数字农科院2.0

Construction of a resequencing-based high-density genetic map for grape using an interspecific population (Vitis amurensis x Vitis vinifera)

文献类型: 外文期刊

作者: Shi, Guangli;Sun, Dan;Wang, Zhenxing;Liu, Xiaoying;Guo, Jianhui;Zhang, Susu;Zhao, Ying;Ai, Jun

作者机构:

关键词: Bin markers;Grape;High-density genetic map;Quantitative trait loci;Whole genome resequencing

期刊名称: HORTICULTURE ENVIRONMENT AND BIOTECHNOLOGY

ISSN: 2211-3452

年卷期: 2022 年

页码:

收录情况: SCIE(2022版)

摘要: A high-density genetic map is a prerequisite for marker-assisted selection of crop species. Here, we developed a high-density genetic map of Vitis using 92 F1 progeny derived from the cross between two wine grape cultivars, 'Shuanghong' and 'Italian Riesling'. Whole genome resequencing (WGS) technology was used to generate SNP markers for the map. The map consisted of 1351 recombination bin markers (210,873 SNPs), distributed on 19 linkage groups (LGs), with an average distance of 0.65 cM between adjacent bin markers and a map distance of 860.46 cM. The high levels of uniform coverage and collinearity between the 19 LGs and the grape reference genome indicated that the map is of high quality and can serve as a powerful platform for evaluating grapevines and deciphering the genetic mechanism of important economic and agronomic traits. Our findings will facilitate the process of mapping quantitative trait loci (QTL) that control important horticultural and economic traits of grape.

分类号:

  • 相关文献

[1]Introgression from Gossypium hirsutum is a driver for population divergence and genetic diversity in Gossypium barbadense. Wang, Pengpeng,Dong, Na,Wang, Maojun,Sun, Gaofei,Jia, Yinhua,Geng, Xiaoli,Liu, Min,Wang, Weipeng,Pan, Zhaoe,Yang, Qiuyue,Li, Hongge,Wei, Chunyan,Wang, Liru,Zheng, Hongkun,He, Shoupu,Zhang, Xianlong,Wang, Qinglian,Du, Xiongming. 2022

[2]Whole Genome Resequencing Reveals Genetic Diversity and Selection Signatures of Ethiopian Indigenous Cattle Adapted to Local Environments. Endashaw Terefe,Gurja Belay,Abdulfatai Tijjani,Jianlin Han,Olivier Hanotte. 2023

[3]Whole genome resequencing-based analysis of plateau adaptation in Meiren yak (Bos grunniens). Wang, Tong,Ma, Xiaoming,Ma, Chaofan,Wu, Xiaoyun,Zhaxi, Ta,Yin, Lixin,Li, Weiguo,Li, Yufei,Liang, Chunnian,Yan, Ping. 2024

[4]Population genetic structure of Hymenopellis radicata germplasm resources based on genome re-sequencing. Luping Cao,Delong Yang,Qin Zhang,Yanqing Ni,Wensheng Li,Rencai Feng,Wen Mu,Xu Zhao. 2024

[5]Genetic structure analysis of yak breeds and their response to adaptive evolution. Qingbo Zheng,Xiaoyun Wu,Xiaoming Ma,Xuelan Zhou,Tong Wang,Chaofan Ma,Minghao Zhang,Min Chu,Xian Guo,Chunnian Liang,Pengjia Bao,Ping Yan. 2024

[6]Selection signatures of wool color in Gangba sheep revealed by genome-wide SNP discovery. Wentao Zhang,Cuicheng Luosang,Chao Yuan,Tingting Guo,Caihong Wei,Jianbin Liu,Zengkui Lu. 2024

[7]Construction of a high-density genetic map based on large-scale markers developed by specific length amplified fragment sequencing (SLAF-seq) and its application to QTL analysis for isoflavone content in Glycine max. Li, Bin,Tian, Ling,Zhang, Jingying,Han, Fenxia,Yan, Shurong,Wang, Lianzheng,Sun, Junming,Huang, Long,Zheng, Hongkun. 2014

