Investigation and genetic mapping of a Glomerella leaf spot resistance locus in apple

被引:15
作者
Liu, Yuanxia [1 ,2 ]
Lan, Jinhao [3 ]
Wang, Caihong [2 ]
Li, Baohua [3 ]
Zhu, Jun [2 ]
Liu, Chunxiao [2 ]
Dai, Hongyi [2 ]
机构
[1] Hunan Agr Univ, Coll Hort & Landscaping, Changsha 410128, Hunan, Peoples R China
[2] Qingdao Agr Univ, Coll Hort, Qingdao 266109, Peoples R China
[3] Qingdao Agr Univ, Coll Crop Protect & Agron, Qingdao 266109, Peoples R China
关键词
apple (Malusxdomestica); Glomerella leaf spot; SSR marker; first mapping; LINKAGE MAP; SSR; IDENTIFICATION; MARKERS; SCAB; CULTIVARS; GENOME; RFLP; AFLP; RAPD;
D O I
10.1111/pbr.12399
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Apple Glomerella leaf spot (GLS) is a severe fungal disease that damages apple leaves during the summer in China. Breeding new apple varieties that are resistant to the disease is considered the best way of controlling GLS. Fine mapping and tightly linked marker are critically essential for the preselection of resistant seedlings. In this study, a population of 207F(1) individuals derived from a cross between Golden Delicious' and Fuji' was used to construct a fine simple sequence repeat (SSR)-based genetic linkage map. The position of R-gls, a locus responsible for resistance to GLS, was identified on apple linkage group (LG) 15 using SSR markers CH05g05 and CH01d08, which was adapted from a published set of 300 SSR markers that were developed using the bulked segregant analysis (BSA) method. These two SSR markers flanked the gene, and its recombination rate was 8.7% and 23.2%, respectively. A total of 276 newly developed SSR markers around the target region and designed from the genome apple assembly contig of LG15 were screened. Only nine of these were determined to be linked to the R-gls locus. Thus, a total of 11 SSR markers were in linkage with R-gls,R- and mapped at distances ranging from 0.5 to 33.8cM. The closest marker to the R-gls locus was S0405127, which showed a genetic distance of approximately 0.5cM. The first mapping of the gene R-gls was constructed, and the locations of the 11 effectiveprimers in the Golden Delicious' apple genome sequence were anchored. This result facilitates better understanding of the molecular mechanisms underlying the trait of resistance to GLS and could be used in improving the breeding efficiency of GLS-resistant apple varieties.
引用
收藏
页码:119 / 125
页数:7
相关论文
共 41 条
  • [1] Identification, isolation and pyramiding of quantitative trait loci for rice breeding
    Ashikari, Motoyuki
    Matsuoka, Makoto
    [J]. TRENDS IN PLANT SCIENCE, 2006, 11 (07) : 344 - 350
  • [2] Genetic and physical characterisation of the locus controlling columnar habit in apple (Malus x domestica Borkh.)
    Baldi, Paolo
    Wolters, Pieter Jacobus
    Komjanc, Matteo
    Viola, Roberto
    Velasco, Riccardo
    Salvi, Silvio
    [J]. MOLECULAR BREEDING, 2013, 31 (02) : 429 - 440
  • [3] Becker W.F., 2000, Agropecuaria Catarinense, V13, P14
  • [4] Genome mapping of three major resistance genes to woolly apple aphid (Eriosoma lanigerum Hausm.)
    Bus, V. G. M.
    Chagne, D.
    Bassett, H. C. M.
    Bowatte, D.
    Calenge, F.
    Celton, J. -M.
    Durel, C. -E.
    Malone, M. T.
    Patocchi, A.
    Ranatunga, A. C.
    Rikkerink, E. H. A.
    Tustin, D. S.
    Zhou, J.
    Gardiner, S. E.
    [J]. TREE GENETICS & GENOMES, 2008, 4 (02) : 223 - 236
  • [5] Genome mapping of an apple scab, a powdery mildew and a woolly apple aphid resistance gene from open-pollinated Mildew Immune Selection
    Bus, Vincent G. M.
    Bassett, Heather C. M.
    Bowatte, Deepa
    Chagne, David
    Ranatunga, Chandra A.
    Ulluwishewa, Dulantha
    Wiedow, Claudia
    Gardiner, Susan E.
    [J]. TREE GENETICS & GENOMES, 2010, 6 (03) : 477 - 487
  • [6] Bus Vincent G. M., 2009, V6, P563, DOI 10.1007/978-0-387-77491-6_27
  • [7] CAMILO AP, 2002, Epagri. Cultivares: descricao e comportamento no sul do Brasil. A cultura da macieira, P113
  • [8] Construction of a High-Density Simple Sequence Repeat Consensus Genetic Map for Pear (Pyrus spp.)
    Chen, Hui
    Song, Yue
    Li, Lei-Ting
    Khan, M. Awais
    Li, Xiu-Gen
    Korban, Schuyler S.
    Wu, Jun
    Zhang, Shao-Ling
    [J]. PLANT MOLECULAR BIOLOGY REPORTER, 2015, 33 (02) : 316 - 325
  • [9] Crusius Luciano U., 2002, Fitopatologia Brasileira, V27, P65, DOI 10.1590/S0100-41582002000100010
  • [10] Design and testing of a plant-specific PCR primer for ecological and evolutionary studies
    Cullings, K. W.
    [J]. MOLECULAR ECOLOGY, 1992, 1 (04) : 233 - 240