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Assessing the tolerance of the terrestrial moss Pseudosderopodium purum to high levels of atmospheric heavy metals: A reciprocal transplant study

机译:评估陆地苔藓Purudosderopodium purum对高浓度大气重金属的耐受性:互惠移植研究

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We measured the concentrations of Cd, Cu, Hg, Pb and Zn in samples of the terrestrial moss Pseudosderopodium purum reciprocally transplanted between an unpolluted and two polluted sampling sites. At the beginning of the experiment, the concentrations of all these elements differed significantly between mosses from the unpolluted site and mosses from the polluted sites. In general, the concentrations of the heavy metals in mosses from both polluted sites transplanted to the unpolluted site decreased until they reached the same levels as in autotransplants at this site (after 480-840 days). However, the concentrations of all heavy metals in mosses transplanted from the unpolluted site to both polluted sites increased to higher levels than in the autotransplants (except for Cu, Hg and Pb at one of the sampling sites). These results led us to conclude that mosses that have been continuously exposed to high atmospheric deposition of heavy metals undergo an adaptive response (probably genotypic) to such conditions. We therefore recommend active rather than passive biomonitoring of air quality in industrial environments because atmospheric deposition could be underestimated, and also recommend further investigation into the mechanisms involved in this response.
机译:我们测量了在未污染的采样点和两个污染的采样点之间相互移植的陆地藓类Pseudosderopodium purum样品中镉,铜,汞,铅和锌的浓度。在实验开始时,所有这些元素的浓度在未污染部位的苔藓和污染部位的苔藓之间都存在显着差异。通常,从两个污染部位移植到未污染部位的苔藓中重金属的浓度一直下降,直到它们达到与该部位自体移植相同的水平(480-840天后)。但是,从无污染部位移植到两个污染部位的苔藓中所有重金属的浓度都比自体移植物高(除了其中一个取样部位的Cu,Hg和Pb以外)。这些结果使我们得出结论,一直暴露于高浓度重金属的大气沉积中的苔藓对这种情况会发生适应性响应(可能是基因型)。因此,我们建议对工业环境中的空气质量进行主动而不是被动的生物监测,因为可能会低估大气中的沉积物,并且还建议进一步研究这种反应所涉及的机制。

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