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一种全基因组组合策略解析鹰嘴豆种皮颜色的复杂遗传结构。

A Genome-wide Combinatorial Strategy Dissects Complex Genetic Architecture of Seed Coat Color in Chickpea.

作者信息

Bajaj Deepak, Das Shouvik, Upadhyaya Hari D, Ranjan Rajeev, Badoni Saurabh, Kumar Vinod, Tripathi Shailesh, Gowda C L Laxmipathi, Sharma Shivali, Singh Sube, Tyagi Akhilesh K, Parida Swarup K

机构信息

National Institute of Plant Genome Research New Delhi, India.

International Crops Research Institute for the Semi-Arid Tropics Telangana, India.

出版信息

Front Plant Sci. 2015 Nov 17;6:979. doi: 10.3389/fpls.2015.00979. eCollection 2015.

Abstract

The study identified 9045 high-quality SNPs employing both genome-wide GBS- and candidate gene-based SNP genotyping assays in 172, including 93 cultivated (desi and kabuli) and 79 wild chickpea accessions. The GWAS in a structured population of 93 sequenced accessions detected 15 major genomic loci exhibiting significant association with seed coat color. Five seed color-associated major genomic loci underlying robust QTLs mapped on a high-density intra-specific genetic linkage map were validated by QTL mapping. The integration of association and QTL mapping with gene haplotype-specific LD mapping and transcript profiling identified novel allelic variants (non-synonymous SNPs) and haplotypes in a MATE secondary transporter gene regulating light/yellow brown and beige seed coat color differentiation in chickpea. The down-regulation and decreased transcript expression of beige seed coat color-associated MATE gene haplotype was correlated with reduced proanthocyanidins accumulation in the mature seed coats of beige than light/yellow brown seed colored desi and kabuli accessions for their coloration/pigmentation. This seed color-regulating MATE gene revealed strong purifying selection pressure primarily in LB/YB seed colored desi and wild Cicer reticulatum accessions compared with the BE seed colored kabuli accessions. The functionally relevant molecular tags identified have potential to decipher the complex transcriptional regulatory gene function of seed coat coloration and for understanding the selective sweep-based seed color trait evolutionary pattern in cultivated and wild accessions during chickpea domestication. The genome-wide integrated approach employed will expedite marker-assisted genetic enhancement for developing cultivars with desirable seed coat color types in chickpea.

摘要

该研究通过全基因组简化基因组测序(GBS)和基于候选基因的SNP基因分型检测,在172份鹰嘴豆材料(包括93份栽培种(迪西和卡布利)和79份野生种)中鉴定出9045个高质量单核苷酸多态性(SNP)。对93份测序材料的结构化群体进行全基因组关联研究(GWAS),检测到15个与种皮颜色显著相关的主要基因组位点。通过数量性状基因座(QTL)定位验证了位于高密度种内遗传连锁图谱上的5个与种子颜色相关的主要基因组位点,这些位点构成了稳健的QTL。将关联分析和QTL定位与基因单倍型特异性连锁不平衡(LD)定位及转录谱分析相结合,在一个调控鹰嘴豆浅黄棕色和米色种皮颜色分化的多药和有毒化合物排出(MATE)次级转运蛋白基因中,鉴定出了新的等位基因变异(非同义SNP)和单倍型。与浅黄棕色种皮的迪西和卡布利材料相比,米色种皮相关MATE基因单倍型的下调和转录表达降低与米色成熟种皮中原花青素积累减少相关,这与种皮颜色/色素沉着有关。与米色种皮的卡布利材料相比,该种皮颜色调控MATE基因在浅黄棕色/黄棕色种皮的迪西和野生鹰嘴豆材料中显示出较强的纯化选择压力。所鉴定的功能相关分子标记有潜力解析种皮颜色复杂的转录调控基因功能,并有助于理解鹰嘴豆驯化过程中栽培种和野生种基于选择性清除的种子颜色性状进化模式。所采用的全基因组综合方法将加快标记辅助遗传改良,以培育具有理想种皮颜色类型的鹰嘴豆品种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/76d6/4647070/c84423789ff0/fpls-06-00979-g0001.jpg

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