[8]High-density linkage map construction and QTL analysis for earliness-related traits in Gossypium hirsutum L. Xiaoyun Jia,Chaoyou Pang,Hengling Wei,Hantao Wang,Qifeng Ma,Jilong Yang,Shuaishuai Cheng,Junji Su,Shuli Fan,Meizhen Song,Nusireti Wusiman,Shuxun Yu. 2016

[9]Molecular mapping for fruit-related traits, and joint identification of candidate genes and selective sweeps for seed size in melon. Hong Zhang,Xuejun Zhang,Meihua Li,Yong Yang,Zhiqiang Li,Yuhui Xu,Haojie Wang,Dengming Wang,Yongbing Zhang,Huaisong Wang,Qiushi Fu,Jing Zheng,Hongping Yi. 2022

[10]Mapping of a major QTL controlling plant height using a high-density genetic map and QTL-seq methods based on whole-genome resequencing in Brassica napus. Zhixue Dong,Muhammad Khorshed Alam,Meili Xie,Li Yang,Jie Liu,M. M.U. Helal,Junyan Huang,Xiaohui Cheng,Yueying Liu,Chaobo Tong,Chuanji Zhao,Shengyi Liu. 2021

[11]Quantitative Trait Locus Mapping for Plant Height and Branch Number in CCRI70 Recombinant Inbred Line Population of Upland Cotton (Gossypium hirsutum). Gangling Li,Jincan Che,Juwu Gong,Li Duan,Zhen Zhang,Xiao Jiang,Peng Xu,Senmiao Fan,Wankui Gong,Yuzhen Shi,Aiying Liu,Junwen Li,Pengtao Li,Jingtao Pan,Xiaoying Deng,Youlu Yuan,Haihong Shang. 2024

[12]High-density genetic map construction and QTL analysis of the first flower node in kenaf using RAD-seq. Hui Li,Anguo Chen,Huijuan Tang,Mingbao Luan. 2024

[13]Development of recombinant inbred lines and QTL analysis of plant height and fruit shape-related traits in Cucurbita pepo L.. Ying Duan,Kailiang Bo,Qin Shu,Meng Zhang,Yuzi Shi,Yiqun Weng,Changlin Wang. 2025

[14]CIELAB Coordinates in Response to Berry Skin Anthocyanins and Their Composition in Vitis. Liang, Zhenchang,Li, Shaohua,Liang, Zhenchang,Fan, Peige,Wu, Benhong,Wang, Lijun,Sang, Min,Yang, Shuhua. 2011

[15]Parameter optimization in soluble solid content prediction of entire bunches of grape based on near infrared spectroscopic technique. Yu, Jing,Sun, Xiangyu,Huang, Weidong,Wang, Hui.

[16]Effects of different photorespiration inhibitors on photosynthetic characteristics and berry quality of Vitis amurensis Rupr.. Liu, Liyuan,Wang, Shan,Li, Hua,Wang, Zhenxing,Zhao, Xianhua,Nan, Lijun,Nan, Hailong. 2015

[17]Changes of flavonol synthase and flavonol contents during grape berry development. Fang, Fang,Huang, Wei-Dong,Tang, Ke. 2013

[18]Transcriptome analyses of seed development in grape hybrids reveals a possible mechanism influencing seed size. Wang, Li,Hu, Xiaoyan,Jiao, Chen,Li, Zhi,Yan, Xiaoxiao,Wang, Yuejin,Wang, Xiping,Wang, Li,Hu, Xiaoyan,Li, Zhi,Yan, Xiaoxiao,Wang, Yuejin,Wang, Xiping,Jiao, Chen,Fei, Zhangjun,Liu, Chonghuai. 2016

[19]Identification of grapevine rootstock cultivars using expressed sequence tag-simple sequence repeats. Fan, X. C.,Liu, C. H.,Chu, J. Q.,Sun, X.,Fang, J. G.,Chu, J. Q.,Sun, X.,Fang, J. G.. 2014

[20]Residue Determination of cis-Epoxiconazole Enantiomers in Fruit and Tea by Ultra Performance Convergence Chromatography Combined with Quadrupole Time-of-Flight Mass Spectrometry. Zhao Yue-Chen,Cui Xin-Yi,Zhang Xin-Zhong,Luo Feng-Jian,Zhou Li,Chen Zong-Mao. 2016

作者其他论文 更多>>