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An Exome-seq Based Tool for Mapping and Selection of Candidate Genes in Maize Deletion Mutants

机译:基于Exome-seq的玉米缺失突变体候选基因定位和选择工具

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摘要

Despite the large number of genomic and transcriptomic resources in maize, there is still much to learn about the function of genes in developmental and biochemical processes. Some maize mutants that were generated by gamma-irradiation showed clear segregation for the kernel phenotypes in B73?×?Mo17 F2 ears. To better understand the functional genomics of kernel development, we developed a mapping and gene identification pipeline, bulked segregant exome sequencing (BSEx-seq), to map mutants with kernel phenotypes including opaque endosperm and reduced kernel size. BSEx-seq generates and compares the sequence of the exon fraction from mutant and normal plant F2 DNA pools. The comparison can derive mapping peaks, identify deletions within the mapping peak, and suggest candidate genes within the deleted regions. We then used the public kernel-specific expression data to narrow down the list of candidate genes/mutations and identified deletions ranging from several kb to more than 1?Mb. A full deletion allele of the Opaque-2 gene was identified in mutant 531, which occurs within a ~200-kb deletion. Opaque mutant 1486 has a 6248-bp deletion in the mapping interval containing two candidate genes encoding RNA-directed DNA methylation 4 (RdDM4) and AMP-binding protein, respectively. This study demonstrates the efficiency and cost-effectiveness of BSEx-seq for causal mutation mapping and candidate gene selection, providing a new option in mapping-by-sequencing for maize functional genomics studies.
机译:尽管玉米中有大量的基因组和转录组资源,但是关于基因在发育和生化过程中的功能仍有许多要学习的知识。 γ射线辐照产生的一些玉米突变体在B73α×ΔMo17F2穗中的核表型表现出明显的分离。为了更好地了解内核发育的功能基因组学,我们开发了一个映射和基因鉴定管道,大量分离的外显子外显子测序(BSEx-seq),以绘制具有不透明胚乳和减小的内核大小的内核表型的突变体。 BSEx-seq生成并比较突变和正常植物F2 DNA库中外显子部分的序列。该比较可以得出作图峰,鉴定作图峰内的缺失,并建议缺失区域内的候选基因。然后,我们使用特定于内核的公共表达数据来缩小候选基因/突变的范围,并确定从几kb到超过1?Mb的缺失。在突变体531中鉴定出Opaque-2基因的完全缺失等位基因,其发生在〜200kb的缺失内。不透明突变体1486在作图间隔中具有6248bp的缺失,其中包含两个分别编码RNA定向DNA甲基化4(RdDM4)和AMP结合蛋白的候选基因。这项研究证明了BSEx-seq用于因果突变作图和候选基因选择的效率和成本效益,为玉米功能基因组学的逐项作图提供了新的选择。

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