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Screening Capsicum chinense fruits for heavy metals bioaccumulation

机译:筛选辣椒果实中重金属的生物积累

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Elevated concentrations of heavy metals in edible plants could expose consumers to excessive levels of potentially hazardous chemicals. Sixty-three accessions (genotypes) of Capsicum chinense Jacq, collected from 8 countries of origin were grown in a silty-loam soil under field conditions. At maturity, fruits were collected and analyzed for seven heavy metals (Cd, Cr, Ni, Pb, Zn, Cu, and Mo) concentrations. The main objectives of this investigation were: 1) to determine the concentrations of seven heavy metals in the soil and monitor their accumulation in mature fruits, 2) to categorize the pepper accessions as low or high heavy metal accumulators, and 3) to determine if heavy metal content of the pepper fruit was lower than the permitted limits. Concentrations and relative proportions of heavy metals in pepper fruits of C. chinense varied among accessions. Fruits of Plant Introduction (PI) 355820 accumulated significant concentrations of Cd (0.47 μ g g−1dry fruit). PI-260522 accumulated the highest concentration of Pb (2.12 μ g g−1 dry fruit) among the 63 accessions tested. This accession (PI-260522) contained about twice the Pb limit on a fresh weight basis. Among the 63 accessions analyzed, PI-238051 contained the highest levels of Ni (17.2 μ g g−1). We concluded that high accumulator genotypes may be useful for phytoremediation, while, low accumulator accessions might be appropriate selections for growing on Cd-, Pb-, or Ni-contaminated soils to prevent potential human exposure to heavy metals and health hazards through the food chain.
机译:食用植物中重金属的浓度升高可能会使消费者接触过量的潜在危险化学品。在田间条件下,在粉壤土上种植了从8个原产国收集的63种辣椒(基因型)辣椒。成熟时,收集水果并分析七种重金属(Cd,Cr,Ni,Pb,Zn,Cu和Mo)的浓度。这项调查的主要目的是:1)确定土壤中七种重金属的浓度并监测它们在成熟果实中的积累,2)将辣椒种分为低或高重金属积累者,以及3)确定是否胡椒果实中的重金属含量低于允许的限值。香椿辣椒果实中重金属的浓度和相对比例随种质而变化。植物导入(PI)355820的果实积累了高浓度的Cd(0.47 µg g ˆ1 干果)。 PI-260522在测试的63个种质中积累了最高的Pb浓度(2.12μg g -1>干果)。以新鲜重量计,该登录名(PI-260522)含铅量约为铅的两倍。在分析的63个种质中,PI-238051包含最高水平的Ni(17.2μg g ˆ1 )。我们的结论是,高蓄积基因型可能对植物修复有用,而低蓄积种质可能是在受Cd,Pb或Ni污染的土壤上生长的合适选择,以防止人类通过食物链暴露于重金属和健康危害。

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