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Ecotypes or phenotypic plasticity—The aquatic and terrestrial forms of Helosciadium repens (Apiaceae)

机译:生态型或表型可塑性 - Helosciatium Repens(Apiaceae)的水生和陆地形式

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摘要

Abstract Morphological and ecological differences of two forms of Helosciadium repens are known and described in the literature: aquatic and terrestrial. However, their taxonomic status is currently unknown. The question whether they are genotypically adapted to specific environmental conditions or are those differences a result of phenotypic plasticity is addressed in this study. SSR and ISSR data were used to uncover genotypic differences. Data from drought stress experiments (system water content and relative water content of leaves) were used to evaluate the response to water as an environmental factor. The stomatal index of both forms grown under different water treatments was analyzed. The principal component analysis of the ISSR data revealed no clustering that would correspond with ecotypes. The diversity parameters of the SSR data showed no significant differences. The aquatic populations showed a tendency toward heterozygosity, while the terrestrial ones showed a bias toward homozygosity. Both forms responded similarly to the changes in water availability, with newly produced leaves after drought stress that were better adapted to repeated drought stress. Stomatal indices were higher in plants from aquatic habitats, but these differences disappeared when the plants were grown in soil. The observed responses indicate that the differences between forms are due to phenotypic plasticity.
机译:摘要两种形式的Helosciadium Repens的形态学和生态差异是已知的和在文献中描述的:水生和陆地。但是,他们的分类物理状况目前未知。关于它们是基因批次适应特定环境条件的问题,或者在本研究中解决了表型可塑性的差异。 SSR和ISSR数据用于揭示基因型差异。使用来自干旱胁迫实验的数据(叶片的系统含水量和相对含水量)来评估对环境因素的响应。分析了在不同水处理下生长的两种形式的气孔指数。 ISSR数据的主要成分分析显示没有与生态型相对应的群集。 SSR数据的分集参数显示没有显着差异。水生人群表现出杂合子的趋势,而陆地群体表现出刺激纯合子的偏差。两种形式与水可用性的变化同样地响应,在干旱胁迫后新产生的叶子更好地适应反复干旱胁迫。水生栖息地的植物中的气孔指数较高,但当植物在土壤中生长时,这些差异消失了。观察到的反应表明,形式之间的差异是由于表型可塑性。

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