...
首页> 外文期刊>Frontiers in Plant Science >EcoTILLING-Based Association Mapping Efficiently Delineates Functionally Relevant Natural Allelic Variants of Candidate Genes Governing Agronomic Traits in Chickpea
【24h】

EcoTILLING-Based Association Mapping Efficiently Delineates Functionally Relevant Natural Allelic Variants of Candidate Genes Governing Agronomic Traits in Chickpea

机译:基于EcoTILLING的关联映射有效地描述了鹰嘴豆农艺性状候选基因的功能相关自然等位基因变体

获取原文
           

摘要

The large-scale mining and high-throughput genotyping of novel gene-based allelic variants in natural mapping population are essential for association mapping to identify functionally relevant molecular tags governing useful agronomic traits in chickpea. The present study employs an alternative time-saving, non-laborious and economical pool-based EcoTILLING approach coupled with agarose gel detection assay to discover 1133 novel SNP allelic variants from diverse coding and regulatory sequence components of 1133 transcription factor (TF) genes by genotyping in 192 diverse desi and kabuli chickpea accessions constituting a seed weight association panel. Integrating these SNP genotyping data with seed weight field phenotypic information of 192 structured association panel identified eight SNP alleles in the eight TF genes regulating seed weight of chickpea. The associated individual and combination of all SNPs explained 10–15 and 31% phenotypic variation for seed weight, respectively. The EcoTILLING-based large-scale allele mining and genotyping strategy implemented for association mapping is found much effective for a diploid genome crop species like chickpea with narrow genetic base and low genetic polymorphism. This optimized approach thus can be deployed for various genomics-assisted breeding applications with optimal expense of resources in domesticated chickpea. The seed weight-associated natural allelic variants and candidate TF genes delineated have potential to accelerate marker-assisted genetic improvement of chickpea.
机译:天然作图群体中基于基因的新型等位基因变体的大规模挖掘和高通量基因分型对于关联作图确定在鹰嘴豆中控制有用农艺性状的功能相关分子标签至关重要。本研究采用另一种省时,省力,经济的基于池的EcoTILLING方法,结合琼脂糖凝胶检测法,通过基因分型从1133个转录因子(TF)基因的各种编码和调控序列成分中发现1133个新的SNP等位基因变体在192个组成种子重量关联面板的不同的desi和kabuli鹰嘴豆种中。将这些SNP基因型数据与192个结构化关联小组的种子重量场表型信息整合在一起,在调控鹰嘴豆种子重量的8个TF基因中鉴定出8个SNP等位基因。所有SNP的相关个体和组合分别解释了种子重量的10–15和31%的表型变异。发现基于EcoTILLING的大规模等位基因挖掘和基因分型策略用于关联作图,对于二倍体基因组农作物物种如鹰嘴豆具有狭窄的遗传基础和低遗传多态性,非常有效。因此,这种优化的方法可用于各种基因组学辅助的育种应用中,而在家养的鹰嘴豆中以最佳的资源消耗。所描述的与种子重量相关的天然等位基因变体和候选TF基因具有加速鹰嘴豆的标记辅助遗传改良的潜力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号