首页> 美国卫生研究院文献>DNA Research: An International Journal for Rapid Publication of Reports on Genes and Genomes >An Integrated Genomic Approach for Rapid Delineation of Candidate Genes Regulating Agro-Morphological Traits in Chickpea
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An Integrated Genomic Approach for Rapid Delineation of Candidate Genes Regulating Agro-Morphological Traits in Chickpea

机译:快速描绘调控鹰嘴豆农业形态特征的候选基因的综合基因组方法

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摘要

The identification and fine mapping of robust quantitative trait loci (QTLs)/genes governing important agro-morphological traits in chickpea still lacks systematic efforts at a genome-wide scale involving wild Cicer accessions. In this context, an 834 simple sequence repeat and single-nucleotide polymorphism marker-based high-density genetic linkage map between cultivated and wild parental accessions (Cicer arietinum desi cv. ICC 4958 and Cicer reticulatum wild cv. ICC 17160) was constructed. This inter-specific genetic map comprising eight linkage groups spanned a map length of 949.4 cM with an average inter-marker distance of 1.14 cM. Eleven novel major genomic regions harbouring 15 robust QTLs (15.6–39.8% R2 at 4.2–15.7 logarithm of odds) associated with four agro-morphological traits (100-seed weight, pod and branch number/plant and plant hairiness) were identified and mapped on chickpea chromosomes. Most of these QTLs showed positive additive gene effects with effective allelic contribution from ICC 4958, particularly for increasing seed weight (SW) and pod and branch number. One robust SW-influencing major QTL region (qSW4.2) has been narrowed down by combining QTL mapping with high-resolution QTL region-specific association analysis, differential expression profiling and gene haplotype-based association/LD mapping. This enabled to delineate a strong SW-regulating ABI3VP1 transcription factor (TF) gene at trait-specific QTL interval and consequently identified favourable natural allelic variants and superior high seed weight-specific haplotypes in the upstream regulatory region of this gene showing increased transcript expression during seed development. The genes (TFs) harbouring diverse trait-regulating QTLs, once validated and fine-mapped by our developed rapid integrated genomic approach and through gene/QTL map-based cloning, can be utilized as potential candidates for marker-assisted genetic enhancement of chickpea.
机译:在鹰嘴豆中控制重要农业形态特征的稳健的数量性状基因座(QTL)/基因的鉴定和精细定位仍缺乏在涉及野生Cicer入种的全基因组范围内的系统性努力。在这种情况下,构建了栽培和野生亲本(Cicer arietinum desi cv。ICC 4958和网状柑桔(Cicer reticulatum)野生cv。ICC 17160)之间基于834个简单序列重复和单核苷酸多态性标记的高密度遗传连锁图谱。该种间遗传图谱包括八个连锁组,图谱长度为949.4 cM,平均标记间距离为1.14 cM。十一个新的主要基因组区域,具有15个强大的QTL(在4.2-15.7的对数对数下为15.6–39.8%R 2 ),具有四个农业形态特征(100粒重,荚果和分支数/植物)和植物毛羽)被识别并定位在鹰嘴豆染色体上。这些QTL中的大多数显示出积极的加性基因效应,ICC 4958具有有效的等位基因贡献,特别是对于增加种子重量(SW)和荚果和分支数。通过将QTL映射与高分辨率QTL区域特异性关联分析,差异表达谱分析和基于基因单倍型的关联/ LD映射相结合,已经缩小了一个影响SW的主要QTL区域(qSW4.2)。这使得能够在性状特异性QTL区间描述一个强力的SW调节性ABI3VP1转录因子(TF)基因,并因此在该基因的上游调节区域中鉴定了有利的自然等位基因变体和优异的高种子重量特异性单倍型,显示在转录过程中转录表达增加种子发育。带有多种性状调控QTL的基因(TF),一旦通过我们开发的快速整合基因组方法并通过基于基因/ QTL图的克隆进行了验证和精细定位,就可以用作鹰嘴豆标记辅助遗传增强的潜在候选基因。

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