除草剂的施用组成,即播种前24天的第一天和播种前的第二天),四个出苗后除草系统(无控制,手动除草,顺序除草剂施用和单种除草剂施用)和由绝对检查组成的附加处理(无燃尽和出苗后除草控制)。尽管不同的燃尽系统实现的最终干燥水平相似,但预期燃尽系统提供的覆盖物干燥的预期导致出苗率提高和大豆初期发育,从而导致单产提高。燃尽的选择还影响了大豆出苗后的初始杂草通量,在预期的燃尽系统中杂草密度较低,这取决于该系统中第二种除草剂的施用对第一通量的杂草控制。播种期或播种前10天的燃尽降低了大豆发育,导致谷物单产降低。与其他燃尽系统相比,预期燃尽可提高大豆单产。

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