首页> 美国卫生研究院文献>Springer Open Choice >Leaf anatomy of two reciprocally non-monophyletic mountain plants (Heliosperma spp.): does heritable adaptation to divergent growing sites accompany the onset of speciation?
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Leaf anatomy of two reciprocally non-monophyletic mountain plants (Heliosperma spp.): does heritable adaptation to divergent growing sites accompany the onset of speciation?

机译:两种互不相系的高山植物的叶片解剖学(Heliosperma spp。):物种形成是否伴随着对不同生长点的遗传适应?

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摘要

Evolution is driven by natural selection, favouring individuals adapted in phenotypic traits to the environmental conditions at their growing site. To shed light on ecological and (epi-) genetically based differentiation between Heliosperma pusillum and Heliosperma veselskyi, two reciprocally non-monophyletic, but morphologically and ecologically divergent species from the south-eastern Alps, we studied various leaf anatomical traits and investigated chloroplast ultrastructure in leaves of the two species grown either in their natural habitat or in a common garden. The alpine H. pusillum occurs in open, wet rock habitats, whereas its close relative H. veselskyi is restricted to dry, shady habitats below overhanging rocks in the montane belt. H. pusillum exhibited higher thickness of leaves and palisade layers as adjustments and/or adaptations to higher irradiance and a higher stomatal area index reflecting better water availability. Traits were adjusted plastically, but differed between species grown in a common garden, suggesting that the differentiation between the two species is not solely based on phenotypic plasticity but also has a genetic basis. Our study thus supports the hypothesis that differentiation between the highly interfertile species is likely driven by natural selection.
机译:进化是由自然选择驱动的,有利于适应表型性状的个体适应其生长地点的环境条件。为了揭示Heliosperma pusillum和Heliosperma veselskyi之间的生态和(基于)遗传差异,Heliosperma veselskyi是两个互不相生的,但形态和生态上不同的物种,来自东南阿尔卑斯山,我们研究了各种叶片解剖特征并研究了叶绿体超微结构这两种物种的叶子都在自然栖息地或公共花园中生长。高山H. pusillum发生在开放的湿岩石生境中,而其近缘的H. veselskyi仅限于山地带悬垂岩石下方的干燥阴凉的生境。由于对较高的辐照度和较高的气孔面积指数进行了调整和/或适应,因此,P。H. pusillum的叶片和栅栏层的厚度较高,反映出更好的水利用度。对性状进行了可塑性调整,但在同一花园中种植的物种之间存在差异,这表明两种物种之间的分化不仅是基于表型可塑性,而且具有遗传基础。因此,我们的研究支持以下假设:高干扰物种之间的分化可能是由自然选择驱动的。

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