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The ability of the DGT soil phosphorus test to predict pasture response in Australian pasture soils - a preliminary assessment

机译:DGT土壤磷测试预测澳大利亚牧场土壤中牧场响应的能力-初步评估

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Diffusive gradients in thin-films (DGT) technology provides an alternative assessment of available phosphorus (P) for a range of crops, suggesting a preliminary examination of the performance of the new DGT-P test, compared to existing bicarbonate extractable Olsen and Colwell P tests, for pastures is justified. This study utilized historic data from the Australian National Reactive Phosphate Rock (NRPR) study (1992-1994) that included 25 experimental sites representing a wide range of soil types and climates used for pasture production. Stored (similar to 19yr) soil samples were analysed for DGT-P, Olsen P and a single point P buffering index (PBI) and re-analysed for Colwell P. Results showed the traditional bicarbonate extractable Colwell (r(2)=0.45, P0.001) and Olsen P (r(2)=0.27, P0.001) methods predicted relative pasture P response more accurately, compared to the novel DGT-P test (r(2)=0.09, P=0.03) when all 3yr of data were examined. We hypothesize that the harsher bicarbonate extraction used for the Olsen and Colwell methods more accurately reflects the ability of perennial pasture roots to access less labile forms of P, in contrast to the DGT-P test, which does not change the soil pH or dilute the soil and appears unable to fully account for a plants ability to solubilize P. Further studies are needed to compare the capacity of DGT-P to measure P availability in perennial pasture systems and to better understand the soil chemical differences between pasture and cropping systems.
机译:薄膜中的扩散梯度(DGT)技术提供了一系列作物的可用磷(P)的替代评估,建议与现有的碳酸氢盐可萃取的Olsen和Colwell P相比,对新DGT-P试验的性能进行初步检查。测试,对于牧场是合理的。这项研究利用了澳大利亚国家活性磷酸盐岩(NRPR)研究(1992-1994年)的历史数据,其中包括25个实验点,这些实验点代表了用于牧场生产的多种土壤类型和气候。分析了存储的(类似于19年)土壤样品的DGT-P,Olsen P和单点P缓冲指数(PBI),并重新分析了ColwellP。结果表明,传统的碳酸氢盐可提取Colwell(r(2)= 0.45,与新颖的DGT-P测试(r(2)= 0.09,P = 0.03)相比,P <0.001)和Olsen P(r(2)= 0.27,P <0.001)方法更准确地预测了相对牧场P响应。检查了3年的数据。我们假设,与DGT-P试验相比,用于Olsen和Colwell方法的更苛刻的碳酸氢盐萃取更准确地反映了多年生牧草根获得较不稳定形式P的能力,该试验不会改变土壤pH或稀释土壤pH。土壤,似乎无法完全说明植物溶解磷的能力。需要进行进一步的研究,以比较DGT-P测定多年生牧场系统中磷有效性的能力,并更好地了解牧场和耕作系统之间的土壤化学差异。

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