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石榴(Punica granatum L.)的微卫星 DNA 标记(SSR)揭示的分子遗传多样性。

Molecular genetic diversity of Punica granatum L. (pomegranate) as revealed by microsatellite DNA markers (SSR).

机构信息

U.R. Agro-Biodiversity, Higher Agronomic Institute, 4042 Chott Meriam, Sousse, Tunisia.

出版信息

Gene. 2012 Feb 1;493(1):105-12. doi: 10.1016/j.gene.2011.11.012. Epub 2011 Nov 20.

Abstract

Pomegranate (Punica granatum L.) is one of the oldest known edible fruits and more and more it arouse interest of scientific community given its numerous biological activities. However, information about its genetic resources and characterization using reliable molecular markers are still scarce. In the present study, we report the development of 4 new polymorphic SSR markers. They have been used in addition to 11 SSRs previously published to investigate molecular diversity of 33 P. granatum ecotypes. Based on the multi-locus profiles, twenty-two distinctive genotypes were identified. Globally, quite low genetic diversity has been revealed, as measured by allele richness (2.83 per locus) and heterozygosity (He=0.245; Ho=0.243), reflecting the narrow genetic background of the plant material. Four synonymous groups could be detected involving 15 accessions. Results of ordination and cluster analysis suggested that almost all the Tunisian cultivars share similar genetic background, and are likely derived from a small number of introductions in ancient times. Results issued from this study provide essential information to project a pomegranate core-collection without plant material duplication and for sustainable management of pomegranate landraces at national and international level. Furthermore, these SSR markers are powerful tool for marker assisted selection (MAS) program and for QTL studies.

摘要

石榴(Punica granatum L.)是已知最古老的可食用水果之一,由于其众多的生物活性,越来越引起科学界的兴趣。然而,关于其遗传资源及其使用可靠分子标记进行的特征描述的信息仍然很少。在本研究中,我们报告了 4 个新的多态性 SSR 标记的开发。除了之前发表的 11 个 SSR 标记外,还将它们用于研究 33 个石榴生态型的分子多样性。基于多基因座图谱,鉴定出 22 个独特的基因型。总体而言,遗传多样性较低,等位基因丰富度(每个位点 2.83 个)和杂合度(He=0.245;Ho=0.243)反映了植物材料的狭窄遗传背景。可以检测到涉及 15 个访问的 4 个同义组。排序和聚类分析的结果表明,几乎所有的突尼斯品种都具有相似的遗传背景,可能是古代少量引种的结果。本研究的结果为在没有植物材料重复的情况下规划石榴核心收集以及在国家和国际层面上对石榴地方品种进行可持续管理提供了必要的信息。此外,这些 SSR 标记是标记辅助选择(MAS)计划和 QTL 研究的有力工具。

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