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首页> 外文期刊>Plant and Soil >Productivity differences between dandelion (Taraxacum officinale; Asteraceae) clones from pollution impacted versus non-impacted soils
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Productivity differences between dandelion (Taraxacum officinale; Asteraceae) clones from pollution impacted versus non-impacted soils

机译:受污染影响的土壤与未受污染的土壤之间的蒲公英克隆(蒲公英;菊科)之间的生产力差异

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摘要

Common dandelions (Taraxacum officinale Weber, sensu lato; Asteraceae) introduced to North America form an assemblage of asexual (agamospermous), clonal lineages derived from Eurasian mixed sexual and asexual populations. We investigated whether selection for more pollution tolerant clonal lineages occurs at polluted sites and selection for more pollution intolerant lineages occurs at unpolluted sites. We tested the above hypothesis by performing reciprocal greenhouse productivity experiments in which unique dandelion clones (12 clones, identified by DNA fingerprinting, from each site type) sampled from two unpolluted and two polluted (moderately enhanced Cu, Pb and Zn soil concentrations) sites were grown pairwise in both unpolluted (nutrient solution only) and polluted (nutrient solution + Cu, Pb and Zn) media (n = 48 paired tests for each media type). Dandelion clones from polluted sites produced fewer and smaller leaves, shorter roots and smaller root diameters, reduced shoot and root dry weights, and reduced total biomass compared to clones from unpolluted sites when clones were grown in unpolluted-media (P ≤ 0.05). In contrast, clones taken from unpolluted sites were shown to produce significantly fewer and shorter leaves, shorter roots and smaller root diameters, reduced shoot and root dry weights, reduced total biomass, a reduced shoot : root biomass ratio, and have much lower survival compared to clones from polluted sites when both were grown in polluted-media (P ≤ 0.05). These results reveal that there was increased selection against unpolluted-site clonal lineages in polluted-media and against polluted-site clonal lineages in unpolluted-media. Across all treatments, clones from unpolluted sites growing in unpolluted-media had the highest proximate measures of fitness. Overall, these findings provide insight into the relationships among anthropogenic environmental contamination and the consequent effects of selective forces acting on dandelion clones and their population genetic architecture.
机译:引入北美的常见蒲公英(蒲公英,韦伯,菊科;菊科)形成了无性(无性生殖),欧亚混血和无性混合种群的无性系。我们调查了是否在污染场所选择了更多的耐污染的克隆世系,而在未污染场所选择了更多的耐污染的克隆世系。我们通过进行相互的温室生产力实验来检验上述假设,在该实验中,分别从两个未污染的和两个污染的(铜,铅和锌的土壤浓度有所提高)的地点采样了唯一的蒲公英克隆(通过每种部位类型通过DNA指纹识别的12个克隆)在无污染(仅营养液)和污染(营养液+ Cu,Pb和Zn)培养基中成对生长(每种培养基类型n = 48个配对测试)。当在无污染的培养基中生长无污染的克隆时,与无污染的克隆相比,受污染的蒲公英克隆产生的叶片越来越少,根短,根直径更小,茎和根的干重减少,总生物量减少(P≤0.05)。相比之下,从无污染的地方采摘的克隆显示出叶片明显减少和缩短,根部较短,根部直径更小,枝条和根干重减少,总生物量减少,枝条:根生物量比降低,并且存活率大大降低当它们都在污染培养基中生长时,从污染位点克隆(P≤0.05)。这些结果表明,在污染培养基中对未污染部位克隆谱系的选择增加了,在未污染培养基中对未污染部位克隆谱系的选择增加了。在所有处理中,在无污染培养基中生长的无污染部位的克隆具有最高的适应性指标。总体而言,这些发现提供了对人为环境污染与选择性作用力对蒲公英克隆及其种群遗传结构的影响之间的关系的见解。

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