Scientia Agricultura Sinica ›› 2013, Vol. 46 ›› Issue (23): 5003-5011.doi: 10.3864/j.issn.0578-1752.2013.23.017

• HORTICULTURE • Previous Articles     Next Articles

Analysis of the Genetic Relationship of the Main Cultivars of Ping’ou Hybrid Hazelnut (C. heterophylla×C. avellana) by FISH-AFLP Markers

 MA  Qing-Hua-1, CHEN  Xin-2, ZHAO  Tian-Tian-1, LIU  Qing-Zhong-2, WANG  Gui-Xi-1   

  1. 1、Research Institute of Forestry, Chinese Academy of Forestry/Key Laboratory of Forestry Silviculture of State Forestry Administration/State Key Laboratory of Tree Genetics and Breeding, Beijing 100091;
    2、Shandong Institute of Pomology/Shandong Provincial Key Laboratory of Fruit Tree Biotechnology Breeding, Tai’an 271000, Shandong
  • Received:2013-05-28 Online:2013-12-01 Published:2013-08-21

Abstract: 【Objective】The objective of this study is to establish FISH-AFLP analysis system for Ping’ou hybrid hazelnut and analyze the genetic relationship of the main cultivars.【Method】Ten main cultivars, such as Dawei, were selected as materials. High-quality genomic DNA was extracted with improved CTAB method, and the purified DNA samples were digested with PstⅠ/MseⅠ. After ligation reaction, the samples were used to perform FISH-AFLP detection. The information of all bands was converted into “0-1” matrix. NTSYS pc 2.11F and Popgene 1.32 software were used to conduct the data analysis and plotting.【Result】The results showed that: 15 PstⅠ/MseⅠ primer pairs were selected from 64 combinations with high polymorphism, strong signals and clear bands. A total of 1 739 bands were obtained. The average percentage of polymorphic bands was 97.94%. The similarity coefficient of the main cultivars varied from 0.7556 to 0.8543. All the samples were divided into 4 groups when the threshold value was 0.8398. Each in cutivars of Yuzhui (84-310), Liaozhen No. 4 (85-41) and Ping’ou 69 (84-69) formed an independent group alone and the others constituted the fourth group. The effective number of alleles, Nei’s gene diversity and Shannon’s information index of the main cultivars were 1.3921, 0.2482 and 0.3957, respectively, indicating high genetic diversity among Ping’ou hybrid hazelnut. The unique bands obtained in the experiments could be used in the rapid identification of the main cultivars of Ping’ou hybrid hazelnut. 【Conclusion】 Due to the complex selecting group, Ping’ou hybrid hazelnut is a high polymorphic population and the genetic relationships of the main cultivars are complex. The FISH-AFLP analysis system, PstⅠ/MseⅠprimer pairs and all the genetic parameters obtained in this research can offer reference for the relative researches in Corylus.

Key words: Ping’ou hybrid hazelnut (C. heterophylla×C. avellana) , FISH-AFLP markers , fingerprinting , genetic relationship , genetic diversity

[1]张宇和, 柳鎏, 梁维坚, 张育明. 中国果树志: 板栗榛子卷. 北京: 中国林业出版社, 2005.

Zhang Y H, Liu L, Liang W J, Zhang Y M. China Fruit’s Monograph: Chestnut and Hazelnut Volume. Beijing: China Forestry Publishing Press, 2005. (in Chinese)

[2]梁维坚, 解明, 董德芬, 姜忠官. 榛子新品种选育研究. 中国果树, 2000(2): 4-6.

Liang W J, Xie M, Dong D F, Jiang Z G. Research on new cultivar selection of hazelnut. China Fruit, 2000(2): 4-6. (in Chinese)

[3]张玲, 翟明普, 解明, 郑金利. 榛子新品种辽榛1号. 园艺学报, 2007, 34(6): 1593.

Zhang L, Zhai M P, Xie M, Zheng J L. A new cultivar of filbert Liaozhen 1. Acta Horticulturae Sinica, 2007, 34(6): 1593. (in Chinese)

[4]张玲, 翟明普, 解明, 郑金利. 榛子新品种辽榛2号. 园艺学报, 2008, 35(1): 151.

