State Key Laboratory of Resources and Environmental Information System, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing, 100101, China.
State Key Laboratory of Resources and Environmental Information System, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing, 100101, China; College of Resources and Environment, University of Chinese Academy of Sciences, Beijing, 100049, China.
Chemosphere. 2020 Jan;239:124622. doi: 10.1016/j.chemosphere.2019.124622. Epub 2019 Aug 24.
Phosphorus (P), despite being an essential nutrient element for plants growth in agricultural ecosystem, the low utilization rate of soil P and the environmental problems caused by soil P losses are serious. Therefore, scoping knowledge of the possible sources and utilization extent of soil P by microorganisms is very helpful for better understanding of promoting P utilization for sustainable agriculture. Oxygen isotope of phosphate technology is an effective tool to trace the sources of P. In this study, P contents and oxygen isotope composition of inorganic phosphate (δO) of different pools (HO-P, NaHCO-P, NaOH-P, and HCl-P) in typical agricultural soil from Northeast China and Central China were analyzed and quantified. The results showed that fertilizer and land use were important factors influencing the contents of HO-P and NaHCO-P and the soil TP contents from different types of soils were greatly affected by soil weathering degree. The δO of different P pools indicated that the difference in utilization extent of different P fractions by microorganisms and the δO values of different P fractions could be due to accumulation of multiple factors. The results will provide effective information for further study on sources and effective utilization of different P fractions in soil.
磷(P)尽管是农业生态系统中植物生长的必需营养元素,但土壤 P 的利用率低以及土壤 P 损失引起的环境问题仍然很严重。因此,了解微生物可能的土壤 P 来源和利用程度对于更好地理解促进可持续农业的 P 利用非常有帮助。磷酸盐的氧同位素技术是追踪 P 来源的有效工具。本研究分析和量化了来自中国东北和中部典型农业土壤中不同库(HO-P、NaHCO-P、NaOH-P 和 HCl-P)的无机磷酸盐(δO)的 P 含量和氧同位素组成。结果表明,肥料和土地利用是影响 HO-P 和 NaHCO-P 含量的重要因素,不同类型土壤的总磷(TP)含量受土壤风化程度的影响很大。不同 P 库的 δO 表明,微生物对不同 P 组分的利用程度存在差异,并且不同 P 组分的 δO 值可能是由于多种因素的积累所致。研究结果将为进一步研究土壤中不同 P 组分的来源和有效利用提供有效信息。