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A non-destructive method for testing two components of the behaviour of soil-applied agricultural chemicals over a long period

机译:长期测试土壤施用农药的两个成分行为的无损方法

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BACKGROUND: Owing to the complexity of soil composition, accurate predictions of both apoplastic systemicity of lipophilic xenobiotics and their leaching from the soil are made difficult. Therefore, a non-destructive method to assess directly these two components of the spatial behaviour of soil-applied phytochemicals is needed. RESULTS: The plant selected was a dwarf tomato, which can exude an abundant apoplastic fluid through large stomata for several months. The feasibility and reliability of the method were assayed using three triazoles exhibiting different log D values. HPLC-MS analyses indicated that triadimenol (log D = 2.97) was clearly the most mobile compound within the apoplast, especially its diastereoisomer A. Propiconazole (log D = 3.65) and penconazole (log D = 4.64) exhibited a similar low systemicity. The data remained the same when the three fungicides were applied together on the soil. Long time-course studies (1.5 months) of penconazole behaviour indicated that, in contrast to leaching, which decrease sharply, root-to-shoot translocation remained almost unchanged during the whole experiment, in spite of the high lipophilicity of this fungicide. CONCLUSION: This method must contribute to a better knowledge of the behaviour of commercial soil-applied phytochemicals. It can also be used to screen new xenobiotics within strategies to satisfy environmental requirements.
机译:背景:由于土壤成分的复杂性,很难准确预测亲脂性异质生物的质外体系统性和它们从土壤中的浸出。因此,需要一种非破坏性方法来直接评估土壤应用植物化学物质的空间行为的这两个组成部分。结果:所选择的植物是矮番茄,可以通过大的气孔渗出丰富的质外体液达数月之久。使用显示不同log D值的三种三唑测定了该方法的可行性和可靠性。 HPLC-MS分析表明,triadimenol(log D = 2.97)显然是质外体中流动性最高的化合物,尤其是其非对映异构体A。Propiconazole(log D = 3.65)和penconazole(log D = 4.64)表现出相似的低系统性。当三种杀真菌剂一起施用在土壤上时,数据保持不变。长时间的研究(1.5个月)对苯康唑的行为表明,与浸提相比,急剧减少,尽管这种杀真菌剂具有很高的亲脂性,但从根到茎的移位在整个实验过程中几乎保持不变。结论:该方法必须有助于更好地了解商业土壤施用植物化学物质的行为。它也可用于在满足环境要求的策略范围内筛选新的异种生物。

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