首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Cotton (Gossypium spp.) R2R3-MYB transcription factors SNP identification, phylogenomic characterization, chromosome localization, and linkage mapping
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Cotton (Gossypium spp.) R2R3-MYB transcription factors SNP identification, phylogenomic characterization, chromosome localization, and linkage mapping

机译:棉花(棉花属)R2R3-MYB转录因子SNP鉴定,系统特征,染色体定位和连锁图谱

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R2R3-MYB transcription factors of plants are involved in the regulation of trichome length and density. Several of them are differentially expressed during initiation and elongation of cotton fibers. We report sequence phylogenomic characterization of the six MYB genes, their chromosomal localization, and linkage mapping via SNP marker in AD-genome cotton (2n = 52). Phylogenetic grouping and comparison to At- and Dt-genome putative ancestral diploid species of allotetraploid cotton facilitated differentiation between genome-specific polymorphisms (GSPs) and marker-suitable locus-specific polymorphisms (LSPs). The SNP frequency averaged one per 77 bases overall, and one per 106 and 30 bases in coding and non-coding regions, respectively. SNP-based multivariate relationships conformed to independent evolution of the six MYB homoeologous loci in the four tetraploid species. Nucleotide diversity analysis indicated that the six MYB loci evolved more quickly in the Dt- than At-genome. The greater variation in the Dt-D genome comparisons than that in At-A genome comparisons showed no significant bias among synonymous substitution, non-synonymous substitution, and nucleotide change in non-coding regions. SNPs were concordantly mapped by deletion analysis and linkage mapping, which confirmed their value as candidate gene markers and indicated the reliability of the SNP discovery strategy in tetraploid cotton species. We consider that these SNPs may be useful for genetic dissection of economically important fiber and yield traits because of the role of these genes in fiber development.
机译:植物的R2R3-MYB转录因子参与毛状体长度和密度的调节。它们中的几种在棉纤维的起始和伸长过程中差异表达。我们报告了六个MYB基因的序列系统生物学特性,它们的染色体定位以及在AD基因组棉花(2n = 52)中通过SNP标记的连锁作图。系统发生学的分组以及与等位基因四倍体棉花的At和Dt基因组推定祖先二倍体物种的比较促进了基因组特异性多态性(GSP)和标记物适合的基因座特异性多态性(LSPs)之间的区分。 SNP频率在编码和非编码区域分别平均每77个碱基平均一个,在106和30个碱基中平均一个。基于SNP的多元关系符合四个四倍体物种中六个MYB同源基因座的独立进化。核苷酸多样性分析表明,Dt基因组中的6个MYB基因座比At基因组进化得更快。 Dt-D基因组比较中的变化比At-A基因组比较中的变化更大,显示同义取代,非同义取代和非编码区核苷酸变化之间没有显着偏差。通过缺失分析和连锁图谱一致地绘制了SNP,证实了其作为候选基因标记的价值,并表明了SNP发现策略在四倍体棉种中的可靠性。我们认为,由于这些基因在纤维发育中的作用,这些SNP可能对经济上重要的纤维和产量性状的遗传解剖有用。

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