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Prediction of wheat response to an application of phosphorus under field conditions using diffusive gradients in thin-films (DGT) and extraction methods

机译:使用薄膜中的扩散梯度和提取方法预测田间条件下小麦对磷素的响应

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The ability of the Diffusive Gradients in Thin Films (DGT) technique and two other established testing methods (Colwell, resin) to predict wheat responsiveness to applied P from 35 field trials across southern Australia was investigated. Regression analysis of relative early dry matter production and grain yield responses demonstrated that the DGT method predicted plant responsiveness to applied P more accurately than Colwell P and resin P at sites where maximum yields were reached with P rates used (20 out of 35). The measured concentration in soils at the DGT surface, CDGT, explained 74% of the variation in response for both early dry matter and grain, compared to 7% for early dry matter and 35% for grain using the resin P method. No significant relationships could be obtained for Colwell P although modifying the Colwell test data using Phosphorus Buffering Index resulted in a correct response prediction for 11 of the 20 field sites compared to 18 for DGT and 14 for resin P. These observations suggest that the DGT technique can assess plant available P in soils with significantly greater accuracy than traditional soil P testing methods. The critical P threshold, expressed as CDGT, was 255 μg L−1 for early dry matter and 66 μg L−1 for grain.
机译:在澳大利亚南部的35个田间试验中,研究了薄膜扩散梯度(DGT)技术和其他两种已建立的测试方法(Colwell,树脂)预测小麦对施用磷的反应能力的能力。相对早期干物质产量和谷物产量响应的回归分析表明,DGT方法预测植物对施用的磷的响应能力比Colwell P和树脂P更准确地预测了使用磷肥达到最高产量的地点(35个中的20个)。在DGT表层土壤C DGT 上测得的浓度解释了早期干物质和谷物的响应变化的74%,相比之下,早期干物质和谷物的响应变化为7%,而谷物为35%树脂P法。尽管使用磷缓冲指数修改了Colwell测试数据可对20个现场位点中的11个进行正确的响应预测,而DGT为18个,树脂P为14个,但对Colwell P并没有获得显着的关系。这些发现表明DGT技术可以比传统的土壤P测试方法准确得多地评估土壤中的植物有效P。临界P阈值表示为C DGT ,对于早期干物质为255μgL -1 ,对于谷物为66μgL -1

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