首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Identification and characterization of plum and pluot cultivars by microsatellite markers
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Identification and characterization of plum and pluot cultivars by microsatellite markers

机译:利用微卫星标记鉴定和鉴定李子和矮秆品种

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摘要

Pluots are putative hybrids between plums (Prunus salicina Lindl.) and apricots (P. armeniaca L.). The capability to distinguish among plum and pluot cultivars is important in breeding and cultivation. We investigated the genetic diversity among 14 plums, 6 pluots and one plumcot representing commercial cultivars in California, with 28 microsatellite markers. We also tested seven apricot cultivars as a reference to find evidence of apricot in the ancestry of pluots and plumcot. The parental material used in the original cross that produced the pluot and plumcot was not available. Of the 28 SSR markers, 25 were from sweet cherry (Prunus avium L.) and three from peach (Prunus persica L.). Approximately 80% of the cherry primers generated amplification products in plum and pluots, showing transportability between these Prunus species. One to eight putative alleles per locus were displayed by the tested SSRs in plums and pluots. In plum and pluot samples a total of 100 alleles were identified with an average of 4.3 alleles per primer combination. The SSR markers were successfully used for the discrimination of all tested cultivars. In pluots, 76 alleles were found in which 63 (83%) were specifically coming from plum, 9 (12%) were common in plum, pluots and apricot while no allele in the pluots was observed that was contributed from apricot. In plumcot, 49 alleles were observed in which 25 (51%) were from plum, 18 (36%) were specifically from apricot and 6 (12%) were common in plum, plumcot and apricot. Relationships among the 28 plum, pluot and apricot cultivars were represented by a dendrogram, constructed on the basis of 168 SSR markers. The dendrogram:showed the. plums and pluots form. a cluster distinct from the apricots, with pluot cultivars interspersed among plum cultivars and more closely related to plum than to apricot. Plumcot made a separate branch and was placed between the plum and apricot cluster. These results suggest that the SSR markers are valuable tools for identification of cultivars and diversity analyses in plum.
机译:lu是李子(Prunus salicina Lindl。)和杏子(P. armeniaca L.)之间的假定杂种。区分李子和矮人品种的能力在育种和栽培中很重要。我们调查了加利福尼亚州代表商业品种的14个李子,6个矮种和一个李子之间的遗传多样性,并带有28个微卫星标记。我们还测试了七个杏子品种,以作为在杏和矮人血统中寻找杏子证据的参考。没有原始的十字架所用的亲本材料,可以产生矮胖和矮胖。在28个SSR标记中,有25个来自甜樱桃(Prunus avium L.),三个来自桃子(Prunus persica L.)。大约80%的樱桃引物在李子和pl中生成扩增产物,显示出这些李属之间的可运输性。经测试的SSR在李子和pl中显示每个位点1至8个等位基因。在李子和矮白蚁样品中,总共鉴定出100个等位基因,每个引物组合平均4.3个等位基因。 SSR标记已成功用于所有受试品种的鉴别。在pl中发现了76个等位基因,其中63个(83%)特别来自李子,在李子,pl和杏中常见9个(12%),而在杏中没有观察到等位基因是由杏引起的。在李子中观察到49个等位基因,其中25个(51%)来自李子,18个(36%)来自杏子,而6个(12%)在李子,李子和杏子中常见。以168个SSR标记为基础的树状图代表了28个李子,pluot和杏子品种之间的关系。树状图:显示。李子和多汁的形式。一个与杏子不同的簇,pluot品种散布在李子品种中,与李子的关系比与杏子的关系更紧密。梅子开了一个单独的分支,放在梅子和杏子丛之间。这些结果表明,SSR标记是鉴定李子品种和多样性分析的有价值的工具。

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