APPLICATION TECHNOLOGY AND EFFECTIVENESS OF AUXIN HERBICIDES IN CONTROLLING Conyza sumatrensis AND Commelina benghalensis

Alexandre Filus, A. Barroso, A. P. Albrecht, A. F. M. Silva, L. P. Albrecht, E. Roncatto
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Abstract

The Sumatran fleabane (Conyza sumatrensis [Retz.] E. Walker) and Benghal dayflower (Commelina benghalensis L.) are among the most challenging weeds to control in agricultural crops. However, synthetic auxins present a potential solution. This study aimed to assess the efficacy of auxin herbicides in controlling C. sumatrensis and C. benghalensis using two spray volumes and two types of nozzles: Turbo TeeJet® Induction (TTI) and Extended Range (XR). The research comprised four experiments conducted in a greenhouse in Curitiba, Paraná, Brazil, from November 2019 to January 2020. For C. sumatrensis, no significant differences were observed between treatments at both stages of development. Consequently, it was not possible to identify the most effective herbicide, volume, or application nozzle. However, all treatments were found to be effective by the end of the evaluations. In contrast, for C. benghalensis, 2,4-D demonstrated higher efficacy than dicamba, irrespective of the developmental stages. The reduction in spray volume from 200 to 140 L ha−1, and the use of the TTI nozzle did not impact the effectiveness of the herbicides. The stage of development did not influence the herbicide control. In this case, the target species was the predominant factor in determining the effectiveness of control.
应用辅药技术和辅药在控制苏门羚和高粱中的功效
苏门答腊飞蓬(Conyza sumatrensis [Retz.] E. Walker)和班加罗尔萱草(Commelina benghalensis L.)是农作物中最难控制的杂草之一。然而,合成助剂是一种潜在的解决方案。本研究旨在使用两种喷洒量和两种类型的喷嘴,评估辅助剂除草剂对苏马齿苋(C. sumatrensis)和萱草科杂草(C. benghalensis)的防效:Turbo TeeJet® Induction (TTI) 和 Extended Range (XR)。研究包括 2019 年 11 月至 2020 年 1 月在巴西巴拉那州库里提巴的温室中进行的四次实验。对于苏门答腊蝇来说,在两个发育阶段的处理之间均未观察到显著差异。因此,无法确定最有效的除草剂、用量或喷头。不过,在评估结束时,所有处理都被认为是有效的。相比之下,对 C. benghalensis 而言,无论处于哪个发育阶段,2,4-D 的药效都高于麦草畏。喷洒量从 200 升/公顷减少到 140 升/公顷,以及使用 TTI 喷嘴都不会影响除草剂的效果。发育阶段也不影响除草剂的控制效果。在这种情况下,目标物种是决定控制效果的主要因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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