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Genetic Fine-Mapping of a Quantitative Trait Locus (QTL) Associated with Embryogenic Tissue Culture Response and Plant Regeneration Ability in Maize (Zea mays L.)

机译:玉米胚胎组织培养反应和植物再生能力相关的定量性状基因座(QTL)的遗传细映射(Zea Mays L.)

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Embryogenic and regenerable tissue cultures are widely utilized in plant transformation, clonal propagation, and biological research applications. Germplasm utilized in those applications are limited, however, due to genotype-dependent culture response. The goal of this study was to identify genomic regions controlling embryogenic and regenerable tissue culture response in the globally important crop, maize (Zea maysL.), toward the long-term objective of developing approaches for genotype-independent plant genetic engineering and clonal propagation systems. An inbred maize line, WCIC2, nearly-isogenic to reference inbred B73, was developed by phenotypic selection and molecular marker analysis. WCIC2 has over 50x increase in tissue culture response relative to the recurrent parent, B73. This line was used to genetically fine-map a region on chromosome 3 controlling embryogenic and regenerable tissue culture response to a 23.9 Mb region. WCIC2 and derivatives will be useful materials to enable maize research in a genetic background similar to B73, and our genetic mapping results will advance research to identify causal genes controlling somatic embryo formation and plant regeneration in maize.
机译:胚胎发生和可再生的组织培养物被广泛用于植物转化,克隆繁殖和生物研究应用。然而,由于基因型依赖性培养反应,这些应用中使用的种质受到限制。本研究的目标是鉴定控制全球重要作物玉米(Zea Maysl的可再生组织培养反应的基因组区域,致玉米(Zea Maysl。),朝着发展基因型无关的植物基因工程和克隆繁殖系统方法的长期目标。通过表型选择和分子标记分析,开发了一种近交玉米线WCIC2,几乎是基于参考血统B73。 WCIC2相对于复发父母B73的组织培养响应超过50倍。该系列用于基因上微观地映射染色体3的区域,控制胚胎发生和可再生组织培养反应的23.9 MB区域。 WCIC2和衍生物将是有用的材料,使玉米研究能够在类似于B73的遗传背景中,我们的遗传绘图结果将提前研究,以识别控制玉米体细胞胚胎形成和植物再生的因果基因。

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