The development of a high-density genetic map significantly improves the quality of reference genome assemblies for rose

被引:0
|
作者
Shubin Li
Guoqian Yang
Shuhua Yang
Jeremy Just
Huijun Yan
Ningning Zhou
Hongying Jian
Qigang Wang
Min Chen
Xianqin Qiu
Hao Zhang
Xue Dong
Xiaodong Jiang
Yibo Sun
Micai Zhong
Mohammed Bendahmane
Guogui Ning
Hong Ge
Jin-Yong Hu
Kaixue Tang
机构
[1] Flower Research Institute,National Engineering Research Center For Ornamental Horticulture
[2] Yunnan Academy of Agricultural Sciences; Yunnan Flower Breeding Key Lab,CAS Key Laboratory for Plant Diversity and Biogeography of East Asia
[3] Kunming Institute of Botany,Institute of Vegetables and Flowers
[4] Chinese Academy of Sciences,Laboratoire Reproduction et Développement des Plantes
[5] Chinese Academy of Agricultural Sciences,Key laboratory of Horticultural Plant Biology
[6] Univ Lyon,Kunming College of Life Sciences
[7] ENS de Lyon,Germplasm Bank of Wild Species
[8] UCB Lyon 1,undefined
[9] CNRS,undefined
[10] INRA,undefined
[11] Ministry of Education,undefined
[12] College of Horticulture & Forestry Sciences,undefined
[13] Huazhong Agricultural University,undefined
[14] University of Chinese Academy of Sciences,undefined
[15] Kunming Institute of Botany,undefined
[16] Chinese Academy of Sciences,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Roses are important woody plants featuring a set of important traits that cannot be investigated in traditional model plants. Here, we used the restriction-site associated DNA sequencing (RAD-seq) technology to develop a high-density linkage map of the backcross progeny (BC1F1) between Rosa chinensis ‘Old Blush’ (OB) and R. wichuraiana ‘Basyes’ Thornless’ (BT). We obtained 643.63 million pair-end reads and identified 139,834 polymorphic tags that were distributed uniformly in the rose genome. 2,213 reliable markers were assigned to seven linkage groups (LGs). The length of the genetic map was 1,027.425 cM in total with a mean distance of 0.96 cM per marker locus. This new linkage map allowed anchoring an extra of 1.21/23.14 Mb (12.18/44.52%) of the unassembled OB scaffolds to the seven reference pseudo-chromosomes, thus significantly improved the quality of assembly of OB reference genome. We demonstrate that, while this new linkage map shares high collinearity level with strawberry genome, it also features two chromosomal rearrangements, indicating its usefulness as a resource for understanding the evolutionary scenario among Rosaceae genomes. Together with the newly released genome sequences for OB, this linkage map will facilitate the identification of genetic components underpinning key agricultural and biological traits, hence should greatly advance the studies and breeding efforts of rose.
引用
收藏
相关论文
共 50 条
  • [21] A high-density genetic map reveals variation in recombination rate across the genome of Daphnia magna
    Dukic, Marinela
    Berner, Daniel
    Roesti, Marius
    Haag, Christoph R.
    Ebert, Dieter
    BMC GENETICS, 2016, 17
  • [22] High-density genetic map and genome-wide association studies of aesthetic traits in Phalaenopsis orchids
    Chia-Chi Hsu
    Shu-Yun Chen
    Shang-Yi Chiu
    Cheng-Yuan Lai
    Pei-Han Lai
    Tariq Shehzad
    Wen-Luan Wu
    Wen-Huei Chen
    Andrew H. Paterson
    Hong-Hwa Chen
    Scientific Reports, 12
  • [23] A High-Density Simple Sequence Repeat and Single Nucleotide Polymorphism Genetic Map of the Tetraploid Cotton Genome
    Yu, John Z.
    Kohel, Russell J.
    Fang, David D.
    Cho, Jaemin
    Van Deynze, Allen
    Ulloa, Mauricio
    Hoffman, Steven M.
    Pepper, Alan E.
    Stelly, David M.
    Jenkins, Johnie N.
    Saha, Sukumar
    Kumpatla, Siva P.
    Shah, Manali R.
    Hugie, William V.
    Percy, Richard G.
    G3-GENES GENOMES GENETICS, 2012, 2 (01): : 43 - 58
  • [24] A high-density genetic linkage map of Aegilops tauschii, the D-genome progenitor of bread wheat
    Boyko, EV
    Gill, KS
    Mickelson-Young, L
    Nasuda, S
    Raupp, WJ
    Ziegle, JN
    Singh, S
    Hassawi, DS
    Fritz, AK
    Namuth, D
    Lapitan, NLV
    Gill, BS
    THEORETICAL AND APPLIED GENETICS, 1999, 99 (1-2) : 16 - 26
  • [25] A high-density genetic linkage map of Aegilops tauschii, the D-genome progenitor of bread wheat
    E. V. Boyko
    K. S. Gill
    L. Mickelson-Young
    S. Nasuda
    W. J. Raupp
    J. N. Ziegle
    S. Singh
    D. S. Hassawi
    A. K. Fritz
    D. Namuth
    N. L. V. Lapitan
    B. S. Gill
    Theoretical and Applied Genetics, 1999, 99 : 16 - 26
  • [26] High-density genetic map and genome-wide association studies of aesthetic traits in Phalaenopsis orchids
    Hsu, Chia-Chi
    Chen, Shu-Yun
    Chiu, Shang-Yi
    Lai, Cheng-Yuan
    Lai, Pei-Han
    Shehzad, Tariq
    Wu, Wen-Luan
    Chen, Wen-Huei
    Paterson, Andrew H.
    Chen, Hong-Hwa
    SCIENTIFIC REPORTS, 2022, 12 (01)
  • [27] A high-density soybean genetic map based on AFLP markers
    Keim, P
    Schupp, JM
    Travis, SE
    Clayton, K
    Zhu, T
    Shi, LA
    Ferreira, A
    Webb, DM
    CROP SCIENCE, 1997, 37 (02) : 537 - 543
  • [28] A high-density molecular genetic map around the weaver locus
    Millonig, JH
    Millen, KJ
    Hatten, ME
    MAMMALIAN GENOME, 1996, 7 (08) : 616 - 618
  • [29] Enrichment of a papaya high-density genetic map with AFLP markers
    Blas, Andrea L.
    Yu, Qingyi
    Chen, Cuixia
    Veatch, Olivia
    Moore, Paul H.
    Paull, Robert E.
    Ming, Ray
    GENOME, 2009, 52 (08) : 716 - 725
  • [30] Construction of a high-density reference linkage map of tea (Camellia sinensis)
    Taniguchi, Fumiya
    Furukawa, Kazumi
    Ota-Metoku, Sakura
    Yamaguchi, Nobuo
    Ujihara, Tomomi
    Kono, Izumi
    Fukuoka, Hiroyuki
    Tanaka, Junichi
    BREEDING SCIENCE, 2012, 62 (03) : 263 - 273