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Genetic linkage map construction for kenaf using SRAP, ISSR and RAPD markers.

机译:使用SRAP,ISSR和RAPD标记为洋麻构建遗传连锁图谱。

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Kenaf (Hibiscus cannabinus L.) is one of the most economically important crops for fibre production. Genetic maps have been developed in almost all the agricultural crops. However, genetic information for kenaf, especially, at the molecular level is limited. To better understand the genetic basis of kenaf for the improvement of production and to lay the foundation for molecular breeding efforts, a primary genetic linkage map was constructed using sequence-related amplified polymorphism (SRAP), inter-simple sequence repeat (ISSR) and randomly amplified polymorphic DNA (RAPD). Cultivar 'Alian kenaf' and 'Fuhong 992' were used as parents to construct an F2 population consisting of 180 plants. We selected 494 SRAP, 60 ISSR, 120 RAPD and 300 two-primer RAPD mixture primers that amplified 396 polymorphic loci in total. At a logarithm of the odds (LOD) score threshold of 5.0 and at a maximum map distance of 25 cM, these 396 loci were used to construct the genetic linkage map with MAPMAKER/EXP 3.0, a total of 307 loci were grouped into 26 linkage groups that spanned a total map length of around 4924.8 cM with a mean density of 16.04 cM per locus. These markers were distributed randomly in all linkage groups without any clustering. The construction of the kenaf genetic linkage map will be useful for further genetic studies including mapping both qualitative and quantitative traits, marker-assisted selection program, and comparative genomics analysis.
机译:红麻( Hibiscus cannabinus L.)是纤维生产中最重要的经济作物之一。几乎所有农作物都已开发了遗传图谱。但是,洋麻的遗传信息尤其是在分子水平上是有限的。为了更好地了解洋麻的遗传基础,以提高产量,并为分子育种奠定基础,利用序列相关的扩增多态性(SRAP),内部简单序列重复(ISSR)和随机构建了主要的遗传连锁图谱。扩增多态性DNA(RAPD)。以品种“ Alian kenaf”和“ Fuhong 992”作为亲本,构建了由180株植物组成的F 2 种群。我们选择了494个SRAP,60个ISSR,120个RAPD和300个双引物RAPD混合引物,共扩增了396个多态位点。在赔率(LOD)分数阈值为5.0的对数和最大图谱距离为25 cM时,将这396个基因座用于构建具有MAPMAKER / EXP 3.0的遗传连锁图谱,总共307个基因座分为26个连锁这些研究组的总图谱长度约为4924.8 cM,每个位点的平均密度为16.04 cM。这些标记随机分布在所有连锁组中,没有任何聚类。洋麻遗传连锁图谱的构建对于进一步的遗传学研究将是有用的,包括绘制定性和定量性状,标记辅助选择程序以及比较基因组学分析。

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