伊朗无花果种下形态和遗传变异

M. Zolfaghari, F. Salimpour, F. Sharifnia, M. Peyvandi, S. Marandi
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摘要

榕树(Ficus carica L.,桑科)是世界上广泛种植的重要作物之一。几个野生或栽培的种群生长在伊朗的不同地区。在目前的研究中,我们评估了形态学和分子SSR方法,以研究该物种的种下变异,并在其群体中引入可能的表型/基因型。为此,从该国不同地区选择了14个人口。我们评估了27个生殖和营养器官的定性和定量形态学特征。ANOVA检验显示,大多数定量变量存在显著差异;此外,不同种群的质量特征也不同。生境的一些形态特征与生态因子之间存在显著的相关关系。根据UPGMA树,这些群体存在4种形态。ca -join图显示,每一组都是通过一些形态学变量来识别的。此外,遗传多样性的参数在研究群体之间存在差异,AMOVA检验显示出显著的变异,这些变异大部分属于群体内的变异。根据UPGMA树、MDS和PCoA图,将研究群体划分为4个不同的基因型。此外,基于Nei遗传多样性和结构分析的UPGMA树证实了这些类群。其中3个群体为单型群体,第4个群体由11个群体组成。基于形态性状的群体聚类模式与SSR数据不一致。因此,我们认为环境因素对种群的表型有很强的影响,而基因型不被其表型所识别。
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Infraspecific morphological and genetic variations of Ficus carica L. from Iran
Ficus carica L. (Moraceae) is one of the most important crop plants widely cultivated in different parts of the world. Several wild or cultivated populations of it grow in various regions of Iran. In the current research, we evaluated morphological and molecular SSR methods in order to investigate infraspecific variations in this species and introduce possible phenotypes/genotypes among its populations. For this, 14 populations were selected from different parts of the country. We evaluated 27 qualitative and quantitative morphological traits of both reproductive and vegetative organs. The ANOVA test revealed significant variations for most of the quantitative variables; moreover, qualitative features differed among populations. Significant correlations were found between some morphological characteristics with ecological factors of habitats. According to the UPGMA tree, four morphotypes existed among these populations. CA-joined plot revealed that each group was identified by some morphological variables. In addition, parameters of genetic diversity varied among the studied populations, while the AMOVA test showed significant variations, most of which belonged to the variations within the population. According to the UPGMA tree, MDS and PCoA plots, the studied populations were divided into four distinct genotypes. In addition, the UPGMA tree based on Nei genetic diversity and Structure analyses confirmed these groups. Three groups were monotypic and the fourth was composed of eleven populations. Patterns of population clustering based on the morphological traits were not similar to those of SSR data. Therefore we concluded that environmental factors had strong effects on the population’s phenotype and genotypes were not recognized by their phenotypes.
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