首页> 外文期刊>Weed Science: Journal of the Weed Science Society of America >Temperature Influences Efficacy, Absorption, and Translocation of 2,4-D or Glyphosate in Glyphosate-Resistant and Glyphosate-Susceptible Common Ragweed (Ambrosia artemisiifolia) and Giant Ragweed (Ambrosia trifida)
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Temperature Influences Efficacy, Absorption, and Translocation of 2,4-D or Glyphosate in Glyphosate-Resistant and Glyphosate-Susceptible Common Ragweed (Ambrosia artemisiifolia) and Giant Ragweed (Ambrosia trifida)

机译:温度会影响2,4-D或草甘膦在草甘膦和草甘膦易受常见的豚草(Ambrosia Artemisiifolia)和巨型豚草(Ambrosia Trifida)中的疗效,吸收和易位的疗效,吸收和转矩

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Glyphosate and 2,4-D have been commonly used for control of common and giant ragweed before planting of corn and soybean in the midwestern United States. Because these herbicides are primarily applied in early spring, environmental factors such as temperature may influence their efficacy. The objectives of this study were to (1) evaluate the influence of temperature on the efficacy of 2,4-D or glyphosate for common and giant ragweed control and the level of glyphosate resistance and (2) determine the underlying physiological mechanisms (absorption and translocation). Glyphosate-susceptible (GS) and glyphosate-resistant (GR) common and giant ragweed biotypes from Nebraska were used for glyphosate dose-response studies, and GR biotypes were used for 2,4-D dose-response studies conducted at two temperatures (day/night [d/n]; low temperature [LT]: 20/11 C d/n; high temperature [HT]: 29/17 C d/n). Results indicate improved efficacy of 2,4-D or glyphosate at HT compared with LT for common and giant ragweed control regardless of susceptibility or resistance to glyphosate. The level of glyphosate resistance decreased in both the species at HT compared with LT, primarily due to more translocation at HT. More translocation of 2,4-D in GR common and giant ragweed at HT compared with LT at 96h after treatment could be the reason for improved efficacy. Similarly, higher translocation in common ragweed and increased absorption and translocation in giant ragweed resulted in greater efficacy of glyphosate at HT compared with LT. It is concluded that the efficacy of 2,4-D or glyphosate for common and giant ragweed control can be improved if applied at warm temperatures (29/17 C d/n) due to increased absorption and/or translocation compared with applications during cooler temperatures (20/11 C d/n).
机译:草甘膦和2,4-D通常用于控制美国中西部种植玉米和大豆之前的常见和巨型豚草。因为这些除草剂主要应用于早春,所以温度等环境因素可能影响它们的功效。本研究的目的是(1)评估温度对常见和巨型豚草控制的2,4-d或草甘膦的功效的影响,并抗甘藻酸盐抗性水平和(2)确定潜在的生理机制(吸收和易位)。来自内布拉斯加州的草甘膦易感(GS)和抗草甘膦(GR)常见的和巨型豚草生物型用于草甘膦剂量 - 反应研究,GR生物型用于在两个温度下进行的2,4-D剂量 - 反应研究(日/夜间[d / n];低温[lt]:20/11 c d / n;高温[ht]:29/17 c d / n)。结果表明,与用于常见和巨大的豚草控制的LT,无论对草甘膦的耐受性如何,在HT中提高2,4-D或草甘膦的疗效。与LT相比,HT的物种两种物种在HT中的抗性水平降低,主要是由于HT更多的易位。在治疗后96h的HT常见和巨型牛皮中的2,4-D在GR常见和巨型牛仔中的易刻可能是提高疗效的原因。类似地,常见的豚草中的易位和巨型豚草中的常见吸收和易位增加导致草甘膦​​与LT相比的更高效果。结论是,如果在较冷的吸收和/或易位增加,可以改善2,4-D或草甘膦的常见和巨型豚草控制的疗效可以提高,并且在冷却器期间的应用增加温度(20/11 c d / n)。

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