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首页> 外文期刊>Journal of Experimental Botany >Can zinc pollution promote adaptive evolution in plants? Insights from a one-generation selection experiment
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Can zinc pollution promote adaptive evolution in plants? Insights from a one-generation selection experiment

机译:锌污染是否会促进植物的适应性进化? 第一代选择实验的见解

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Human activities generate environmental stresses that can lead plant populations to become extinct. Population survival would require the evolution of adaptive responses that increase tolerance to these stresses. Thus, in pseudo-metallophyte species that have colonized anthropogenic metalliferous habitats, the evolution of increased metal tolerance is expected in metallicolous populations. However, the mechanisms by which metal tolerance evolves remain unclear. In this study, parent populations were created from non-metallicolous families of Noccaea caerulescens. They were cultivated for one generation in mesocosms and under various levels of zinc (Zn) contamination to assess whether Zn in soil represents a selective pressure. Individual plant fitness estimates were used to create descendant populations, which were cultivated in controlled conditions with moderate Zn contamination to test for adaptive evolution in functional traits. The number of families showing high fitness estimates in mesocosms was progressively reduced with increasing Zn levels in soil, suggesting increasing selection for metal tolerance. In the next generation, adaptive evolution was suggested for some physiological and ecological traits in descendants of the most exposed populations, together with a significant decrease of Zn hyperaccumulation. Our results confirm experimentally that Zn alone can be a significant evolutionary pressure promoting adaptive divergence among populations.
机译:人类活动产生环境压力,可以导致植物群落灭绝。人口生存将需要适应性反应的演变,从而增加对这些压力的耐受性。因此,在具有殖民化人体植物的假金属物种中,预期金属耐受性增加的含量增加。然而,金属耐受演变的机制仍然不清楚。在这项研究中,父母群体是从Noccaea Caerulescens的非金属色家族创建的。它们在中科科氏科学博客和各种水平的锌(Zn)污染下培养了它们,以评估Zn是否在土壤中代表一种选择性压力。单个植物健身估计用于产生后代群体,其在受控条件下培养,中度Zn污染,以测试功能性状的自适应演化。随着土壤中Zn水平的增加,显示Mesocosms中高适应性估计的家族数量逐渐减少,表明金属耐受的增加。在下一代,建议在最暴露群体的后代的一些生理和生态特征中提出了适应性的进化,以及Zn高累积的显着降低。我们的结果通过实验证实,单独的Zn可以是促进人群的适应性分歧的重要进化压力。

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