Smýkal Petr
AGRITEC Plant Research Ltd., Plant Biotechnology Department, Czech Republic.
J Appl Genet. 2006;47(3):221-30. doi: 10.1007/BF03194627.
Fast and efficient DNA fingerprinting of crop cultivars and individuals is frequently used in both theoretical population genetics and in practical breeding. Numerous DNA marker technologies exist and the ratio of speed, cost and accuracy are of importance. Therefore even in species where highly accurate and polymorphic marker systems are available, such as microsatellite SSR (simple sequence repeats), also alternative methods may be of interest. Thanks to their high abundance and ubiquity, temporary mobile retrotransposable elements come into recent focus. Their properties, such as genome wide distribution and well-defined origin of individual insertions by descent, predetermine them for use as molecular markers. In this study, several Ty3-gypsy type retrotransposons have been developed and adopted for the inter-retrotransposon amplified polymorphism (IRAP) method, which is suitable for fast and efficient pea cultivar fingerprinting. The method can easily distinguish even between genetically closely related pea cultivars and provide high polymorphic information content (PIC) in a single PCR analysis.
作物品种和个体的快速高效DNA指纹分析在理论群体遗传学和实际育种中都经常被使用。现有的DNA标记技术众多,速度、成本和准确性的比率很重要。因此,即使在有高度准确和多态性标记系统的物种中,如微卫星SSR(简单序列重复),替代方法也可能会受到关注。由于其高丰度和普遍性,临时移动反转录转座子最近受到了关注。它们的特性,如全基因组分布和通过遗传确定的单个插入的明确起源,使其注定可用作分子标记。在本研究中,开发了几种Ty3-gypsy型反转录转座子,并将其应用于反转录转座子间扩增多态性(IRAP)方法,该方法适用于快速高效的豌豆品种指纹分析。该方法甚至可以轻松区分遗传关系密切的豌豆品种,并在单次PCR分析中提供高多态性信息含量(PIC)。