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How different are the arsenic fractions inhibit alkaline phosphatases on aggregates scale?

机译:砷级分抑制碱性磷酸酶对聚集秤的不同程度如何?

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摘要

Arsenate [As(Ⅴ)], in general, is associated with various aggregates and exists as different species in soil, which in turn influences its toxicity and potential contamination. Previous studies have demonstrated the usefulness of alkaline phosphatases (ALP) to evaluate As(Ⅴ) pollution. However, the effect of different arsenic fractions on ALP among soil aggregates is still unclear. Thus, the distribution of As fractions and ALP kinetics was determined in four-month As-aged paddy soil aggregates. Results revealed the two major fractions of As in aggregates were humic-bound and Fe and Mn oxides-bound [both around 30% under 800 mg kg~(-1) of As(Ⅴ)]. Besides, it was observed that available soil phosphorus could positively affect the relative content of water-soluble, exchangeable and carbonate-bound arsenic. In the kinetics experiment, both the Michaelis-Menten constant (K_m) and maximum reaction velocity (V_(max)) of ALP increased with increasing As(Ⅴ) concentration under four months ageing for each size aggregate. Multiple linear stepwise regression analysis between k_(cat) and the relative content of arsenic fraction indicated that carbonate-bound arsenic is the main fraction that inhibited the k_(cat) for macroaggre-gates (> 0.25 mm size). For soil aggregates of 0.1 -0.25 mm size, k_(cat) increased with an increase in arsenic residual fraction. As for aggregates <0.1 mm size, Fe and Mn oxide-bound fraction is the main fraction that inhibited the k_(cat). Overall, this study suggests carbonate-bound and Fe and Mn oxide-bound arsenic fractions could decrease the ALP activities via a decrease in the catalytic efficiency in macroaggregates and <0.1 mm size aggregates, respectively. Besides, available phosphorus should be considered as the main factor when assessing As biotoxicity and mobility.
机译:通常,砷酸[AS(ⅴ)]与各种聚集体相关,并存在于土壤中的不同物种,这反过来影响其毒性和潜在的污染。以前的研究表明,碱性磷酸酶(ALP)评价(Ⅵ)污染的有用性。然而,不同砷馏分对土壤聚集体之间的ALP的影响仍然不清楚。因此,在四个月的稻田骨料中测定了作为级分和ALP动力学的分布。结果表明,在聚集体中的两个主要部分是腐殖结合的和Fe和Mn氧化物 - 结合[均在800mg kg〜(-1)下约为30%,如(ⅴ)]。此外,观察到可用的土壤磷可以积极地影响水溶性,可更换和碳酸盐结合的砷的相对含量。在动力学实验中,Alp的迈克利斯 - Menten常数(K_m)和最大反应速度(v_(max))随着每尺寸粒度的四个月浓度而增加,随着(Ⅵ)浓度而增加。 k_(猫)和砷馏分的相对含量之间的多元线性逐步回归分析表明碳酸酯结合的砷是抑制大型胶质栅(> 0.25mm尺寸)的K_(猫)的主要级分。对于0.1-0.25mm尺寸的土壤聚集体,K_(猫)随着砷残留部分的增加而增加。至于聚集体<0.1mm尺寸,Fe和Mn氧化物结合的级分是抑制K_(猫)的主要级分。总体而言,该研究表明碳酸盐结合,Fe和Mn氧化物结合的砷馏分可以通过分别在大草种和<0.1mm尺寸的聚集体中的催化效率降低来降低AlP活性。此外,当评估为生物毒性和移动性时,可用的磷应被视为主要因素。

著录项

  • 来源
    《Science of the total environment》 |2021年第20期|145728.1-145728.8|共8页
  • 作者单位

    College of Natural Resources and Environment Northwest A&F University Key Laboratory of Plant Nutrition and Agro-environment in Northwest China Ministry of Agriculture Yangling 712100 Shaanxi China Insititute of Loess Plateau Shanxi University Taiyuan 030006 Shanxi China;

    College of Natural Resources and Environment Northwest A&F University Key Laboratory of Plant Nutrition and Agro-environment in Northwest China Ministry of Agriculture Yangling 712100 Shaanxi China;

    College of Natural Resources and Environment Northwest A&F University Key Laboratory of Plant Nutrition and Agro-environment in Northwest China Ministry of Agriculture Yangling 712100 Shaanxi China;

    College of Natural Resources and Environment Northwest A&F University Key Laboratory of Plant Nutrition and Agro-environment in Northwest China Ministry of Agriculture Yangling 712100 Shaanxi China;

    College of Natural Resources and Environment Northwest A&F University Key Laboratory of Plant Nutrition and Agro-environment in Northwest China Ministry of Agriculture Yangling 712100 Shaanxi China;

    Global Centre for Environmental Remediation Faculty of Science University of Newcastle Callaghan NSW 2308 Australia;

    College of Natural Resources and Environment Northwest A&F University Key Laboratory of Plant Nutrition and Agro-environment in Northwest China Ministry of Agriculture Yangling 712100 Shaanxi China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Soil aggregates; Arsenic fractions; Alkaline phosphatase; Kinetics;

    机译:土壤聚集体;砷馏分;碱性磷酸酶;动力学;

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