Zhang L, Zhai M P, Xie M, Zheng J L. A new cultivar of filbert Liaozhen 2. Acta Horticulturae Sinica, 2008, 35(1): 151. (in Chinese)

[5]郑金利, 解明, 梁维坚, 姜忠官, 王道明. 榛子新品种辽榛3号的选育. 中国果树, 2007(4): 5-7.

Zheng J L, Xie M, Liang W J, Jiang Z G, Wang D M. Research on new hazelnut cultivar selection of Liaozhen 3. China Fruit, 2007(4): 5-7. (in Chinese)

[6]郑金利, 解明, 梁维坚, 姜忠官, 王道明. 榛子新品种辽榛4号的选育. 中国果树, 2008(6): 6-8.

Zheng J L, Xie M, Liang W J, Jiang Z G, Wang D M. Research on new hazelnut cultivar selection of Liaozhen 4. China Fruit, 2008(6): 6-8. (in Chinese)

[7]段鹏勇, 孙冬伟, 邬昕彤, 邬俊财. 榛子抗寒新品种辽榛5号的选育. 中国果树, 2009(5): 3-6.

Duan P Y, Sun D W, Wu X T, Wu J C. Research on the selection of new cold hardiness hazelnut cultivar (Liaozhen 5). China Fruit, 2009(5): 3-6. (in Chinese)

[8]潘洪泽, 吴泽南, 段鹏勇, 聂媛, 董锐, 程瑶. 杂交榛子新品种辽榛6号的选育. 林业实用技术, 2010(1): 20-22.

Pan H Z, Wu Z N, Duan P Y, Nie Y, Dong R, Cheng Y. Research on new hazelnut cultivar selection of Liaozhen 6. Practical Forestry Technology, 2010(1): 20-22. (in Chinese)

[9]梁维坚, 许万英. 欧洲榛子与平榛种间杂交杂种后代某些遗传倾向的分析//中国园艺学会. 中国园艺学会成立六十周年纪念暨第六届年会论文集(I果树). 北京: 万国学术出版社, 1989: 254-257.

Liang W J, Xu W Y. Research on genetic predisposition of the hybrid seedlings of Corylus heterophylla Fisch. × Corylus avellana L. //Chinese Society of Horticulture. The Sixtieth Anniversary of Chinese Society of Horticulturecum Sixth Annual Meeting Proceedings (I Pomology). Beijing: IWC Academic Press, 1989: 254-257. (in Chinese)

[10]冯斌, 张希踔, 解明, 张开春. 榛子种质资源遗传多样性的RAPD分析. 辽宁师范大学学报: 自然科学版, 2007, 30(2): 216-219.

Feng B, Zhang X C, Xie M, Zhang K C. Analysis of genetic diversity in Corylus by RAPD markers. Journal of Liaoning Normal University: Natural Science Edition, 2007, 30(2): 216-219. (in Chinese)

[11]刘振盼, 解明, 于冬梅, 郑金利, 高荣海, 戴永利. 8个榛子优良品种的分子鉴别. 辽宁林业科技, 2011(6): 14-16.

Liu Z P, Xie M, Yu D M, Zheng J L, Gao R H, Dai Y L. Identification of eight elite hazel cultivars by DNA fingerprints. Journal of Liaoning Forestry Science and Technology, 2011(6): 14-16. (in Chinese)

[12]Vos P, Hogers R, Bleeker M, Reijans M, van de Lee T, Hornes M, Frijters A, Pot J, Peleman J, Kuiper M, Zabeau M. AFLP: A new technique for DNA fingerprinting. Nucleic Acids Research, 1995, 23(21): 4407-4414.

[13]周延清. DNA分子标记技术在植物研究中的应用. 北京: 化学工业出版社, 2005: 114-121.

Zhou Y P. Application of DNA Molecular Markers in Plant Research. Beijing: Chemical Industry Press, 2005: 114-121. (in Chinese)

[14]Chen H L, Mehlenbacher S A, Smith D C. AFLP markers linked to eastern rilbert blight resistance from OSU 408.040 hazelnut. Journal of the American Society for Horticultural Science, 2005, 130(3): 412-417.

