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Development of Bi gene-based SNP markers for genotyping for bitter-free cucumber lines

机译:基于BI基因的SNP标记的发展,用于无苦黄瓜线的基因分型

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摘要

High contents of cucurbitacin compounds result in a bitter taste in cucumbers. The Bi locus mapped to chromosome 6 is responsible for cucumber bitterness. The Bi gene encodes oxidosqualene cyclase, a key enzyme in the cucurbitacin biosynthetic pathway. Two alleles of the Bi gene responsible for the phenotypic variation in bitterness differ by a single point mutation in the coding region. An efficient genotyping system is necessary to allow breeders to screen for bitterness alleles in their breeding programs. In the present study, the single nucleotide polymorphism located within the Bi gene, which is directly linked to cucumber bitterness, was utilized for gene-based marker development. We developed reliable and cost-effective high-resolution melting (HRM)- and Kompetitive Allele-Specific PCR (KASP)-based molecular markers (BiHRM1 and Bi-KASP). These gene-based markers should enhance the accuracy and effectiveness of marker-assisted selection for bitter-free cucumber lines in cucumber breeding programs.
机译:葫芦素化合物的高含量导致黄瓜味道苦味。映射到染色体6的BI基因座负责黄瓜苦味。 BI基因编码氧化喹啉环酶,是葫芦素生物合成途径的关键酶。负责苦味的表型变化的双基因的两位等位基因因编码区中的单点突变而异。有效的基因分型系统是必要的,使育种者在其繁殖计划中筛选苦味等位基因。在本研究中,位于BI基因内的单核苷酸多态性与黄瓜苦味直接连接,用于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于Cucumber的标志物。我们开发了可靠且经济高度高分辨率的高分辨率熔融(HRM)和特异性等位基因特异性PCR(KASP)的分子标记(BiHRM1和Bi-Kasp)。这些基于基因的标记应增强黄瓜育种计划中无苦黄瓜线的标记辅助选择的准确性和有效性。

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