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Conclusive evidence for hexasomic inheritance in chrysanthemum based on analysis of a 183?k SNP array

机译:基于183?k SNP阵列分析的菊花中六聚体遗传的确凿证据

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Background Cultivated chrysanthemum is an outcrossing hexaploid (2n?=?6×?=?54) with a disputed mode of inheritance. In this paper, we present a single nucleotide polymorphism (SNP) selection pipeline that was used to design an Affymetrix Axiom array with 183?k SNPs from RNA sequencing data (1). With this array, we genotyped four bi-parental populations (with sizes of 405, 53, 76 and 37 offspring plants respectively), and a cultivar panel of 63 genotypes. Further, we present a method for dosage scoring in hexaploids from signal intensities of the array based on mixture models (2) and validation of selection steps in the SNP selection pipeline (3). The resulting genotypic data is used to draw conclusions on the mode of inheritance in chrysanthemum (4), and to make an inference on allelic expression bias (5). Results With use of the mixture model approach, we successfully called the dosage of 73,936 out of 183,130 SNPs (40.4%) that segregated in any of the bi-parental populations. To investigate the mode of inheritance, we analysed markers that segregated in the large bi-parental population ( n =?405). Analysis of segregation of duplex x nulliplex SNPs resulted in evidence for genome-wide hexasomic inheritance. This evidence was substantiated by the absence of strong linkage between markers in repulsion, which indicated absence of full disomic inheritance. We present the success rate of SNP discovery out of RNA sequencing data as affected by different selection steps, among which SNP coverage over genotypes and use of different types of sequence read mapping software. Genomic dosage highly correlated with relative allele coverage from the RNA sequencing data, indicating that most alleles are expressed according to their genomic dosage. Conclusions The large population, genotyped with a very large number of markers, is a unique framework for extensive genetic analyses in hexaploid chrysanthemum. As starting point, we show conclusive evidence for genome-wide hexasomic inheritance.
机译:背景技术菊花是异型六倍体(2n?=?6×?=?54),遗传方式有争议。在本文中,我们提出了一个单核苷酸多态性(SNP)选择流水线,该流水线用于根据RNA测序数据设计具有183?k SNP的Affymetrix公理阵列(1)。通过这种阵列,我们对四个双亲种群(分别具有405、53、76和37个后代植物的大小)进行了基因分型,并确定了63个基因型的品种。此外,我们提出了一种基于混合模型(2)和SNP选择管线中选择步骤验证(3)的阵列信号强度六倍体剂量计分方法。所得的基因型数据可用于推断菊花的遗传模式(4),并推断等位基因表达的偏倚(5)。结果通过使用混合模型方法,我们成功地将183,130个SNP中的73,936个(40.4%)分配给了任何双亲群体。为了研究遗传模式,我们分析了在较大的双亲群体中隔离的标记(n =?405)。双链体x无效双链体SNPs的分离分析为全基因组的六体遗传提供了证据。排斥反应中标记之间不存在牢固的联系,这证明了这一事实,表明缺乏完全的二体性遗传。我们提出了从RNA测序数据中发现SNP的成功率,该成功率受不同选择步骤的影响,其中SNP覆盖基因型和使用不同类型的序列读图软件。基因组剂量与RNA测序数据中的相对等位基因覆盖率高度相关,这表明大多数等位基因根据其基因组剂量表达。结论具有大量标记基因型的大量人群是六倍体菊花广泛遗传分析的独特框架。作为起点,我们显示了全基因组六体遗传的确凿证据。

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