首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Mapping and genomic targeting of the major leaf shape gene (L) in Upland cotton (Gossypium hirsutum L.).
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Mapping and genomic targeting of the major leaf shape gene (L) in Upland cotton (Gossypium hirsutum L.).

机译:陆地棉主要叶片形状基因(L)的作图和基因组定位。

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Leaf shape in cotton is an important trait that influences yield, flowering rates, disease resistance, lint trash, and the efficacy of foliar chemical application. The leaves of okra leaf cotton display a significantly enhanced lobing pattern, as well as ectopic outgrowths along the lobe margins when compared with normal leaf cotton. These phenotypes are the hallmark characteristics of mutations in various known modifiers of leaf shape that culminate in the mis/over-expression of Class I KNOX genes. To better understand the molecular and genetic processes underlying leaf shape in cotton, a normal leaf accession (PI607650) was crossed to an okra leaf breeding line (NC05AZ21). An F2 population of 236 individuals confirmed the incompletely dominant single gene nature of the okra leaf shape trait in Gossypium hirsutum L. Molecular mapping with simple sequence repeat markers localized the leaf shape gene to 5.4 cM interval in the distal region of the short arm of chromosome 15. Orthologous mapping of the closely linked markers with the sequenced diploid D-genome (Gossypium raimondii) tentatively resolved the leaf shape locus to a small genomic region. RT-PCR-based expression analysis and candidate gene mapping indicated that the okra leaf shape gene (Lo) in cotton might be an upstream regulator of Class I KNOX genes. The linked molecular markers and delineated genomic region in the sequenced diploid D-genome will assist in the future high-resolution mapping and map-based cloning of the leaf shape gene in cotton.
机译:棉花的叶片形状是影响产量,开花率,抗病能力,皮棉垃圾和叶面化学施用功效的重要特征。与正常叶棉相比,秋葵叶棉的叶显示出明显增强的裂片模式,以及沿着叶缘的异位生长。这些表型是叶片形状的各种已知修饰物中突变的标志性特征,这些突变最终导致I类KNOX基因的错误/过度表达。为了更好地了解棉花叶片形状的分子和遗传过程,将正常叶片(PI607650)与秋葵叶片育种系(NC05AZ21)杂交。 F 2 种群的236个个体证实了陆地棉秋葵叶片形状性状的不完全显性单一基因性质。使用简单的序列重复标记进行的分子定位将叶片形状基因定位在5.4 cM区间内。染色体15短臂的远端区域。与测序的二倍体D基因组(雷蒙氏棉)紧密相连的标志物的直系定位试探性地将叶形基因座解析为一个小的基因组区域。基于RT-PCR的表达分析和候选基因定位表明,棉花中的秋葵叶形基因(L o )可能是I类NOX基因的上游调节子。测序的二倍体D基因组中的链接分子标记和描绘的基因组区域将有助于棉花叶片形状基因的未来高分辨率定位和基于图的克隆。

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