Effect of Compositionally Different Substrates on Elemental Properties of Bay Bolete Mushrooms: Case Study of 34 Essential and Non-essential Elements from Six Areas Affected Differently by Industrial Pollution.

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-10-31 DOI:10.1007/s12011-024-04429-5
Alexandre V Andronikov, Irina E Andronikova, Ondrej Sebek, Eva Martinkova, Marketa Stepanova, Oksana Perehon
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Abstract

We studied concentrations of 34 essential and non-essential elements in samples of edible Bay Bolete (Imleria badia) mushrooms added by samples of the growing substrate and bioavailable fraction. The samples were collected from six forested sites affected differently by industrial pollution and underlain by compositionally contrasting bedrock: granite, amphibolite, and peridotite. In all cases, mushrooms behaved as a bioconcentrating system for elements such as Ag, K, P, Rb, S, and Se (BCF > 1) being a bioexcluding system for the rest of the elements analyzed (BCF < 1). Most analyzed elements displayed moderate to high within-mushroom mobility being accumulated preferably in the apical parts of the mushroom's fruiting body (TF > 1). The highest mobility was demonstrated by Cd and Cu. Sodium was the only element with significantly low mobility (TF < 1), and it accumulated preferably in the stipe. Imleria badia seems to be sensitive to the accumulation of elements such as As, Cd, and Pb from the atmospheric deposits. Specific geochemistry of the growing substrate was reflected to different extend in the accumulation of elements such as Ag, Cu, Rb, S, Al, Ca, Fe, Ba, and Na in the mushroom's fruiting bodies.

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不同成分基质对海湾牛肝菌元素特性的影响:来自受工业污染影响不同的六个地区的 34 种必需元素和非必需元素的案例研究。
我们研究了可食用海湾牛肝菌(Imleria badia)蘑菇样品中 34 种必需元素和非必需元素的浓度,并加入了生长基质和生物可利用部分的样品。样本采集自六个受工业污染影响不同的森林地区,其基岩成分对比强烈:花岗岩、闪长岩和橄榄岩。在所有情况下,蘑菇对银、钾、磷、铷、硒和硒等元素(生物浓缩系数大于 1)具有生物富集作用,而对其他分析元素(生物浓缩系数为 1)则具有生物排斥作用。镉和铜的迁移率最高。钠是唯一迁移率明显偏低的元素(TF
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CiteScore
7.20
自引率
4.30%
发文量
567
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