NGS-Based Multi-Allelic InDel Genotyping and Fingerprinting Facilitate Genetic Discrimination in Grapevine (Vitis vinifera L.)

Guiying Jia, Na Zhang, Yingxia Yang, Qingdong Jin, Jianfu Jiang, Hong Zhang, Yutong Guo, Qian Wang, He Zhang, Jianjin Wu, Rui Chen, Jianquan Huang, Mingjie Lyu
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Abstract

Molecular markers play a crucial role in marker-assisted breeding and varietal identification. However, the application of insertion/deletion markers (InDels) in grapevines has been limited by the low throughput and separability of gel electrophoresis. To developed effective InDel markers for grapevines, this study reports a novel, effective and high-throughput pipeline for InDel marker development and identification. After rigorous filtering, 11 polymorphic multi-allelic InDel markers were selected. These markers were then used to perform genetic identification of 123 elite grape cultivars using agarose gel electrophoresis and next-generation sequencing (NGS). The polymorphism rate of the InDel markers identified by gels was 37.92%, while the NGS-based results demonstrated a higher polymorphism rate of 61.12%. Finally, the NGS-based fingerprints successfully distinguished 122 grape varieties (99.19%), surpassing the gels, which could distinguish 116 grape varieties (94.31%). Specifically, we constructed phylogenetic trees based on the genotyping results from both gels and NGS. The population structure revealed by the NGS-based markers displayed three primary clusters, consisting of the patterns of the evolutionary divergence and geographical origin of the grapevines. Our work provides an efficient workflow for multi-allelic InDel marker development and practical tools for the genetic discrimination of grape cultivars.
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基于 NGS 的多拷贝 InDel 基因分型和指纹图谱分析有助于葡萄藤(Vitis vinifera L.)
分子标记在标记辅助育种和品种鉴定中起着至关重要的作用。然而,由于凝胶电泳的低通量和可分离性,插入/缺失标记(InDel)在葡萄树上的应用一直受到限制。为了为葡萄树开发有效的 InDel 标记,本研究报告了一个新颖、有效和高通量的 InDel 标记开发和鉴定管道。经过严格筛选,选出了 11 个多态性多拷贝 InDel 标记。然后利用这些标记,采用琼脂糖凝胶电泳和下一代测序(NGS)技术对 123 个精英葡萄栽培品种进行了遗传鉴定。凝胶电泳鉴定出的 InDel 标记的多态性为 37.92%,而基于 NGS 的结果显示出更高的多态性,达到 61.12%。最后,基于 NGS 的指纹图谱成功区分了 122 个葡萄品种(99.19%),超过了凝胶法区分的 116 个葡萄品种(94.31%)。具体而言,我们根据凝胶和 NGS 的基因分型结果构建了系统发生树。基于 NGS 的标记所揭示的种群结构显示出三个主要聚类,包括葡萄树的进化分化模式和地理起源。我们的工作为多等位 InDel 标记的开发提供了高效的工作流程,也为葡萄栽培品种的遗传鉴别提供了实用工具。
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