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首页> 外文期刊>European Journal of Agronomy >Glyphosate reduced seed and leaf concentrations of calcium, manganese, magnesium, and iron in non-glyphosate resistant soybean
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Glyphosate reduced seed and leaf concentrations of calcium, manganese, magnesium, and iron in non-glyphosate resistant soybean

机译:草甘膦降低了非草甘膦抗性大豆的种子和叶片中钙,锰,镁和铁的浓度

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Greenhouse experiments were conducted to study the effects of glyphosate drift on plant growth and concentrations of mineral nutrients in leaves and seeds of non-glyphosate resistant soybean plants (Glycine max, L.). Glyphosate was sprayed on plant shoots at increasing rates between 0.06 and 1.2% of the recommended application rate for weed control. In an experiment with 3-week-old plants, increasing application of glyphosate on shoots significantly reduced chlorophyll concentration of the young leaves and shoots dry weight, particularly the young parts of plants. Concentration of shikimate due to increasing glyphosate rates was nearly 2-fold for older leaves and 16-fold for younger leaves compared to the control plants without glyphosate spray. Among the mineral nutrients analyzed, the leaf concentrations of potassium (K), phosphorus (P), copper (Cu) and zinc (Zn) were not affected, or even increased significantly in case of P and Cu in young leaves by glyphosate, while the concentrations of calcium (Ca), manganese (Mn) and magnesium (Mg) were reduced, particularly in young leaves. In the case of Fe, leaf concentrations showed a tendency to be reduced by glyphosate. In the second experiment harvested at the grain maturation, glyphosate application did not reduce the seed concentrations of nitrogen (N), K, P, Zn and Cu. Even, at the highest application rate of glyphosate, seed concentrations of N, K, Zn and Cu were increased by glyphosate. By contrast, the seed concentrations of Ca, Mg, Fe and Mn were significantly reduced by glyphosate. These results suggested that glyphosate may interfere with uptake and retranslocation of Ca, Mg, Fe and Mn, most probably by binding and thus immobilizing them. The decreases in seed concentration of Fe, Mn, Ca and Mg by glyphosate are very specific, and may affect seed quality.
机译:进行了温室实验,以研究草甘膦漂移对非草甘膦抗性大豆植物叶片和种子中植物生长和矿质养分浓度的影响(Glycine max,L.)。草甘膦以防除杂草的推荐施药量的0.06%至1.2%之间的增幅喷洒在植物芽上。在一个三周大的植物的实验中,增加草甘膦在芽上的施用显着降低了幼叶的叶绿素浓度和茎干重量,特别是植物的幼叶。与不使用草甘膦喷雾剂的对照植物相比,由于草甘膦比率增加而导致的草iki酸盐浓度接近老叶子的2倍,而年轻叶子的16倍。在分析的矿质营养素中,草甘膦对幼叶中的P和Cu影响不大,钾,钾,磷,铜和锌的叶片浓度均受到影响,甚至显着增加,而钙(Ca),锰(Mn)和镁(Mg)的浓度降低,尤其是在幼叶中。在铁的情况下,草甘膦会使叶片浓度降低。在谷物成熟时收获的第二个实验中,施用草甘膦不会降低种子中氮,钾,磷,锌和铜的浓度。即使在最高的草甘膦施用量下,草甘膦也会增加N,K,Zn和Cu的种子浓度。相比之下,草甘膦显着降低了Ca,Mg,Fe和Mn的种子浓度。这些结果表明草甘膦可能会干扰钙,镁,铁和锰的吸收和再转运,最可能是通过结合并固定它们。草甘膦使Fe,Mn,Ca和Mg的种子浓度降低非常明确,并且可能影响种子质量。

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