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首页> 外文期刊>Weed Science: Journal of the Weed Science Society of America >Soil Properties Influence Saflufenacil Phytotoxicity
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Soil Properties Influence Saflufenacil Phytotoxicity

机译:土壤特性影响沙丁草胺的植物毒性

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Saflufenacil, a pyrimidinedione herbicide, is used for contact and residual broadleaf weed control in various crops. Bioactivity of saflufenacil in soil was tested in greenhouse and laboratory studies on 29 soils representing a wide range of soil properties and geographic areas across the United States. A greenhouse bioassay method was developed using various concentrations of saflufenacil applied PPI to each soil. Whole canola plants were harvested 14 d after treatment, and fresh and dry weights were recorded. Nonlinear regression analysis was used to determine the effective saflufenacil doses for 50% (ED50,), 80% (ED80), and 90% (ED90) inhibition of total plant fresh weight. Bioactivity of saflufenacil in soil was strongly correlated to soil organic (R = 0.85) and humic matter (R = 0.81), and less correlated to cation exchange capacity (R = 0.49) and sand content (R = -0.32). Stepwise regression analysis indicated that organic matter was the major soil constituent controlling bioactivity in soil and could be used to predict the bioactivity of saflufenacil. Saflufenacil phytotoxicity was found to be dependent on soil property; therefore, efficacy and crop tolerance from PRE and PPI applications may vary based on soil organic matter content and texture classification.
机译:嘧啶二酮除草剂Saflufenacil用于各种作物的接触和残留阔叶杂草控制。在温室和实验室研究中,在美国范围内的29种土壤中测试了氟苯嘧啶的生物活性,这些土壤代表了广泛的土壤特性和地理区域。开发了一种温室生物测定方法,该方法使用了不同浓度的氟苯嘧啶对每个土壤施用PPI。处理14天后收获完整的油菜植株,并记录新鲜和干重。非线性回归分析用于确定对总植物鲜重抑制量分别为50%(ED50,),80%(ED80)和90%(ED90)的有效氟苯嘧啶剂量。氨苯磺草胺在土壤中的生物活性与土壤有机物(R = 0.85)和腐殖质(R = 0.81)密切相关,与阳离子交换能力(R = 0.49)和含沙量(R = -0.32)相关性较小。逐步回归分析表明,有机质是控制土壤生物活性的主要土壤成分,可用于预测苯丁草胺的生物活性。发现沙丁草胺的植物毒性取决于土壤性质。因此,PRE和PPI施用的功效和农作物耐受性可能会因土壤有机质含量和质地分类而异。

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