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Establishment of AFLP technique and assessment of primer combinations for Mei flower.

机译:AFLP技术的建立和梅花引物组合的评估。

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Mei flower is one of the most famous ornamental flowers in eastern Asia for its blossoming in early spring. Amplified fragment length polymorphism (AFLP) is one of the most frequently used techniques for analysis of genetic variation and is used herein for the first time in Prunus mume. This research provides a detailed and modified AFLP protocol for Mei genomic DNA digested with EcoRI/PstI restriction endonuclease combinations. The 10 best primer pairs of high polymorphism were screened from 256 primer combinations that could reliably and repetitively distinguish 14 Mei samples and would be suitable for genetic analysis of more cultivars. Ten primer pairs produced up to a total of 524 AFLP bands and up to 233 polymorphic bands. The ratio of polymorphic bands scoped from 35.71% to 59.67%, and the average ratio was 44.46% in the 10 primers. AFLP is an effective, inexpensive, and timesaving technique for the genetic differentiation of the Mei cultivars, as evidenced in this study..
机译:梅花是东亚地区最著名的观赏花卉之一,因为它在早春开花。扩增片段长度多态性(AFLP)是最常用的遗传变异分析技术之一,在本文中首次在梅花中使用。这项研究为用EcoRI / PstI限制性核酸内切酶组合消化的Mei基因组DNA提供了详细的改良AFLP方案。从256个引物组合中筛选出10个最佳的多态性最好的引物对,这些引物组合可以可靠,重复地区分14个Mei样品,适用于更多品种的遗传分析。十对引物产生了总共524条AFLP带和233条多态带。 10个引物的多态性条带比例为35.71%〜59.67%,平均比例为44.46%。如本研究所示,AFLP是一种用于梅品种遗传分化的有效,廉价且省时的技术。

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