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Semiautomated Feature Extraction from RGB Images for Sorghum Panicle Architecture GWAS

机译:从RGB图像半自动特征提取中提取高粱Panicle Architecture GWAS

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摘要

Because structural variation in the inflorescence architecture of cereal crops can influence yield, it is of interest to identify the genes responsible for this variation. However, the manual collection of inflorescence phenotypes can be time consuming for the large populations needed to conduct genome-wide association studies (GWAS) and is difficult for multidimensional traits such as volume. A semiautomated phenotyping pipeline, TIM (Toolkit for Inflorescence Measurement), was developed and used to extract unidimensional and multidimensional features from images of 1,064 sorghum (Sorghum bicolor) panicles from 272 genotypes comprising a subset of the Sorghum Association Panel. GWAS detected 35 unique single-nucleotide polymorphisms associated with variation in inflorescence architecture. The accuracy of the TIM pipeline is supported by the fact that several of these trait-associated single-nucleotide polymorphisms (TASs) are located within chromosomal regions associated with similar traits in previously published quantitative trait locus and GWAS analyses of sorghum. Additionally, sorghum homologs of maize (Zea mays) and rice (Oryza sativa) genes known to affect inflorescence architecture are enriched in the vicinities of TASs. Finally, our TASs are enriched within genomic regions that exhibit high levels of divergence between converted tropical lines and cultivars, consistent with the hypothesis that these chromosomal intervals were targets of selection during modern breeding.
机译:因为谷物作物的花序结构中的结构变异会影响产量,所以鉴定引起这种变异的基因很重要。但是,对于进行基因组范围关联研究(GWAS)所需的大量种群,手动收集花序表型可能很耗时,并且对于诸如体积这样的多维性状也很困难。开发了一种半自动化的表型分析管道TIM(花序测量工具),并用于从272个基因型的1064个高粱(高粱双色)圆锥花序的图像中提取一维和多维特征,该基因型属于高粱协会面板的一个子集。 GWAS检测到35个与花序结构变化相关的独特单核苷酸多态性。这些特性相关的单核苷酸多态性(TAS)中的几个位于先前发表的定量性状基因座和高粱的GWAS分析中与相似性状相关的染色体区域内,这一事实支持了TIM管线的准确性。另外,已知影响花序结构的玉米(Zea mays)和水稻(Oryza sativa)基因的高粱同源物富含TASs。最后,我们的TAS丰富了在转化热带品系和品种之间表现出高水平差异的基因组区域,这与这些染色体区间是现代育种过程中选择目标的假设相一致。

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