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A genome-wide SNP scan accelerates trait-regulatory genomic loci identification in chickpea

机译:全基因组SNP扫描可加快鹰嘴豆性状调控基因组基因座的鉴定

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We identified 44844 high-quality SNPs by sequencing 92 diverse chickpea accessions belonging to a seed and pod trait-specific association panel using reference genome- and de novo -based GBS (genotyping-by-sequencing) assays. A GWAS (genome-wide association study) in an association panel of 211, including the 92 sequenced accessions, identified 22 major genomic loci showing significant association (explaining 23–47% phenotypic variation) with pod and seed number/plant and 100-seed weight. Eighteen trait-regulatory major genomic loci underlying 13 robust QTLs were validated and mapped on an intra-specific genetic linkage map by QTL mapping. A combinatorial approach of GWAS, QTL mapping and gene haplotype-specific LD mapping and transcript profiling uncovered one superior haplotype and favourable natural allelic variants in the upstream regulatory region of a CesA -type cellulose synthase ( Ca_Kabuli_CesA3 ) gene regulating high pod and seed number/plant (explaining 47% phenotypic variation) in chickpea. The up-regulation of this superior gene haplotype correlated with increased transcript expression of Ca_Kabuli_CesA3 gene in the pollen and pod of high pod/seed number accession, resulting in higher cellulose accumulation for normal pollen and pollen tube growth. A rapid combinatorial genome-wide SNP genotyping-based approach has potential to dissect complex quantitative agronomic traits and delineate trait-regulatory genomic loci (candidate genes) for genetic enhancement in crop plants, including chickpea.
机译:我们使用基于参考基因组和从头开始的GBS(按基因分型)测定方法,对属于种子和豆荚性状特异性关联小组的92种不同鹰嘴豆种质进行测序,从而鉴定出44844个高质量SNP。在211个关联小组中进行的GWAS(全基因组关联研究),包括92个测序的种质,确定了22个主要的基因组位点,它们与荚果和种子数/植物和100种子显着关联(解释了23-47%的表型变异)。重量。验证了13个强大QTL的18个性状调控主要基因组位点,并通过QTL定位将其定位在种内遗传连锁图上。 GWAS,QTL定位和基因单倍型特异性LD定位和转录本分析的组合方法在调控高荚果和种子数/鹰嘴豆中的植物(表型变异达到47%)。该高级基因单倍型的上调与高豆荚/种子数种质的花粉和豆荚中Ca_Kabuli_CesA3基因的转录表达增加相关,从而导致正常花粉和花粉管生长的纤维素积累更高。基于组合基因组的快速全基因组基因分型的快速方法有可能剖析复杂的定量农艺性状并勾勒出性状调控的基因组位点(候选基因),以增强包括鹰嘴豆在内的农作物的遗传。

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