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AFLP and MS-AFLP Analysis of the Variation within Saffron Crocus (Crocus sativus L.) Germplasm

机译:藏红花(Crocus sativus L.)种质内变异的AFLP和MS-AFLP分析

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摘要

The presence and extent of genetic variation in saffron crocus are still debated, as testified by several contradictory articles providing contrasting results about the monomorphism or less of the species. Remarkably, phenotypic variations have been frequently observed in the field, such variations are usually unstable and can change from one growing season to another. Considering that gene expression can be influenced both by genetic and epigenetic changes, epigenetics could be a plausible cause of the alternative phenotypes. In order to obtain new insights into this issue, we carried out a molecular marker analysis of 112 accessions from theWorld Saffron and Crocus Collection. The accessions were grown for at least three years in the same open field conditions. The same samples were analysed using Amplified Fragment Length Polymorphism (AFLP) and Methyl Sensitive AFLP in order to search for variation at the genetic (DNA sequence) and epigenetic (cytosine methylation) level. While the genetic variability was low (4.23% polymorphic peaks and twelve (12) effective different genotypes), the methyl sensitive analysis showed the presence of high epigenetic variability (33.57% polymorphic peaks and twenty eight (28) different effective epigenotypes). The pattern obtained by Factorial Correspondence Analysis of AFLP and, in particular, of MS-AFLP data was consistent with the geographical provenance of the accessions. Very interestingly, by focusing on Spanish accessions, it was observed that the distribution of the accessions in the Factorial Correspondence Analysis is not random but tends to reflect the geographical origin. Two clearly defined clusters grouping accessions from theWest (Toledo and Ciudad Real) and accessions from the East (Cuenca and Teruel) were clearly recognised
机译:藏红花藏红花中遗传变异的存在和程度仍在争论中,一些相互矛盾的文章证明了该物种的单态性或更少,这是相互矛盾的。值得注意的是,表型变异在该领域经常被观察到,这种变异通常是不稳定的,并且可以从一个生长季节改变到另一个生长季节。考虑到基因表达可能受到遗传和表观遗传学变化的影响,表观遗传学可能是其他表型的合理原因。为了获得对该问题的新见解,我们对World Saffron and Crocus Collection的112种材料进行了分子标记分析。在相同的开放田间条件下,种质至少生长了三年。为了在遗传(DNA序列)和​​表观遗传(胞嘧啶甲基化)水平上寻找变异,使用扩增片段长度多态性(AFLP)和甲基敏感性AFLP对相同样品进行了分析。尽管遗传变异性较低(4.23%的多态性峰和十二(12)个有效的不同基因型),但是甲基敏感性分析显示存在高的表观遗传变异性(33.57%的多态性峰和二十八(28)个不同的有效表型)。通过AFLP尤其是MS-AFLP数据的因子对应分析获得的模式与这些种的地理来源一致。非常有趣的是,通过关注西班牙的种质,观察到在阶乘对应分析中这些种质的分布不是随机的,而是倾向于反映地理起源。清楚地认识到两个明确定义的集群,将来自西方(托莱多和雷阿尔城)的种质和来自东方(昆卡和特鲁埃尔)的种质进行分组

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