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Effects of Cu Pollution on the Expansion of an Amphibious Clonal Herb in Aquatic-Terrestrial Ecotones

机译:铜污染对水陆陆生过渡带两栖克隆草本植物扩展的影响

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摘要

Physiological integration can enhance the performance of clonal plants in aquatic and terrestrial heterogeneous habitats and associated ecotones. Similar to nutrients, pollutants may be transported among connected ramets via physiological integration. Few studies have examined the expansion of amphibious clonal plants from terrestrial to aquatic environments, particularly when the local water supply is polluted with heavy metals. A greenhouse experiment was conducted using the amphibious plant Alternanthera philoxeroides to determine whether Cu can spread among clonal plants and examine the corresponding effects of this pollution on the expansion of clonal plants in aquatic-terrestrial ecotones. Ramets from the same clonal fragments were rooted in unpolluted soil and polluted water at five different levels. The responses of the ramets in terrestrial and aquatic habitats were quantified via traits associated with growth, morphology and Cu accumulation. The results indicated that ramets in soil and water significantly differed in nearly all of these traits. The expansion of populations from terrestrial to polluted aquatic habitats was facilitated by stem elongation rather than new ramet production. The accumulated Cu in polluted ramets can be horizontally transported to other ramets in soil via connected stolons. In terms of clonal growth patterns, variations in Cu pollution intensity were negatively correlated with variations in the morphological and growth traits of ramets in polluted aquatic habitats and unpolluted soil. We concluded that Cu ions are distributed among the clones and accumulated in different ramet tissues in heterogeneous habitats. Therefore, we suggest that Cu pollution of aquatic-terrestrial ecotones, especially at high levels, can affect the growth and expansion of the whole clones because Cu ions are shared between integrated ramets.
机译:生理整合可以增强水生和陆地异质生境及相关生态交错带中无性系植物的性能。类似于养分,污染物可能会通过生理整合在相连的分株之间运输。很少有研究检查两栖克隆植物从陆地环境向水生环境的扩展,特别是当当地供水受到重金属污染时。温室实验使用两栖植物费城线虫(Alternanthera philoxeroides)进行,以确定铜是否可以在无性系植物中传播,并研究这种污染对水生陆地生态交错带中无性系植物扩展的相应影响。来自同一克隆片段的分株以五个不同的水平植于未污染的土壤和污水中。通过与生长,形态和铜积累相关的特征对分株在陆生和水生生境中的反应进行定量。结果表明,几乎所有这些性状在土壤和水中的分株显着不同。茎伸长而不是新的分株生产促进了从陆地到污染水生生境的种群扩展。污染的分株中积累的Cu可以通过相连的茎水平转移到土壤中的其他分株中。就克隆生长方式而言,铜污染强度的变化与污染水生环境和未污染土壤中分株的形态和生长特性的变化呈负相关。我们得出的结论是,铜离子分布在各个克隆之间,并积累在异质生境的不同分株组织中。因此,我们建议水陆陆上过渡带的铜污染,尤其是高水平污染,可能会影响整个克隆的生长和扩展,因为整合分株之间共享铜离子。

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  • 期刊名称 other
  • 作者

    Liang Xu; Zhen-Feng Zhou;

  • 作者单位
  • 年(卷),期 -1(11),10
  • 年度 -1
  • 页码 e0164361
  • 总页数 16
  • 原文格式 PDF
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