Genetic (SSRs) versus morphological differentiation of date palm cultivars: Fst versus Pst estimates

IF 2.1 4区 生物学 Q2 Agricultural and Biological Sciences Caryologia Pub Date : 2021-11-26 DOI:10.36253/caryologia-1089
S. Saboori, M. Sheidai, Zahra Noourmohammadi, S. Marashi, F. Koohdar
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Abstract

Date Palm (Phoenix dactylifera L.) is one of the oldest domesticated fruit trees. For future breeding program, knowledge on genetic structure of cultivars is necessary. Therefore, the present study was performed with the following aims: 1- To provide data on genetic diversity and genetic structure of 36 date palm cultivars, 2- To provide data on the association between fruit characteristics and the genetic features of the cultivars. We used nine SSRs and EST-SSR loci for our genetic investigation. The most of SSR loci obtained have a high Gst value (0.70), and therefore have a good discrimination power for date palm cultivar differentiation task. K-Means clustering grouped date palm cultivars either in two broad clusters, or in 16 smaller genetic groups. This was supported by delta K = 2 of the STRUCTURE analysis. AMOVA produced significant genetic difference among date palm cultivars (PhiPT = 0.70, P = 0.001). New genetic differentiation parameters estimated also produced significant difference among date palm cultivars (G’st(Nei) = 0.673, P =0.001; G’st(Hed) = 0.738, P = 0.001). Test of assignment revealed that some of the cultivars have 33-66% misassignment, probably due to genetic admixture. Heatmaps of  genetic versus morphological/or agronomical characters in date palm cultivars differed from each other showing the cultivars morphological changes is not merely related to their genetic content. It points toward the potential role played either by environmental conditions or local selection practice. The new findings can be utilized in future conservation and breeding of date palms in the country.
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枣椰树品种的遗传(SSRs)与形态分化:Fst与Pst的比较
枣椰树(Phoenix dactylifera L.)是最古老的驯化果树之一。在今后的育种工作中,对品种遗传结构的了解是必要的。因此,本研究的目的是:1 .为36个枣椰树品种的遗传多样性和遗传结构提供资料;2 .为枣椰树果实性状与品种遗传特征之间的关系提供资料。我们使用了9个ssr位点和EST-SSR位点进行遗传分析。所获得的SSR位点大部分具有较高的Gst值(0.70),因此对枣椰树品种分化任务具有较好的判别能力。K-Means聚类将枣椰树品种分为两个大群或16个较小的遗传群。这得到了STRUCTURE分析的K = 2的支持。AMOVA在枣椰树品种间具有显著的遗传差异(PhiPT = 0.70, P = 0.001)。新的遗传分化参数在枣椰树品种间也存在显著差异(G′st(Nei) = 0.673, P =0.001;G 'st (Hed) = 0.738, P = 0.001)。配型试验表明,部分品种配型错配率达33-66%,可能是遗传混配所致。枣椰树品种遗传特征与形态特征或农艺特征的热图差异表明,枣椰树品种的形态变化不仅仅与遗传含量有关。它指出了环境条件或当地选择实践所起的潜在作用。这些新发现可为今后我国枣椰树的保护和育种提供参考。
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来源期刊
Caryologia
Caryologia 生物-遗传学
CiteScore
1.60
自引率
23.80%
发文量
26
审稿时长
12 months
期刊介绍: Caryologia is devoted to the publication of original papers, and occasionally of reviews, about plant, animal and human karyological, cytological, cytogenetic, embryological and ultrastructural studies. Articles about the structure, the organization and the biological events relating to DNA and chromatin organization in eukaryotic cells are considered. Caryologia has a strong tradition in plant and animal cytosystematics and in cytotoxicology. Bioinformatics articles may be considered, but only if they have an emphasis on the relationship between the nucleus and cytoplasm and/or the structural organization of the eukaryotic cell.
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