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Genetic structure of the date palm (Phoenix dactylifera) in the Old World reveals a strong differentiation between eastern and western populations

机译:旧大陆的枣椰子(Phoenix dactylifera)的遗传结构揭示了东西方种群之间的强烈差异

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摘要

>Background and Aims Date palms (Phoenix dactylifera, Arecaceae) are of great economic and ecological value to the oasis agriculture of arid and semi-arid areas. However, despite the availability of a large date palm germplasm spreading from the Atlantic shores to Southern Asia, improvement of the species is being hampered by a lack of information on global genetic diversity and population structure. In order to contribute to the varietal improvement of date palms and to provide new insights on the influence of geographic origins and human activity on the genetic structure of the date palm, this study analysed the diversity of the species.>Methods Genetic diversity levels and population genetic structure were investigated through the genotyping of a collection of 295 date palm accessions ranging from Mauritania to Pakistan using a set of 18 simple sequence repeat (SSR) markers and a plastid minisatellite.>Key Results Using a Bayesian clustering approach, the date palm genotypes can be structured into two different gene pools: the first, termed the Eastern pool, consists of accessions from Asia and Djibouti, whilst the second, termed the Western pool, consists of accessions from Africa. These results confirm the existence of two ancient gene pools that have contributed to the current date palm diversity. The presence of admixed genotypes is also noted, which points at gene flows between eastern and western origins, mostly from east to west, following a human-mediated diffusion of the species.>Conclusions This study assesses the distribution and level of genetic diversity of accessible date palm resources, provides new insights on the geographic origins and genetic history of the cultivated component of this species, and confirms the existence of at least two domestication origins. Furthermore, the strong genetic structure clearly established here is a prerequisite for any breeding programme exploiting the effective polymorphism related to each gene pool.
机译:>背景和目标枣椰树(凤凰果,槟榔)对干旱和半干旱地区的绿洲农业具有重要的经济和生态价值。然而,尽管有从大西洋沿岸到南亚广泛传播的枣椰子种质,但由于缺乏有关全球遗传多样性和种群结构的信息,该物种的改良受到了阻碍。为了有助于枣椰子的品种改良,并为了解地理起源和人类活动对枣椰子遗传结构的影响提供新的见解,本研究分析了该物种的多样性。>方法 >使用一组18个简单序列重复(SSR)标记和一个质体小卫星,通过对从毛里塔尼亚到巴基斯坦的295种枣椰子种质进行基因分型,研究了遗传多样性水平和种群遗传结构。>关键结果使用贝叶斯聚类方法,可以将枣椰树的基因型分为两个不同的基因库:第一个称为东方库,由亚洲和吉布提组成,第二个称为西方库,由亚洲和吉布提组成。非洲。这些结果证实存在两个古老的基因库,这些基因库对当前的枣椰树多样性做出了贡献。还指出了混合基因型的存在,它指出了人类介导的物种扩散后东西方起源之间的基因流,主要是东西向。>结论可利用的枣椰子资源的遗传多样性水平,提供有关该物种栽培成分的地理起源和遗​​传历史的新见解,并确认至少存在两个驯化起源。此外,这里明确建立的强大遗传结构是任何育种计划利用与每个基因库相关的有效多态性的前提。

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