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首页> 外文期刊>Scientific reports. >What drives phenotypic divergence in Leymus chinensis (Poaceae) on large-scale gradient, climate or genetic differentiation?
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What drives phenotypic divergence in Leymus chinensis (Poaceae) on large-scale gradient, climate or genetic differentiation?

机译:是什么驱使的大型梯度,气候或遗传分化羊草(禾本科)的表型差异?

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Elucidating the driving factors among-population divergence is an important task in evolutionary biology, however the relative contribution from natural selection and neutral genetic differentiation has been less debated. A manipulation experiment was conducted to examine whether the phenotypic divergence of Leymus chinensis depended on climate variations or genetic differentiations at 18 wild sites along a longitudinal gradient from 114 to 124°E in northeast China and at common garden condition of transplantation. Demographical, morphological and physiological phenotypes of 18 L. chinensis populations exhibited significant divergence along the gradient, but these divergent variations narrowed significantly at the transplantation. Moreover, most of the phenotypes were significantly correlated with mean annual precipitation and temperature in wild sites, suggesting that climatic variables played vital roles in phenotypic divergence of the species. Relative greater heterozygosity (HE), genotype evenness (E) and Shannon-Wiener diversity (I) in western group of populations suggested that genetic differentiation also drove phenotypic divergence of the species. However, neutral genetic differentiation (FST?=?0.041) was greatly lower than quantitative differentiation (QST?=?0.199), indicating that divergent selection/climate variable was the main factor in determining the phenotypic divergence of the species along the large-scale gradient.
机译:阐明人口分歧的驱动因素是进化生物学中的重要任务,但自然选择和中性遗传分化的相对贡献较少争论。进行了操纵实​​验,以检查Leymus Chinensis的表型分歧是否取决于在中国东北部114至124°E的纵向梯度和18个野生地点的气候变化或遗传分化中,并在常见的园林中移植条件。 18万吨的人口统计学,形态学和生理表型沿着梯度表现出显着的分歧,但这些发散变异在移植过程中显着变化。此外,大多数表型与野生地点的平均年降水和温度显着相关,这表明气候变量在物种的表型分歧中起到了重要作用。相对更大的杂合性(HE),基因型均匀性(E)和Shannon-Wiener多样性(I)在西方群体中表明遗传分化也推动了物种的表型分歧。然而,中性遗传分化(FST?= 0.041)大于定量分化(QST?= 0.199),表明分歧选择/气候变量是测定沿大规模物种的表型分歧的主要因素坡度。

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