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构建 SNP 指纹图谱数据库及 329 个花椰菜品种的群体遗传学分析。

Construction of an SNP fingerprinting database and population genetic analysis of 329 cauliflower cultivars.

机构信息

Tianjin Academy of Agricultural Sciences, Tianjin, 300192, China.

College of Life Sciences, Nankai University, Tianjin, 300071, China.

出版信息

BMC Plant Biol. 2022 Nov 10;22(1):522. doi: 10.1186/s12870-022-03920-2.

Abstract

Cauliflower is one of the most important vegetable crops grown worldwide. However, the lack of genetic diversity information and efficient molecular markers hinders efforts to improve cauliflower. This study aims to construct DNA fingerprints for 329 cauliflower cultivars based on SNP markers and the KASP system. After rigorous filtering, a total of 1662 candidate SNPs were obtained from nearly 17.9 million SNP loci. The mean values of PIC, MAF, heterozygosity and gene diversity of these SNPs were 0.389, 0.419, 0.075, and 0.506, respectively. We developed a program for in silico simulations on 153 core germplasm samples to generate ideal SNP marker sets from the candidates. Finally, 41 highly polymorphic KASP markers were selected and applied to identify 329 cauliflower cultivars, mainly collected from the public market. Furthermore, based on the KASP genotyping data, we performed phylogenetic analysis and population structure analysis of the 329 cultivars. As a result, these cultivars could be classified into three major clusters, and the classification patterns were significantly related to their curd solidity and geographical origin. Finally, fingerprints of the 329 cultivars and 2D barcodes with the genetic information of each sample were generated. The fingerprinting database developed in this study provides a practical tool for identifying the authenticity and purity of cauliflower seeds and valuable genetic information about the current cauliflower cultivars.

摘要

菜花是全球最重要的蔬菜作物之一。然而,遗传多样性信息和高效分子标记的缺乏阻碍了对菜花的改良。本研究旨在基于 SNP 标记和 KASP 系统为 329 个菜花品种构建 DNA 指纹图谱。经过严格筛选,从近 1790 万个 SNP 位点中获得了总计 1662 个候选 SNP。这些 SNP 的 PIC、MAF、杂合度和基因多样性的平均值分别为 0.389、0.419、0.075 和 0.506。我们开发了一个程序,用于对 153 个核心种质样本进行计算机模拟,从候选 SNP 中生成理想的 SNP 标记集。最后,选择了 41 个高度多态性的 KASP 标记,并应用于鉴定 329 个菜花品种,这些品种主要来自公共市场。此外,基于 KASP 基因型数据,我们对 329 个品种进行了系统发育分析和群体结构分析。结果表明,这些品种可分为三大类群,其分类模式与菜花的肉质紧实度和地理来源密切相关。最后,生成了 329 个品种的指纹图谱和包含每个样本遗传信息的 2D 条码。本研究开发的指纹图谱数据库为鉴定菜花种子的真实性和纯度以及当前菜花品种的宝贵遗传信息提供了实用工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c41/9647966/3ea06101e197/12870_2022_3920_Fig1_HTML.jpg

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