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Assessment of phosphorus bioavailability in cultivated Andisols from a long-term fertilization field experiment using chemical extractions and soil enzyme activities

机译:使用化学提取和土壤酶活性的长期施肥田间试验评估耕作的芒硝中磷的生物利用度

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Various chemical extraction methods have been used to evaluate soil phosphorus (P) availability in different ways, and therefore inconsistent results are often obtained. This study examined the usefulness of the resource allocation model for extracellular enzymes for evaluating P availability in soils from a more biological perspective. Potential P availability was evaluated using the Truog and Bray-2 tests, the Hedley sequential extraction procedure, and enzyme activity assessments in cultivated Andisols from a 70-year-old fertilization experiment. Both the ratio of acid phosphatase to beta-D-glucosidase activities and the ratio of alkaline phosphatase to beta-D-glucosidase activities showed significant negative correlations with potentially available inorganic P, suggesting that microorganisms preferentially expended resources in the form of phosphatase production rather than beta-D-glucosidase production to acquire P. Additionally, crop P content had a significant negative relationship to the ratio of alkaline phosphatase to beta-D-glucosidase activities. These results suggest that the resource allocation model for extracellular enzymes is useful for evaluating P availability in Andisols.
机译:已使用各种化学提取方法以不同方式评估土壤磷(P)的有效性,因此经常会获得不一致的结果。这项研究从更生物学的角度研究了细胞外酶资源分配模型对评估土壤中磷有效性的有效性。使用Truog和Bray-2试验,Hedley顺序提取程序以及来自70年历史的受精实验的栽培Andisols中的酶活性评估,评估了潜在的P有效性。酸性磷酸酶与β-D-葡萄糖苷酶活性之比和碱性磷酸酶与β-D-葡萄糖苷酶活性之比均显示与潜在可用的无机P显着负相关,这表明微生物优先以磷酸酶生产而不是磷酸酶的形式消耗资源。通过生产β-D-葡萄糖苷酶来获得磷。此外,农作物的P含量与碱性磷酸酶与β-D-葡萄糖苷酶活性之比具有显着的负相关关系。这些结果表明,胞外酶的资源分配模型可用于评估Andisols中的P有效性。

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