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在大豆田中,利用滚轮涂抹二氯吡啶酸防治猪殃殃的效果。

Utility of roller wiper applications of dicamba for Palmer amaranth control in soybean.

机构信息

Department of Crop, Soil, and Environmental Sciences, University of Arkansas, Fayetteville, AR, USA.

Department of Crop, Soil, and Environmental Sciences, University of Arkansas Systems Division of Agriculture, Lonoke, AR, USA.

出版信息

Pest Manag Sci. 2022 Jun;78(6):2151-2160. doi: 10.1002/ps.6838. Epub 2022 Mar 12.

Abstract

BACKGROUND

The commercialization of dicamba-resistant soybean has resulted in increased concern for off-target movement of dicamba onto sensitive vegetation. To mitigate the off-target movement through physical drift, one might consider use of rope wicks and other wiper applicators. Although wiper-type application methods have been efficacious in pasture settings, the utility of dicamba using wiper applicators in agronomic crops is not available in scientific literature. To determine the utility of roller wipers for dicamba applications in dicamba-resistant soybean, two separate experiments were conducted in the summer of 2020 and replicated in both Keiser and Fayetteville, AR, USA.

RESULTS

Utilizing opposing application directions and a 2:1:1 ratio of water: formulated glyphosate: formulated dicamba were the most efficacious practices for controlling Palmer amaranth. The high herbicide concentrations and wiping in opposing directions increased dicamba-resistant soybean injury when the wiper contacted the crop, but no yield loss was observed because of this injury. Broadcast applications resulted in greater Palmer amaranth mortality than roller wiper applications, and the most effective roller wiper treatments were when two sequential applications were made inside the crop canopy.

CONCLUSIONS

Dicamba applications require adequate coverage for optimum weed control. While efforts can be made to increase roller wiper efficacy by optimizing coverage and timing of applications, broadcast applications are superior to roller wiper applicators for weed control. Roller wiper applications did not reduce soybean yield, thus wiper-type applications may be safely used in dicamba-resistant soybean, albeit the likelihood for off-target damage caused by volatilization of these treatments would need to be investigated. © 2022 The Authors. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.

摘要

背景

抗 dicamba 大豆的商业化导致人们对 dicamba 漂移到敏感植被上的非靶标移动的担忧增加。为了通过物理漂移来减轻非靶标移动,可以考虑使用绳状吸水器和其他擦拭器施药器。虽然擦拭器施药方法在牧场环境中非常有效,但在科学文献中,没有关于在农业作物中使用 dicamba 擦拭器的报道。为了确定在抗 dicamba 大豆中使用滚刷式擦拭器施药的效果,在 2020 年夏季,在美国阿肯色州的基泽尔和费耶特维尔进行了两项独立的试验,并进行了重复。

结果

采用相反的施药方向和水:配制成的草甘膦:配制成的 dicamba 为 2:1:1 的比例,是控制马齿苋最有效的方法。高浓度的除草剂和反向擦拭增加了滚刷接触作物时抗 dicamba 大豆的损伤,但由于这种损伤,没有观察到产量损失。撒施处理比滚刷施药处理导致马齿苋死亡率更高,当在作物冠层内进行两次连续施药时,最有效的滚刷施药处理效果最好。

结论

dicamba 施药需要充分覆盖以实现最佳杂草防治效果。虽然可以通过优化施药覆盖和时间来提高滚刷式擦拭器的效果,但对于杂草防治,撒施处理优于滚刷施药器。滚刷施药处理没有降低大豆产量,因此擦拭器施药处理可能在抗 dicamba 大豆中安全使用,尽管需要对这些处理的挥发导致的非靶标损害的可能性进行调查。 © 2022 作者。Pest Management Science 由 John Wiley & Sons Ltd 代表化学工业协会出版。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57ab/9314051/b7a2d74e829b/PS-78-2151-g004.jpg

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