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Localization and Chemical Speciation of Pb in Roots of Signal Grass (Brachiaria decumbens) and Rhodes Grass (Chloris gayana)

机译:信号草(Brachiaria decumbens)和罗得草(Chloris gayana)的根中Pb的定位和化学形态

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摘要

Lead (Pb) contamination of soils is of global importance but little is known regarding Pb uptake, localization, or the chemical forms in which Pb is found within plants, or indeed how some plants tolerate elevated Pb in the environment. Two grasses, signal grass (Brachiaria decumbens Stapf) (Pb-resistant) and Rhodes grass (Chloris gayana Kunth) (Pb-sensitive), were grown for 14 d in dilute nutrient solutions before examination of roots using transmission electron microscopy (TEM) to determine the distribution and speciation of Pb in situ. In both grasses, Pb was initially present primarily in the cytoplasm of rhizodermal and cortical cells before being sequestered within vacuoles as the highly insoluble (and presumably nontoxic) chloropyromorphite (Pb_5(PO_4)_3CI). In signal grass, Pb also accumulated within membranous structures (perhaps the Golgi apparatus), prior to apoplastic sequestration as chloropyromorphite. These findings suggest that the ability of signal grass to sequester insoluble Pb in the cell wall represents an additional and potentially important mechanism of Pb tolerance not possessed by the Pb-sensitive Rhodes grass.
机译:土壤中的铅(Pb)污染具有全球重要性,但对于铅的吸收,定位或在植物中发现Pb的化学形式,或者实际上某些植物如何耐受环境中的Pb知之甚少。两种草,稀有营养液中分别生长了信号草(Brachiaria decumbens Stapf)(抗铅)和罗兹草(Chloris gayana Kunth)(对铅敏感)14 d,然后用透射电子显微镜(TEM)检查了根。确定原位铅的分布和形态。在这两种草中,Pb最初主要存在于根皮和皮层细胞的细胞质中,然后以高度不溶(且可能是无毒的)亚氯焦晶石(Pb_5(PO_4)_3CI)的形式被隔离在液泡中。在信号草中,Pb还在质外体螯合中以氯焦亚辉石的形式积累在膜结构(也许是高尔基体)中。这些发现表明,信号草隔离细胞壁中不溶性Pb的能力代表了对Pb敏感的Rhodes草所不具备的Pb耐受性的另一种和潜在的重要机制。

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