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土壤有机磷的复杂形式-土壤磷的主要组成部分。

Complex Forms of Soil Organic Phosphorus-A Major Component of Soil Phosphorus.

机构信息

Soils Group, School of Agriculture, Food and Wine and Waite Research Institute, The University of Adelaide , Urrbrae, 5064, South Australia, Australia.

School of Environmental and Rural Science, University of New England , Armidale, 2350, New South Wales, Australia.

出版信息

Environ Sci Technol. 2015 Nov 17;49(22):13238-45. doi: 10.1021/acs.est.5b02948. Epub 2015 Oct 30.

Abstract

Phosphorus (P) is an essential element for life, an innate constituent of soil organic matter, and a major anthropogenic input to terrestrial ecosystems. The supply of P to living organisms is strongly dependent on the dynamics of soil organic P. However, fluxes of P through soil organic matter remain unclear because only a minority (typically <30%) of soil organic P has been identified as recognizable biomolecules of low molecular weight (e.g., inositol hexakisphosphates). Here, we use (31)P nuclear magnetic resonance spectroscopy to determine the speciation of organic P in soil extracts fractionated into two molecular weight ranges. Speciation of organic P in the high molecular weight fraction (>10 kDa) was markedly different to that of the low molecular weight fraction (<10 kDa). The former was dominated by a broad peak, which is consistent with P bound by phosphomonoester linkages of supra-/macro-molecular structures, whereas the latter contained all of the sharp peaks that were present in unfractionated extracts, along with some broad signal. Overall, phosphomonoesters in supra-/macro-molecular structures were found to account for the majority (61% to 73%) of soil organic P across the five diverse soils. These soil phosphomonoesters will need to be integrated within current models of the inorganic-organic P cycle of soil-plant terrestrial ecosystems.

摘要

磷(P)是生命必需的元素,是土壤有机质的固有组成部分,也是陆地生态系统中主要的人为输入物。生物体对 P 的供应强烈依赖于土壤有机 P 的动态变化。然而,由于只有少数(通常<30%)土壤有机 P 被鉴定为低分子量的可识别生物分子(例如肌醇六磷酸),因此 P 通过土壤有机质的通量仍不清楚。在这里,我们使用(31)P 核磁共振波谱法来确定土壤提取物中两种分子量范围的有机 P 的形态。高分子量(>10 kDa)部分的有机 P 形态与低分子量(<10 kDa)部分明显不同。前者主要由一个宽峰组成,这与通过超/大分子结构的磷酸单酯键结合的 P 一致,而后者则包含了未分级提取物中存在的所有尖锐峰,以及一些宽信号。总体而言,在五种不同土壤中,超/大分子结构中的磷酸单酯被发现占土壤有机 P 的大部分(61%至 73%)。这些土壤磷酸单酯需要整合到当前土壤-植物陆地生态系统中无机-有机 P 循环的模型中。

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