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Critical-point model to estimate yield loss caused by Asian soybean rust

机译:评估亚洲大豆锈病造成的产量损失的临界点模型

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ABSTRACTA model to estimate yield loss caused by Asian soybean rust (ASR) (Phakopsora pachyrhizi) was developed by collecting data from field experiments during the growing seasons 2009/10 and 2010/11, in Passo Fundo, RS. The disease intensity gradient, evaluated in the phenological stages R5.3, R5.4 and R5.5 based on leaflet incidence (LI) and number of uredinium and lesions/cm2, was generated by applying azoxystrobin 60 g a.i/ha + cyproconazole 24 g a.i/ha + 0.5% of the adjuvant Nimbus. The first application occurred when LI = 25% and the remaining ones at 10, 15, 20 and 25-day intervals. Harvest occurred at physiological maturity and was followed by grain drying and cleaning. Regression analysis between the grain yield and the disease intensity assessment criteria generated 56 linear equations of the yield loss function. The greatest loss was observed in the earliest growth stage, and yield loss coefficients ranged from 3.41 to 9.02 kg/ha for each 1% LI for leaflet incidence, from 13.34 to 127.4 kg/ha/1 lesion/cm2 for lesion density and from 5.53 to 110.0 kg/ha/1 uredinium/cm2 for uredinium density.
机译:通过收集2009/10和2010/11生长季节在RS Passo Fundo,RS的田间试验数据,开发了ABSTRACTA模型,用于估算由亚洲大豆锈病(ASR)(Phakopsora pachyrhizi)引起的产量损失。疾病强度梯度在物候期R5.3,R5.4和R5.5中根据小叶发病率(LI)以及尿素数和病灶数/ cm2进行评估,是通过施用60mg ai / ha +环丙康唑24产生的g ai / ha + 0.5%的辅助雨云。当LI = 25%时,第一次应用发生,其余的间隔为10、15、20和25天。在生理成熟时收获,随后进行谷物干燥和清洁。谷物产量与疾病强度评估标准之间的回归分析生成了产量损失函数的56个线性方程。在最早的生长阶段观察到最大的损失,对于小叶发生率,每1%LI的产量损失系数范围为3.41至9.02 kg / ha,对于病斑密度,损失系数为13.34至127.4 kg / ha / 1病灶/ cm2,从5.53达到110.0 kg / ha / 1尿素/ cm2的浓度。

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