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首页> 外文期刊>Theoretical and Applied Genetics >Development of marker sets useful in the early selection of Ren4 powdery mildew resistance and seedlessness for table and raisin grape breeding
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Development of marker sets useful in the early selection of Ren4 powdery mildew resistance and seedlessness for table and raisin grape breeding

机译:开发用于在食用和葡萄干葡萄育种中早期选择Ren4抗白粉病和无核的标记物集

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摘要

The single, dominant powdery mildew resistance locus Ren4 from Vitis romanetii prevents hyphal growth by Erysiphe necator. Previously, we showed that when introgressed into V. vinifera in the modified BC2 population 03-3004, Ren4 was linked with the simple sequence repeat marker VMC7f2 on chromosome 18—a marker that is associated with multiple disease resistance and seedlessness. However, in the current study, this marker was monomorphic in related breeding populations 05-3010 and 07-3553. To enhance marker-assisted selection at this locus, we developed multiplexed SNP markers using three approaches: conversion of bulked segregant analysis AFLP markers, sequencing of candidate genes and regions flanking known V. vinifera SNPs, and hybridization to the Vitis9KSNP genotyping array. The Vitis9KSNP array was more cost-efficient than all other approaches tested for marker discovery and genotyping, enabling the genotyping of 1317 informative SNPs within the span of 1 week and at a cost of 11 cents per SNP. From a total of 1,446 high quality, informative markers segregating in 03-3004, we developed a haplotype signature of 15 multiplexed SNP markers linked with Ren4 in 03-3004, 5 of which were linked in 05-3010, and 6 of which were linked in 07-3553. Two of these populations segregated for seedlessness, which was tightly linked with Ren4 in 03-3004 (2 cM) but not in 05-3010 (22 cM). Chromosomal rearrangements were detected among these three populations and the reference genome PN40024. Since this is the first application of the Vitis9KSNP array in a breeding program, some suggestions are provided for application of genotyping arrays. Our results provide novel markers for tracking and pyramiding this unique resistance gene and for further functional characterization of this region on chromosome 18 encoding multiple disease resistance and seedlessness.
机译:罗马葡萄(Vitis romanetii)的单一优势白粉病抗性基因座Ren4可以阻止由Erysiphe菌产生的菌丝生长。先前,我们显示了当在改良的BC2 种群03-3004中渗入到V. vinifera中时,Ren4与18号染色体上的简单序列重复标记VMC7f2连锁,该标记与多种抗病性和无核性有关。但是,在当前研究中,该标记在相关育种群体05-3010和07-3553中是单态的。为了增强在此基因座处的标记辅助选择,我们使用三种方法开发了多重SNP标记:大量分离剂分析AFLP标记的转化,候选基因和已知葡萄单核苷酸SNP侧翼区域的测序以及与Vitis9KSNP基因分型阵列的杂交。与在标记物发现和基因分型中测试的所有其他方法相比,Vitis9KSNP阵列具有更高的成本效益,能够在1周内对1317种信息性SNP进行基因分型,每个SNP的成本为11美分。通过在03-3004中分离出的总共1,446个高质量的信息性标记,我们在03-3004中开发了15个与Ren4连锁的多重SNP标记的单倍型特征,其中5个在05-3010关联,其中6个被关联在07-3553。这些种群中有两个因无核而隔离,在03-3004(2 cM)与Ren4紧密相关,而在05-3010(22 cM)与Ren4紧密相关。在这三个种群和参考基因组PN40024中检测到染色体重排。由于这是Vitis9KSNP阵列在育种程序中的首次应用,因此为基因分型阵列的应用提供了一些建议。我们的结果提供了新颖的标记,用于追踪和金字塔化这种独特的抗性基因,并进一步表征18号染色体上编码多种疾病抗性和无核性的该区域。

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  • 来源
    《Theoretical and Applied Genetics》 |2012年第1期|23-33|共11页
  • 作者单位

    USDA-ARS Grape Genetics Research Unit 630 W. North St Geneva NY 14456 USA;

    USDA-ARS San Joaquin Valley Agricultural Sciences Center 9611 South Riverbend Avenue Parlier CA 93648-9757 USA;

    USDA-ARS Grape Genetics Research Unit 630 W. North St Geneva NY 14456 USA;

    USDA-ARS Grape Genetics Research Unit 630 W. North St Geneva NY 14456 USA;

    Department of Horticultural Sciences New York State Agricultural Experiment Station 630 W. North St Geneva NY 14456 USA;

    Department of Genetics Stanford University 300 Pasteur Dr Stanford CA 94305 USA;

    USDA-ARS Grape Genetics Research Unit 630 W. North St Geneva NY 14456 USA;

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