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首页> 外文期刊>G3: Genes, Genomes, Genetics >Bulked-Segregant Analysis Coupled to Whole Genome Sequencing (BSA-Seq) for Rapid Gene Cloning in Maize
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Bulked-Segregant Analysis Coupled to Whole Genome Sequencing (BSA-Seq) for Rapid Gene Cloning in Maize

机译:散装分离分析与全基因组测序(BSA-Seq)结合,用于玉米的快速基因克隆

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Forward genetics remains a powerful method for revealing the genes underpinning organismal form and function, and for revealing how these genes are tied together in gene networks. In maize, forward genetics has been tremendously successful, but the size and complexity of the maize genome made identifying mutant genes an often arduous process with traditional methods. The next generation sequencing revolution has allowed for the gene cloning process to be significantly accelerated in many organisms, even when genomes are large and complex. Here, we describe a bulked-segregant analysis sequencing (BSA-Seq) protocol for cloning mutant genes in maize. Our simple strategy can be used to quickly identify a mapping interval and candidate single nucleotide polymorphisms (SNPs) from whole genome sequencing of pooled F2 individuals. We employed this strategy to identify narrow odd dwarf as an enhancer of teosinte branched1 , and to identify a new allele of defective kernel1 . Our method provides a quick, simple way to clone genes in maize.
机译:正向遗传学仍然是一种强有力的方法,可以揭示支持生物形式和功能的基因,并揭示这些基因如何在基因网络中联系在一起。在玉米中,正向遗传学已经取得了巨大的成功,但是玉米基因组的大小和复杂性使得鉴定突变基因成为传统方法中通常很艰巨的过程。下一代测序革命使许多生物体中的基因克隆过程得以大大加速,即使基因组既庞大又复杂。在这里,我们描述了一个用于克隆玉米突变基因的本体分离分析测序(BSA-Seq)方案。我们的简单策略可用于从合并的F2个体的全基因组测序中快速识别定位区间和候选单核苷酸多态性(SNP)。我们采用这种策略来鉴定狭窄的奇矮人为teosinte branched1的增强子,并鉴定出有缺陷的kernel1的新等位基因。我们的方法提供了一种快速,简单的方法来克隆玉米中的基因。

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