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首页> 外文期刊>Genetic Resources and Crop Evolution >RAPD and ISSR fingerprinting in cultivated chickpea (Cicer arietinum L.) and its wild progenitor Cicer reticulatum Ladizinsky
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RAPD and ISSR fingerprinting in cultivated chickpea (Cicer arietinum L.) and its wild progenitor Cicer reticulatum Ladizinsky

机译:栽培鹰嘴豆(Cicer arietinum L.)及其野生祖先网状Ci(Cicer reticulatum Ladizinsky)的RAPD和ISSR指纹图谱

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摘要

Detection of genetic relationships between 19 chickpea cultivars and five accessions of its wild progenitor Cicer reticulatum Ladizinsky were investigated by using RAPD and ISSR markers. On an average, six bands per primer were observed in RAPD analysis and 11 bands per primer in ISSR analysis. In RAPD, the wild accessions shared 77.8% polymorphic bands with chickpea cultivars, whereas they shared 79.6% polymorphic bands in ISSR analysis. In RAPD analysis 51.7% and 50.5% polymorphic bands were observed among wild accessions and chickpea cultivars, respectively. Similarly, 65.63% and 56.25% polymorphic bands were found in ISSR analysis. The dendrogram developed by pooling the data of RAPD and ISSR analysis revealed that the wild accessions and the ICCV lines showed similar pattern with the dendrogram of RAPD analysis. The ISSR analysis clearly indicated that even with six polymorphic primers, reliable estimation of genetic diversity could be obtained, while nearly 30 primers are required for RAPD. Moreover, RAPD can cause genotyping errors due to competition in the amplification of all RAPD fragments. The markers generated by ISSR and RAPD assays can provide practical information for the management of genetic resources. For the selection of good parental material in breeding programs the genetic data produced through ISSR can be used to correlate with the relationship measures based on pedigree data and morphological traits to minimize the individual inaccuracies in chickpea.
机译:利用RAPD和ISSR标记,研究了19个鹰嘴豆品种与5个野生祖先网纹番茄之间的遗传关系。平均而言,在RAPD分析中观察到每个引物6条带,在ISSR分析中观察到每个引物11条带。在RAPD中,野生种与鹰嘴豆品种共有77.8%的多态性条带,而在ISSR分析中它们共有79.6%的多态性条带。在RAPD分析中,野生种和鹰嘴豆品种中分别观察到51.7%和50.5%的多态性条带。同样,在ISSR分析中发现65.63%和56.25%的多态性带。通过汇总RAPD和ISSR分析数据得出的树状图显示,野生种和ICCV品系显示出与RAPD分析树状图相似的模式。 ISSR分析清楚地表明,即使使用6个多态性引物,也可以获得可靠的遗传多样性估计,而RAPD需要近30个引物。此外,由于所有RAPD片段的扩增竞争,RAPD可能导致基因分型错误。 ISSR和RAPD分析产生的标记可以为遗传资源管理提供实用信息。为了在育种计划中选择优良的亲本材料,通过ISSR产生的遗传数据可用于与基于系谱数据和形态性状的关系测度相关联,以最大程度地减少鹰嘴豆的个体误差。

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