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首页> 外文期刊>Ecological indicators >Temporal changes in accumulation of trace metals in vegetative and generative parts of Xanthoria parietina lichen thalli and their implications for biomonitoring studies
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Temporal changes in accumulation of trace metals in vegetative and generative parts of Xanthoria parietina lichen thalli and their implications for biomonitoring studies

机译:黄衣原体的营养和生殖部位微量金属积累的时间变化及其对生物监测的影响

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摘要

Certain lichens are widely used in air pollution biomonitoring because the contents of various elements in their thalli accurately reflect the chemical composition of the air.Temporal changes in selected concentrations of trace metals in vegetative and generative parts ofXanthoria parietinathalli exposed to urban-related pollution were analysed and the relationship between anatomical organisation and element accumulation identified. The lichen material included thalli relocated to an urban area of Cracow (southern Poland) along with their host trees, which had previously been cultivated at a site characterised by a lower level of air pollution. The thalli were sampled immediately and 1, 3, 6, and 12 months after planting trees. Concentrations of Zn, Pb, Cd, Cu, Ni, and Cr, as measured by means of flame atomic absorption spectrometry (FAAS), and various anatomical characteristics were determined in vegetative thalli and the corresponding apothecia. Accumulation of Pb over time demonstrated a pronounced upward trend; calculated exposed-to-control (EC) ratios indicate ‘severe accumulation’ of this element. Diverse levels of accumulation in different parts of thalli – higher, in the cases of Pb, Cd, Cu, Ni, Cr, and lower, in the case of Zn, in vegetative parts compared to apothecia – were observed. Thus sampling uniformity is highly desirable in air biomonitoring studies, along with a determination of which part of the thallus is to be designated for elemental analysis. The results also showed that certain anatomical characteristics are correlated with concentrations of metal elements in the thallus.
机译:由于地衣中各种元素的含量准确反映了空气的化学成分,因此某些地衣被广泛用于空气污染生物监测。以及解剖组织和元素积累之间的关系。地衣材料包括塔利及其寄主树,其搬迁到克拉科夫(波兰南部)市区,寄主树以前曾在空气污染程度较低的地方种植过。种植树木后立即以及分别在1、3、6和12个月时对thalli进行采样。通过火焰原子吸收光谱法(FAAS)测量的Zn,Pb,Cd,Cu,Ni和Cr的浓度,以及植物性拟南芥和相应的角质中的各种解剖特征。随着时间的推移,铅的积累显示出明显的上升趋势。计算得出的暴露与控制(EC)比率表明该元素“严重积累”。与紫杉醇相比,观察到不同部位的塔利各部位的积累水平不同(Pb,Cd,Cu,Ni,Cr较高,而Zn则较低)。因此,在空气生物监测研究中,非常需要采样均匀性,同时还要确定将all的哪一部分指定用于元素分析。结果还表明,某些解剖学特征与the中金属元素的浓度有关。

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