[15]Ferrari M, Scarascia Mugnozza G T, Gori M, Monnanni R, Buiatti M, De Pace C. DNA fingerprinting of Corylus avellana L. accessions revealed by AFLP molecular markers. Acta Horticulturae, ISHS, 2005(686): 125-134.

[16]Kafka S, Dogan Y. Genetic characterization of hazelnut (Corylus avellana L.) cultivars from Turkey using molecular markers. Horticultural Science, 2009, 44(6): 1557-1561.

[17]Hayashi M, Miyahara A, Sato S, Kato T, Yoshikawa M, Taketa M, Hayashi M, Pedrosa A, Onda R, Imaizumi-Anraku H, Bachmair A, Sandal N, Stougaard J, Murooka Y, Tabata S, Kawasaki S, Kawaguchi M, Harada K. Construction of a genetic linkage map of the model legume Lotus japonicus using an intraspecific F2 population. DNA Research, 2001(8): 301-310.

[18]Elhoumaizi M A, Devanand P S, Fang J G, Chao C C. Confirmation of ‘Medjool’ date as a landrace variety through genetic analysis of ‘Medjool’ accessions in Morocco. Journal of the American Society for Horticultural Science, 2006, 131: 403-407.

[19]Kafkas S, Özgen M, Dogan Y, Özcen B. Molecular characterization of mulberry accessions in Turkey by AFLP markers. Journal of the American Society for Horticultural Science, 2008, 133: 593-597.

[20]Kafkas S, Ercisli S, Dogan Y, Erturk Y, Haznedar A, Sekban R. Polymorphism and genetic relationships among tea genotypes from Turkey revealed by amplified fragment length polymorphism markers. Journal of the American Society for Horticultural Science, 2009, 134: 428-434.

[21]李凤霞, 王卫锋, 王鲁, 崔萌萌, 孙玉合. 烟草属植物遗传多样性和亲缘进化关系的荧光AFLP分析. 中国农业科学, 2010, 43(12): 2418-2427.

Li F X , Wang W F, Wang L, Cui M M, Sun Y H. Fluorescent AFLP analysis of genetic diversity and evolutionary relatives of nicotiana genus. Scientia Agricultura Sinica, 2010, 43(12): 2418-2427. (in Chinese)

[22]Ma Q G, Zhang J P, Pei D. Genetic analysis of walnut cultivars in China using fluorescent amplified fragment length polymorphism. Journal of the American Society for Horticultural Science, 2011, 136: 422-428.

[23]马庆国, 王滑, 潘刚, 裴东. 西藏核桃优良单株的FISH-AFLP分析. 北京林业大学学报, 2011, 33(6): 86-89.

Ma Q G, Wang H, Pan G, Pei D. FISH-AFLP analysis of walnut advanced trees in Tibet, southwestern China. Journal of Beijing Forestry University, 2011, 33(6): 86-89. (in Chinese)

[24]宁德鲁, 马庆国, 张雨, 王滑, 陆斌, 裴东. 云南省核桃品种遗传多样性的FISH-AFLP分析. 林业科学研究, 2011, 24(2): 189-193.

Ning D L, Ma Q G, Zhang Y, Wang H, Lu B, Pei D. FISH-AFLP analysis of genetic diversity on walnut cultivars in Yunnan province. Forest Research, 2011, 24(2): 189-193. (in Chinese)

[25]陈新. 榛子花芽转录组文库的Solexa测序及冷调节基因的表达谱分析[D]. 北京: 中国林业科学研究院, 2011.

Chen X. De novo characterization of hazelnut floral bud transcriptome using solexa sequencing and expression profoling analysis of cold-regulated genes [D]. Beijing: Chinese Academy of Forestry, 2011. (in Chinese)

[26]Yeh F C, Yang R C, Boyle T. POPGENE 1.31: Microsoft Windows Based Freeware for Population Genetic Analysis. Edmonton: Molecular Biology and Biotechnology Centre, University of Alberta, 1999, 8.

[27]明军, 顾万春. 紫丁香天然群体遗传多样性的AFLP分析. 园艺学报, 2006, 33(6): 1269-1274.

