首页> 美国卫生研究院文献>Genes >Unraveling the Deep Genetic Architecture for Seedlessness in Grapevine and the Development and Validation of a New Set of Markers for VviAGL11-Based Gene-Assisted Selection
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Unraveling the Deep Genetic Architecture for Seedlessness in Grapevine and the Development and Validation of a New Set of Markers for VviAGL11-Based Gene-Assisted Selection

机译:揭示葡萄无核的深层遗传结构以及基于VviAGL11的基因辅助选择新标记集的开发和验证

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摘要

Seedless inheritance has been considered a quasi-monogenic trait based on the gene. An intragenic simple sequence repeat (SSR) marker, p3_VvAGL11, is currently used to opportunely discard seeded progeny, which represents up to 50% of seedlings to be established in the field. However, the rate of false positives remains significant, and this lack of accuracy might be due to a more complex genetic architecture, some intrinsic flaws of p3_VvAGL11, or potential recombination events between p3_VvAGL11 and the causal SNP located in the coding region. The purpose of this study was to update the genetic architecture of this trait in order to better understand its implications in breeding strategies. A total of 573 F1 individuals that segregate for seedlessness were genotyped with a 20K SNP chip and characterized phenotypically during four seasons for a fine QTL mapping analysis. Based on the molecular diversity of p3_VvAGL11 alleles, we redesigned this marker, and based on the causal SNP, we developed a qPCR-HRM marker for high-throughput and a Tetra-ARMS-PCR for simple predictive analyses. Up to 10 new QTLs were identified that describe the complex nature of seedlessness, corresponding to small but stable effects. The positive predictive value, based on alone (0.647), was improved up to 0.814 when adding three small-effect QTLs in a multi-QTL additive model as a proof of concept. The new SSR, 5U_VviAGL11, is more informative and robust, and easier to analyze. However, we demonstrated that the association can be lost by intragenic recombination and that the e7_VviAGL11 SNP-based marker is thus more reliable and decreases the occurrence of false positives. This study highlights the bases of prediction failure based solely on a major gene and a reduced set of candidate genes, in addition to opportunities for molecular breeding following further and larger validation studies.
机译:基于该基因,无核遗传被认为是准单基因性状。目前使用基因内简单序列重复(SSR)标记p3_VvAGL11适当地丢弃种子后代,该子代最多可占田间将建立的幼苗的50%。但是,假阳性率仍然很高,而缺乏准确性可能是由于更复杂的遗传结构,p3_VvAGL11的某些内在缺陷,或p3_VvAGL11与位于编码区的因果SNP之间的潜在重组事件。这项研究的目的是更新该性状的遗传结构,以便更好地了解其在育种策略中的意义。共有573名F1个体因无籽而分离,并使用20K SNP芯片进行基因分型,并在四个季节的表型特征上进行了精细的QTL定位分析。基于p3_VvAGL11等位基因的分子多样性,我们重新设计了该标记,并基于因果SNP,开发了用于高通量的qPCR-HRM标记和用于简单预测分析的Tetra-ARMS-PCR。鉴定出多达10个新的QTL,它们描述了无核的复杂性质,相当于较小但稳定的效应。在多QTL加性模型中添加三个小效应QTL作为概念证明时,单独使用的正预测值(0.647)可提高到0.814。新的SSR 5U_VviAGL11具有更丰富的信息和更强大的功能,并且更易于分析。但是,我们证明了基因内重组可能会失去关联,因此基于e7_VviAGL11 SNP的标记更加可靠,并减少了假阳性的发生。这项研究突出了仅基于主要基因和减少的候选基因集的预测失败的基础,此外还需要进行进一步和较大的验证研究以进行分子育种。

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