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Arsenic Shoot-Grain Relationships in Field Grown Rice Cultivars

机译:田间水稻品种中砷与谷粒的关系

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摘要

Arsenic (As) accumulation in rice grains is a risk to human health. The mechanism of transfer of As from the shoot into the grain during grain filling is unknown at present. In this study As speciation in the shoot and grains at maturity were examined, and the relationships between phosphorus (P) and As, and silicon (Si) and As were established in a wide range of cultivars grown in As contaminated field trials in Bangladesh and China. No correlations were observed between shoot and grain speciation, with the inorganic form comprising 93.0-97.0% of As in the shoot and 63.0-83.7% in the grains. The percentage of dimethylarsinic acid (DMA) was between 1.4 and 6.6% in the shoot and 14.6 and 37.0% in the grains; however, the concentrations were comparable, ranging from 0.07 to 0.26 mg kg~(-1) in the shoots and 0.03 to 0.25 mg kg~(-1) in the grains. A positive correlation was observed between shoot As and shoot Si, however, no correlation was observed between shoot Si and grain As. A significant negative correlation was observed between shoot P and grain As concentrations. These results suggest that the translocation of As into the grain from the shoots is potentially using P rather than Si transport mechanisms. The findings also indicate thatinorganic As and DMA translocation to the grain differ considerably.
机译:稻米中砷的积累对人体健康构成威胁。目前尚不清楚籽粒灌浆过程中砷从新梢转移到籽粒的机理。在这项研究中,研究了成熟的芽和籽粒中的砷形态,并在孟加拉国和孟加拉国被砷污染的田间试验中种植的广泛品种中建立了磷(P)和砷,硅(Si)和砷之间的关系。中国。在枝条和籽粒形态之间未观察到相关性,其中无机形式的枝条中As含量为93.0-97.0%,谷物中含量为63.0-83.7%。茎中二甲基砷酸(DMA)的百分比在1.4%至6.6%之间,谷物中的百分比在14.6%至37.0%之间;然而,其浓度相当,在芽中为0.07至0.26 mg kg〜(-1),在籽粒中为0.03至0.25 mg kg〜(-1)。枝条As和枝条Si之间观察到正相关,然而,枝条Si和晶粒As之间没有观察到相关。枝条磷和砷的含量之间存在显着的负相关。这些结果表明,从芽中向籽粒中As的转运可能是利用P而不是Si转运机制。研究结果还表明,无机砷和DMA易位到谷物中的差异很大。

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  • 来源
    《Environmental Science & Technology》 |2010年第4期|1471-1477|共7页
  • 作者单位

    Institute of Biological and Environmental Sciences, University of Aberdeen, Cruickshank Building, St Machar Drive, Aberdeen, AB24 3UU, U.K.;

    Department of Soil Science, Bangladesh Agricultural University, Mymensingh-2202, Bangladesh;

    Research Center for Eco-environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China;

    Research Center for Eco-environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China;

    Institute of Biological and Environmental Sciences, University of Aberdeen, Cruickshank Building, St Machar Drive, Aberdeen, AB24 3UU, U.K.;

    Institute of Biological and Environmental Sciences, University of Aberdeen, Cruickshank Building, St Machar Drive, Aberdeen, AB24 3UU, U.K.;

    Soil Science Department, Rothamsted Research, Harpenden, Hertfordshire AL5 2JQ, U.K.;

    Soil Science Department, Rothamsted Research, Harpenden, Hertfordshire AL5 2JQ, U.K.;

    College of Physical Sciences, University of Aberdeen, Meston Walk, Aberdeen, AB24 3UE, U.K.;

    Institute of Biological and Environmental Sciences, University of Aberdeen, Cruickshank Building, St Machar Drive, Aberdeen, AB24 3UU, U.K.;

    Institute of Biological and Environmental Sciences, University of Aberdeen, Cruickshank Building, St Machar Drive, Aberdeen, AB24 3UU, U.K.;

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