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The combined use of spray volumes and droplet sizes in the chemical control of Asian soybean rust in cultivars with different leaf area indices

机译:喷雾体积和液滴尺寸在亚洲大豆生锈中的不同叶片区指数的化学控制中的结合使用

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Asian soybean rust (ASR) is the principal disease that affects the soybean crop. Fungicides are most effective in controlling ASR. However, the intrinsic factors related to the soybean cultivar, suitability of the application technology to the target (leaves) and environmental factors directly affect the application effectiveness control. This study investigated the effect of the combined use of spray volumes (70, 110 and 150 L ha(-1)) and droplet sizes (fine and medium) on the chemical control of ASR in two cultivars with different leaf area indices (LAI) [BMX Lanca cv. (LAI<6.0) and BMX Garra cv. (LAI>6.0)]. For the BMX Tanga, in 2017, when the maximum LAI achieved was 5.8, the use of increasing spray volumes, according to the crop growth, and fine droplets (in the applications 2 and 3) presented an area under the disease progress curve (AUDPC) and productivity results similar to the use of the 150 L ha(-1) rate for all the applications, irrespective of the droplet size employed. For the BMX Garra, which reached a maximum LAI of 7.1 in the same year, the highest seed yield and lowest AUDPC were obtained for the spray volume of 150 L ha(-1) in all the applications, using both droplet sizes. In 2018, when the LAI of the cultivars were reduced because of lack of rainfall, BMX Lanca and BMX Garra showed maximum LAI of 4.9 and 5.5, respectively, and the same treatments that stood out in the 2017 season for both cultivars presented the lowest values regarding the AUDPC. Otherwise, none or minor statistical differences were detected between the combinations of spray volumes and droplet spectra for both cultivars in 2018. The spray volume and droplet size should be determined according to the leaf area of the crop at the time of the application and under conditions of disease pressure.
机译:亚洲大豆生锈(ASR)是影响大豆作物的主要疾病。杀菌剂在控制ASR中最有效。然而,与大豆品种相关的内在因素,适用于目标(叶子)和环境因素的应用技术直接影响应用效率控制。本研究调查了混合使用喷雾体积(70,110和150L HA(-1))和液滴尺寸(良好和中等)对不同叶面积指数(LAI)的两种品种的化学控制的效果[BMX LANCA CV。 (LAI <6.0)和BMX GARRA CV。 (莱> 6.0)]。对于BMX Tanga,在2017年,当达到的最大赖为5.8时,根据作物生长和细液滴(在应用2和3中的细液滴(在应用2和3中)使用增加的喷雾体积(在疾病进展曲线下)和生产率结果类似于所有应用的150 L HA(-1)率的使用,而不管采用的液滴尺寸如何。对于BMX Garra,在同年达到7.1的最大LAI,使用两滴尺寸,在所有应用中,在所有应用中获得最高的种子产量和最低视听牌,在所有应用中获得150L HA(-1)的喷雾体积。 2018年,由于缺乏降雨量的莱莱,BMX LANGA和BMX Garra分别显示出4.9和5.5的最大赖,以及两种品种的2017季度同样的治疗方法呈现了最低价值关于AUDPC。否则,在2018年为栽培品种的喷雾体积和液滴谱的组合之间没有检测到无或小统计差异。喷雾体积和液滴尺寸应根据申请时和条件下的作物的叶面积确定疾病压力。

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