Ming J, Gu W C. Genetic diversity in natural populations of Syringa oblate detected by AFLP markers. Acta Horticulturae Sinica, 2006, 33(6): 1269-1274. (in Chinese)

[28]茹广欣, 袁金玲, 张朵, 郭广平. 运用AFLP技术分析筇竹种群遗传多样性. 林业科学研究, 2010, 23(6): 850-855.

Ru G X, Yuan J L, Zhang D, Guo G P. Analysis of populations genetic diversity of Qiongzhuea tumidinoda using AFLP markers. Forest Research, 2010, 23(6): 850-855. (in Chinese)

[29]沈红香, 赵天田, 宋婷婷, 姚允聪, 高俊平. 观赏海棠‘王族’自然杂交后代的遗传多样性分析. 园艺学报, 2011, 38(11): 2157-2168.

Shen H X, Zhao T T, Song T T, Yao Y C, Gao J P. Genetic diversity analysis in natural hybrid progeny of Ornamental Crabapple Malus ‘Royalty’. Acta Horticulturae Sinica, 2011, 38(11): 2157-2168. (in Chinese)

[30]艾呈祥, 沈广宁, 张凯, 田寿乐, 许林. 秦巴山区野板栗居群遗传多样性AFLP分析. 植物遗传资源学报, 2011, 12(3): 408-412.

Ai C X, Shen G N, Zhang K, Tian S L, Xu L. Genetic diversity on wild populations of chestnut in Qinba mountain area of west China with AFLP markers. Journal of Plant Genetic Resources, 2011, 12(3): 408-412. (in Chinese)

[31]张君诚, 宋育红, 朱勇, 张杭颖, 钟扬. 长柄石杉居群遗传多样性和遗传结构AFLP分析. 应用与环境生物学报, 2011, 17(1): 18-23.

Zhang J C, Song Y H, Zhu Y, Zhang H Y, Zhong Y. AFLP analysis of genetic diversity and population structure of Huperzia serrata (Thunb. ex Murray)Trev. var. longipetiolata (Spring) H. M. Chang. Chinese Journal of Applied Environment Biology, 2011, 17(1): 18-23. (in Chinese)

[32]王玉山, 邢世岩, 唐海霞, 冯殿齐. 侧柏种源遗传多样性分析. 林业科学, 2011, 47(7): 91-96.

Wang Y S, Xing S Y, Tang H X, Feng D Q. Genetic diversity of Platycladus orientalis provenances. Scientia Silvae Sinicae, 2011, 47(7): 91-96. (in Chinese)

[33]王红霞, 赵书岗, 高仪, 张志华, 玄立春. 普通核桃遗传多样性的AFLP分析. 中国农业科学, 2011, 44(7): 1434-1442.

Wang H X, Zhao S G, Gao Y, Zhang Z H, Xuan L C. Genetic diversity of Juglans regia L.cultivars revealed by AFLP analysis. Scientia Agricultura Sinica, 2011, 44(7): 1434-1442. (in Chinese)

[34]王艳梅. 利用SSR研究榛属种间亲缘关系及平榛居群遗传多样性[D]. 北京: 北京林业大学, 2008.

Wang Y M. Study on the phylogentic relationship of Corylus species and genetic diversity of C. heterophylla populations by SSR[D]. Beijing: Beijing Foresty University, 2008. (in Chinese)

[35]榛子研究室. 榛子新品种选育研究报告(1979-1998). 辽宁省经济林研究所, 1999: 6.

Hazelnut Research Bureau. Research report of hazelnut new cultivars breeding (1979-1998). Economic Forestry Research Institute of Liaoning Province, 1999: 6. (in Chinese)

[36]马庆华, 王贵禧, 梁维坚, 梁丽松, 赵天田. 我国榛属植物种质资源的研究、利用与创新. 果树学报, 2013(1): 159-164.

Ma Q H, Wang G X, Liang W J, Liang L S, Zhao T T. The research progresses, germplasm utilization and breeding innovation of Corylus (Hazelnuts) in China: A review. Journal of Fruit Science, 2013(1): 159-164. (in Chinese)
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