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Fine Mapping and Characterization of Candidate Genes that Control Resistance to Cercospora sojina K. Hara in Two Soybean Germplasm Accessions

机译:控制两个大豆种质资源对Cercospora sojina K. Hara抗性的候选基因的精细定位和表征

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摘要

Frogeye leaf spot (FLS), caused by the fungus Cercospora sojina K. Hara, may cause a significant yield loss to soybean growers in regions with a warm and humid climate. Two soybean accessions, PI 594891 and PI 594774, were identified to carry a high level of resistance similar to that conditioned by the Rcs3 gene in 'Davis'. Previously, we reported that the resistance to FLS in these two plant introductions (PIs) was controlled by a novel gene (s) on chromosome 13 that is different from Rcs3. To fine-map the novel FLS resistance gene(s) in these two PIs, F2: 3 seeds from the crosses between PI 594891 and PI 594774, and the FLS susceptible genotype 'Blackhawk' were genotyped with SNP markers that were designed based on the SoySNP50k iSelect BeadChip data to identify recombinant events and locate candidate genes. Analysis of lines possessing key recombination events helped narrow down the FLS-resistance genomic region in PI 594891 from 3.3 Mb to a 72.6 kb region with five annotated genes. The resistance gene in PI 594774 was fine-mapped into a 540 kb region that encompasses the 72.6 kb region found in PI 594891. Sequencing five candidate genes in PI 594891 identified three genes that have several mutations in the promoter, intron, 5', and 3' UTR regions. qPCR analysis showed a difference in expression levels of these genes in both lines compared to Blackhawk in the presence of C. sojina. Based on phenotype, genotype and haplotype analysis results, these two soybean accessions might carry different resistance alleles of the same gene or two different gene(s). The identified SNPs were used to develop Kompetitive Allele Specific PCR (KASP) assays to detect the resistance alleles on chromosome 13 from the two PIs for marker-assisted selection.
机译:由真菌Cercospora sojina K. Hara引起的蛙眼点斑(FLS)可能会导致在温暖湿润地区的大豆种植者大量减产。鉴定出两个大豆种质,PI 594891和PI 594774,具有与“戴维斯”中Rcs3基因所调节的相似的高水平抗性。先前,我们报道了这两种植物导入(PIs)对FLS的抗性是由与Rcs3不同的13号染色体上的一个新基因控制的。为了对这两个PI中的新型FLS抗性基因进行精细定位,将PI 594891和PI 594774之间杂交的F2:3种子和FLS易感基因型``黑鹰''(Blackhawk)进行了基因分型,并根据SNP标记设计了SNP标记SoySNP50k iSelect BeadChip数据可识别重组事件并定位候选基因。对具有关键重组事件的品系的分析有助于将PI 594891中FLS抗性基因组区域从3.3 Mb缩小到具有5个带注释基因的72.6 kb。 PI 594774中的抗性基因被精细映射到一个540 kb的区域,该区域涵盖了在PI 594891中发现的72.6 kb的区域。对PI 594891中的五个候选基因进行测序后,确定了三个在启动子,内含子,5'和5'突变的基因。 3'UTR地区。 qPCR分析显示,与存在C. sojina的Blackhawk相比,这两个系中这些基因的表达水平有所不同。根据表型,基因型和单倍型分析结果,这两个大豆种质可能携带相同基因或两个不同基因的不同抗性等位基因。鉴定出的SNP用于开发竞争性等位基因特异性PCR(KASP)分析,以检测来自两个PI的13号染色体上的抗性等位基因,以进行标记辅助选择。

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