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Genome-Wide Differentiation of Various Melon Horticultural Groups for Use in GWAS for Fruit Firmness and Construction of a High Resolution Genetic Map

机译:GWAS中用于水果硬度的各种瓜类园艺群体的全基因组分化和高分辨率遗传图谱的构建

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摘要

Melon (Cucumis melo L.) is a phenotypically diverse eudicot diploid (2n = 2x = 24) has climacteric and non-climacteric morphotypes and show wide variation for fruit firmness, an important trait for transportation and shelf life. We generated 13,789 SNP markers using genotyping-by-sequencing (GBS) and anchored them to chromosomes to understand genome-wide fixation indices (Fst) between various melon morphotypes and genomewide linkage disequilibrium (LD) decay. The FST between accessions of cantalupensis and inodorus was 0.23. The FST between cantalupensis and various agrestis accessions was in a range of 0.19–0.53 and between inodorus and agrestis accessions was in a range of 0.21–0.59 indicating sporadic to wide ranging introgression. The EM (Expectation Maximization) algorithm was used for estimation of 1436 haplotypes. Average genome-wide LD decay for the melon genome was noted to be 9.27 Kb. In the current research, we focused on the genome-wide divergence underlying diverse melon horticultural groups. A high-resolution genetic map with 7153 loci was constructed. Genome-wide segregation distortion and recombination rate across various chromosomes were characterized. Melon has climacteric and non-climacteric morphotypes and wide variation for fruit firmness, a very important trait for transportation and shelf life. Various levels of QTLs were identified with high to moderate stringency and linked to fruit firmness using both genome-wide association study (GWAS) and biparental mapping. Gene annotation revealed some of the SNPs are located in β-D-xylosidase, glyoxysomal malate synthase, chloroplastic anthranilate phosphoribosyltransferase, and histidine kinase, the genes that were previously characterized for fruit ripening and softening in other crops.
机译:甜瓜(Cucumis melo L.)是表型多样的双子叶植物二倍体(2n = 2x = 24),具有更年期和非更年期的形态型,并显示出果实硬度的广泛差异,这是运输和保质期的重要特征。我们使用测序基因分型(GBS)生成了13,789个SNP标记,并将其锚定在染色体上,以了解各种瓜型和全基因组连锁不平衡(LD)衰减之间的全基因组固定指数(Fst)。 Cantalupensis种和无臭种之间的FST为0.23。 Cantalupensis和各种Agrestis种之间的FST范围在0.19-0.53之间,而Inodorus和Agrestis种之间的FST范围在0.21-0.59之间,表明零星到大范围的渗入。 EM(期望最大化)算法用于估计1436个单倍型。该甜瓜基因组的全基因组平均LD衰变为9.27 Kb。在当前的研究中,我们集中于各种瓜类园艺群体的全基因组差异。构建了具有7153个基因座的高分辨率遗传图谱。跨基因组的全基因组分离畸变和重组率进行了表征。甜瓜具有更年期和非更年期的形态型,并且果实硬度变化很大,这是运输和保质期的重要特征。使用全基因组关联研究(GWAS)和双亲作图,可以确定各种水平的QTL具有高至中度的严格性,并与果实的硬度相关。基因注释揭示了一些SNP位于β-D-木糖苷酶,乙醛酸苹果酸合酶,叶绿体邻氨基苯甲酸磷酸核糖基转移酶和组氨酸激酶,这些基因以前在其他农作物中具有果实成熟和软化的特征。

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