Construction of a high-density genetic map and QTLs mapping for sugars and acids in grape berries

被引:79
作者
Chen, Jie [1 ,2 ,3 ]
Wang, Nian [4 ]
Fang, Lin-Chuan [4 ]
Liang, Zhen-Chang [1 ,2 ]
Li, Shao-Hua [1 ,2 ]
Wu, Ben-Hong [1 ,2 ]
机构
[1] Chinese Acad Sci, Inst Bot, Beijing Key Lab Grape Sci & Enol, Beijing 100093, Peoples R China
[2] Chinese Acad Sci, Inst Bot, CAS Key Lab Plant Resources, Beijing 100093, Peoples R China
[3] Univ Chinese Acad Sci, Beijing 100049, Peoples R China
[4] Chinese Acad Sci, Wuhan Bot Garden, Key Lab Plant Germplasm Enhancement & Special Agr, Wuhan 430074, Peoples R China
来源
BMC PLANT BIOLOGY | 2015年 / 15卷
基金
中国国家自然科学基金;
关键词
Berry quality; Genetic map; Next-generation sequencing (NGS); QTL analysis; Quantitative trait loci; Restriction-site associated DNA (RAD); Vitis; VITIS-VINIFERA L; POWDERY MILDEW RESISTANCE; LINKAGE MAP; PIERCES-DISEASE; FRUIT-QUALITY; ADVANCED BACKCROSS; ACTIVATED CITRATE; DE-NOVO; TRAITS; IDENTIFICATION;
D O I
10.1186/s12870-015-0428-2
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Background: QTLs controlling individual sugars and acids (fructose, glucose, malic acid and tartaric acid) in grape berries have not yet been identified. The present study aimed to construct a high-density, high-quality genetic map of a winemaking grape cross with a complex parentage (V. vinifera x V. amurensis) x ((V. labrusca x V. riparia) x V. vinifera), using next-generation restriction site-associated DNA sequencing, and then to identify loci related to phenotypic variability over three years. Results: In total, 1 826 SNP-based markers were developed. Of these, 621 markers were assembled into 19 linkage groups (LGs) for the maternal map, 696 for the paternal map, and 1 254 for the integrated map. Markers showed good linear agreement on most chromosomes between our genetic maps and the previously published V. vinifera reference sequence. However marker order was different in some chromosome regions, indicating both conservation and variation within the genome. Despite the identification of a range of QTLs controlling the traits of interest, these QTLs explained a relatively small percentage of the observed phenotypic variance. Although they exhibited a large degree of instability from year to year, QTLs were identified for all traits but tartaric acid and titratable acidity in the three years of the study; however only the QTLs for malic acid and beta ratio (tartaric acid-to-malic acid ratio) were stable in two years. QTLs related to sugars were located within ten LGs (01, 02, 03, 04, 07, 09, 11, 14, 17, 18), and those related to acids within three LGs (06, 13, 18). Overlapping QTLs in LG14 were observed for fructose, glucose and total sugar. Malic acid, total acid and beta ratio each had several QTLs in LG18, and malic acid also had a QTL in LG06. A set of 10 genes underlying these QTLs may be involved in determining the malic acid content of berries. Conclusion: The genetic map constructed in this study is potentially a high-density, high-quality map, which could be used for QTL detection, genome comparison, and sequence assembly. It may also serve to broaden our understanding of the grape genome.
引用
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页数:14
相关论文
共 93 条
  • [1] Mapping 245 SSR markers on the Vitis vinifera genome:: a tool for grape genetics
    Adam-Blondon, AF
    Roux, C
    Claux, D
    Butterlin, G
    Merdinoglu, D
    This, P
    [J]. THEORETICAL AND APPLIED GENETICS, 2004, 109 (05) : 1017 - 1027
  • [2] AMERINE M. A., 1965, AMER J ENOL VITICULT, V16, P29
  • [3] Grapevine powdery mildew resistance and susceptibility loci identified on a high-resolution SNP map
    Barba, Paola
    Cadle-Davidson, Lance
    Harriman, James
    Glaubitz, Jeffrey C.
    Brooks, Siraprapa
    Hyma, Katie
    Reisch, Bruce
    [J]. THEORETICAL AND APPLIED GENETICS, 2014, 127 (01) : 73 - 84
  • [4] Genetic and physical mapping of the grapevine powdery mildew resistance gene, Run1, using a bacterial artificial chromosome library
    Barker, CL
    Donald, T
    Pauquet, J
    Ratnaparkhe, MB
    Bouquet, A
    Adam-Blondon, AF
    Thomas, MR
    Dry, I
    [J]. THEORETICAL AND APPLIED GENETICS, 2005, 111 (02) : 370 - 377
  • [5] Bisson L, 2001, PRACT WINERY VINEYAR, V23, p[32, 34, 36, 38, 40, 42]
  • [6] A genetic analysis of seed and berry weight in grapevine
    Cabezas, J. A.
    Cervera, M. T.
    Ruiz-Garcia, L.
    Carreno, J.
    Martinez-Zapater, J. M.
    [J]. GENOME, 2006, 49 (12) : 1572 - 1585
  • [7] Stacks: Building and Genotyping Loci De Novo From Short-Read Sequences
    Catchen, Julian M.
    Amores, Angel
    Hohenlohe, Paul
    Cresko, William
    Postlethwait, John H.
    [J]. G3-GENES GENOMES GENETICS, 2011, 1 (03): : 171 - 182
  • [8] QTL analysis of fruit quality in fresh market tomato:: a few chromosome regions control the variation of sensory and instrumental traits
    Causse, M
    Saliba-Colombani, V
    Lecomte, L
    Duffé, P
    Rousselle, P
    Buret, M
    [J]. JOURNAL OF EXPERIMENTAL BOTANY, 2002, 53 (377) : 2089 - 2098
  • [9] Co-mapping studies of QTLs for fruit acidity and candidate genes of organic acid metabolism and proton transport in sweet melon (Cucumis melo L.)
    Cohen, S.
    Tzuri, G.
    Harel-Beja, R.
    Itkin, M.
    Portnoy, V.
    Sa'ar, U.
    Lev, S.
    Yeselson, L.
    Petrikov, M.
    Rogachev, I.
    Aharoni, A.
    Ophir, R.
    Tadmor, Y.
    Lewinsohn, E.
    Burger, Y.
    Katzir, N.
    Schaffer, A. A.
    [J]. THEORETICAL AND APPLIED GENETICS, 2012, 125 (02) : 343 - 353
  • [10] The powdery mildew resistance gene REN1 co-segregates with an NBS-LRR gene cluster in two Central Asian grapevines
    Coleman, Courtney
    Copetti, Dario
    Cipriani, Guido
    Hoffmann, Sarolta
    Kozma, Pal
    Kovacs, Laszlo
    Morgante, Michele
    Testolin, Raffaele
    Di Gaspero, Gabriele
    [J]. BMC GENETICS, 2009, 10