首页> 外文期刊>Journal of Agricultural and Food Chemistry >Genome-Wide Association Study to Identify Favorable SNP Allelic Variations and Candidate Genes That Control the Timing of Spring Bud Flush of Tea (Camellia sinensis) Using SLAF-seq
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Genome-Wide Association Study to Identify Favorable SNP Allelic Variations and Candidate Genes That Control the Timing of Spring Bud Flush of Tea (Camellia sinensis) Using SLAF-seq

机译:基因组 - 范围的协会研究以识别有利的SNP等位基因变异和候选基因,使用SLAF-SEQ控制茶叶(Camellia Sinensis)的茶叶(Camellia Sinensis)的时序

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摘要

The timing of spring bud flush (TBF) is of economic importance for tea plant (Camellia sinensis) breeding. We employed a genome-wide association study (GWAS) to identify favorable single nucleotide polymorphism (SNP) allelic variations as well as candidate genes that control TBF of C. sinensis using specific-locus-amplified fragment sequencing (SLAF-seq) in a diversity panel comprising 151 tea plant germplasm resources. GWAS analysis revealed 26 SNPs associated with TBF in three years, and we eventually identified a final significant SNP for TBF. To identify candidate genes possibly related to TBF, we screened seven candidate genes within 100 kb regions surrounding the trait-related SNP loci. Furthermore, the favorable allelic variation, the "TT" genotype in the SNP loci, was discovered, and a derived cleaved amplified polymorphism (dCAPS) marker was designed that cosegregated with TBF, which could be used for marker-assisted selection (MAS) breeding in C. sinensis. The results obtained from this study can provide a theoretical and applied basis for the MAS of early breeding in tea plants in the future.
机译:弹簧芽(TBF)的时间是茶厂(山茶花)育种的经济意义。我们使用了一种基因组 - 宽的协会研究(GWAs)来鉴定有利的单一核苷酸多态性(SNP)等位基因变异以及使用特定基因座扩增的片段测序(SLAF-SEQ)在多样性中控制C.Inensis的TBF的候选基因面板包括151茶植物种质资源。 Gwas分析显示三年内与TBF相关的26个SNP,我们最终确定了TBF的最终重要的SNP。为了鉴定可能与TBF相关的候选基因,我们在围绕特征相关的SNP基因座的100 kB区域内筛选了七个候选基因。此外,发现了有利的等位基因变异,SNP基因座中的“TT”基因型,并设计了衍生的切割的扩增多态性(DCAPS)标记,其用TBF与TBF进行CoSegregated,其可用于标记辅助选择(MAS)育种在C. Sinensis。本研究获得的结果可以为未来茶叶植物早期育种的MA提供理论和应用。

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