中国农业科学 ›› 2022, Vol. 55 ›› Issue (15): 3002-3017.doi: 10.3864/j.issn.0578-1752.2022.15.011

• 园艺 • 上一篇    下一篇

基于SSR荧光标记的79份桃种质遗传多样性分析

王璐伟1(),沈志军2,李贺欢1,潘磊1,牛良1,崔国朝1,曾文芳1,王志强1(),鲁振华1()   

  1. 1中国农业科学院郑州果树研究所/国家桃葡萄改良中心/农业农村部果树育种技术重点实验室,郑州 450009
    2江苏省农业科学院果树研究所,南京 210014
  • 收稿日期:2021-11-18 接受日期:2022-01-14 出版日期:2022-08-01 发布日期:2022-08-02
  • 通讯作者: 王志强,鲁振华
  • 作者简介:王璐伟,Tel:15839552412;E-mail: 15839552412@163.com
  • 基金资助:
    国家自然科学基金(32072532);国家自然科学基金(31870669)

Analysis of Genetic Diversity of 79 Cultivars Based on SSR Fluorescence Markers for Peach

WANG LuWei1(),SHEN ZhiJun2,LI HeHuan1,PAN Lei1,NIU Liang1,CUI GuoChao1,ZENG WenFang1,WANG ZhiQiang1(),LU ZhenHua1()   

  1. 1Zhengzhou Fruit Tree Research Institute, Chinese Academy of Agricultural Sciences/National Peach and Grape Improvement Center/Key Laboratory of Fruit Tree Breeding Technology, Ministry of Agriculture and Rural Affairs, Zhengzhou 450009
    2Institute of Fruit Trees, Jiangsu Academy of Agricultural Sciences, Nanjing 210014
  • Received:2021-11-18 Accepted:2022-01-14 Online:2022-08-01 Published:2022-08-02
  • Contact: ZhiQiang WANG,ZhenHua LU

摘要:

【目的】利用SSR荧光标记毛细管电泳技术对取自国家果树种质南京桃资源圃的79份种质进行基因分型和遗传多样性分析,筛选出多态性高的引物可用于桃品种间鉴定、亲缘关系分析,并用于分子标记辅助选种体系建立。【方法】对母本‘中油4号’进行从头测序,以物理距离1 Mb为单位在全基因组范围内开发SSR标记。以79个桃品种为材料进行PCR扩增,扩增产物经聚丙烯酰胺凝胶电泳检测后筛选目标条带清晰且多态性丰富的标记。对筛选出的标记进行5′端荧光修饰,PCR产物在ABI3730XL测序仪测序,实现对标记的复筛。利用Genemapper 4.0软件对测序结果进行统计,Data Formater 2.1软件将统计得到的bp数据转换成Power Marker v3.25软件所需要的数据格式。对筛选出的引物进行多态性分析,选择多态信息含量(PIC)大于0.45的荧光SSR引物作为79份种质材料的核心引物。以Nei’s为参数,利用NTSYSpc 2.1软件中的UPDM聚类方法分析品种间的遗传多样性。利用基于贝叶斯模型的Structure v2.3.4软件解析79份种质的居群遗传结构。【结果】基于79份种质,利用聚丙烯酰胺凝胶电泳对覆盖全基因的SSR标记进行初筛,共筛选出207对多态性良好的引物;利用SSR荧光标记毛细管电泳技术对207对引物进行复筛,最终筛选出26对核心引物,利用其中5对核心引物可将79份品种完全区分开。26对SSR核心引物在79份桃种质中共扩增出174种多态性基因型,每对引物扩增出的基因型为4—13种,平均每对引物扩增出6.69个基因型,每对引物的多态信息含量PIC在0.45以上。基于207对SSR引物在79份种质中扩增出的位点信息,构建了79份种质的遗传关系图谱和居群遗传结构图。207对引物从遗传距离上将79份种质划分为7组,从居群结构上分为2组。79份品种遗传多样性较高,部分品种聚类结果与系谱图相符。【结论】构建了79份材料的聚类分析图和居群遗传结构图,在一定程度上揭示了79份材料的亲缘关系。由于桃复杂的遗传背景,不能依据单一特性对品种间亲缘关系进行判定。本研究筛选出的26对核心引物可用于全基因组范围内连锁性状的鉴定、桃种质资源鉴定、新品种鉴定及保护、分子标记辅助育种体系构建。

关键词: 桃, SSR荧光标记, 遗传多样性, 标记筛选

Abstract:

【Objective】The aim of this study was to perform genotyping and genetic diversity analysis of 79 germplasms taken from National Fruit Germplasm Nanjing Peach Resource Nursery by using SSR fluorescent-labeled capillary electrophoresis technology, and to screen primers with high polymorphism, which could be used for identification of peach varieties and genetic relationship analysis and also be used for the establishment of molecular marker-assisted selection system.【Method】De novo sequencing was performed on the female parent Zhongyou No. 4, and SSR markers were developed in the whole genome with a physical distance of 1 Mb as the unit. 79 peach varieties in Nanjing were used as materials for PCR amplification, and the amplified products were detected by polyacrylamide gel electrophoresis and screened for markers with clear target bands and abundant polymorphisms. The 5' end of the screened markers were fluorescently modified, and the PCR products were sequenced on the ABI3730XL sequencer to realize the rescreening of the markers. Genmapper 4.0 software was used to count the sequencing results, and Data Formater 2.1 software converted the bp data obtained by statistics into the data format required by Power Marker v3.25. The selected primers were analyzed for polymorphism, and the fluorescent SSR primers with polymorphism information content (PIC) greater than 0.45 were selected as the core primers of 79 germplasm materials. Using Nei's as a parameter, the UPDM clustering method in NTSYSpc 2.1 software was used to analyze the genetic diversity among cultivars. The Structure v2.3.4 software based on Bayesian model was used to analyze the population genetic structure of 79 accessions. 【Result】Based on 79 germplasms, the SSR markers covering the whole gene were screened by polyacrylamide gel electrophoresis, and 207 pairs of primers with good polymorphism were screened out. The 207 pairs of primers were re-screened by SSR fluorescent-labeled capillary electrophoresis technology, and 26 pairs of core primers were finally screened, of which 5 pairs of core primers could completely distinguish 79 varieties. 26 pairs of SSR core primers amplified a total of 174 polymorphic genotypes in 79 peach germplasms, and each pair of primers were amplified 4-13 genotypes, with an average of 6.69 genotypes amplified per pair of primers. The polymorphism information content PIC of each pair of primers was above 0.45. Based on the locus information amplified by 207 pairs of SSR primers in 79 accessions, the genetic relationship map and population genetic structure map of 79 accessions were constructed. 207 pairs of primers divided 79 accessions into 7 groups based on genetic distance and 2 groups based on population structure. The genetic diversity of 79 cultivars was high, and the clustering results of some cultivars were consistent with the pedigree. 【Conclusion】The cluster analysis map and population genetic structure map of 79 materials were constructed, revealing the genetic relationship of 79 materials to a certain extent. The overall results showed that due to the complex genetic background of peach, the cultivars according to a single characteristic or determine the relationship between cultivars could not be classified. The screened 26 pairs of core primers could be used for genome-wide identification of linked traits, identification of peach germplasm resources, identification and protection of new varieties, and construction of molecular marker-assisted breeding systems.

Key words: peach, fluorescent labeling SSR, capillary electrophoresis, variety identification