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Genetic Diversity and Relationship of Tea Germplasm Resources Camellia sinensis var. assamica cv. Jianghua Revealed by ISSR Markers

  • LI Dan ,
  • LI Duan-sheng ,
  • YANG Chun ,
  • WANG Qing ,
  • LUO Jun-wu
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  • 1. Key Laboratory of Tea Science of Ministry of Education, Hunan Agricultural University, Changsha 410128, China;
    2. Agriculture Bureau of Jianghua Yao Autonomous County Hunan Province, Jianghua Yao Autonomous County 425509, China

Received date: 2011-07-19

  Revised date: 2012-01-18

  Online published: 2019-09-05

Abstract

The 10 pairs of ISSR primers were used to analyze the genetic polymorphism and genetic relationship of 70 Camellia sinensis var. assamica cv. Jianghua individuals. Totally 174 bands were generated with 10 ISSR primers, of which 166 (95.40%) were polymorphic, which indicated that the genetic diversity of Jianghua population was relatively high. The mean Nei´s gene diversity (H) and Shannon´s information index (I) of the tested tea germplasm were 0.382 and 0.558 respectively, indicating a rather high genetic diversity existed between the germplasm resources. The genetic similarity coefficient ranged from 0.44 to 0.84, averaging 0.63. UPGMA cluster analysis showed that all the tested individuals could be classified into 6 groups including 5 complex groups and 1 simple group. The genetic relationship of all 70 Jianghua individuals was revealed by the ISSR dendrogram, which provide the basis for the utilization and protection of this local landrace population.

Cite this article

LI Dan , LI Duan-sheng , YANG Chun , WANG Qing , LUO Jun-wu . Genetic Diversity and Relationship of Tea Germplasm Resources Camellia sinensis var. assamica cv. Jianghua Revealed by ISSR Markers[J]. Journal of Tea Science, 2012 , 32(2) : 135 -141 . DOI: 10.13305/j.cnki.jts.2012.02.013

References

[1] 湖南省茶叶研究所品种组加工组. 江华苦茶的进化系统与经济价值[J]. 湖南农业科技, 1977(3): 7-13.
[2] 刘宝祥. 江华苦茶的发掘利用研究[J]. 茶业通报, 1981, 12(6):12-14.
[3] Zietkiewiez, E Rafalskik, A Labuda, et al. Fingerprinting by simple sequence repeat (SSR)-anchored polymerase chain reaction amplification[J]. Genomics, 1994, 20(2): 176-183.
[4] 姚明哲, 黄海涛, 余继忠, 等. ISSR在茶树品种分子鉴别和亲缘关系研究中的适用性分析[J]. 茶叶科学, 2005, 25(2): 153-157.
[5] Baimwl, Panaudo, Mccouchsr. Inter-simple sequence repeat (ISSR) amplification for analysis of micro satellite motif frequency and fingerprinting in rice[J]. Theor Appl Genet, 1998, 98(5): 780-792.
[6] Xiao Lq, Gexj. ISSR variation in the endemic and endangered plant Cycasguizhouensis (Cycadaceae)[J]. American Journal of Botany, 2004, 91(1): 37-44.
[7] 刘小莉, 刘飞虎, 李宗菊, 等. 10种报春花亲缘关系的ISSR分析[J]. 云南大学学报: 自然科学版, 2004, 26(5): 93-97.
[8] 祁建民, 周东进, 吴为人, 等. 用ISSR标记检测黄麻野生种与栽培种遗传多样性[J]. 应用生态学报, 2003, 14(9): 1473-1477.
[9] 刘本英, 王丽鸳, 周健, 等. 云南大叶种茶树种质资源ISSR指纹图谱构建及遗传多样性分析[J]. 植物遗传资源学报, 2008, 9(4): 458-464.
[10] 谭和平, 徐利远, 余桂蓉, 等. 茶树种质资源ISSR分子标记初步研究[J]. 核农学报, 2006, 20(2): 113-115.
[11] 王亨洪, 索化夷, 杨坚, 等. 川渝地区重要野生大茶树遗传多样性的ISSR分析[J]. 茶叶科学, 2009, 29(3): 168-172.
[12] 林郑和, 陈荣冰, 陈常颂, 等. ISSR 分子标记在茶树遗传关系分析中的初步应用[J]. 茶叶科学, 2007, 27(1): 45-50.
[13] 黄建安, 黄意欢, 罗军武, 等. 茶树基因组DNA的高效提取方法[J]. 湖南农业大学学报: 自然科学版, 2003, 29(5): 402-407.
[14] 周延青. DNA分子标记技术在植物研究中的应用[M]. 北京: 化学工业出版社, 2005: 143-161.
[15] Yeh F C, Boyle TJ B.Population genetic analysis of co-dominant and dominant markers and quantitative traits[J]. Belgian J Bot, 1997(129): 15.
[16] Nei M.Analysis of gene diversity in subdivided populations[J]. PNAS, 1973, 70: 3321-3323.
[17] Lewontin R C.Apportionment of human diversity[J]. J Evol Biol, 1972, 6: 381-398.
[18] 王俊霞, 杨光圣, 傅廷栋, 等. 甘蓝型油菜Polcms育性恢复基因的RAPD标记[J]. 作物学报, 2000, 26(5): 575-578.
[19] 江木兰, 宋玉萍, 张学江. PCR产物的RFLP分析在大豆根瘤菌研究中的应用[J]. 中国油料作物学报, 1998, 20(4): 65-70.
[20] 吴敏生, 王守才, 戴景瑞. AFLP分子标记在玉米优良自交系优势群划分中的应用[J]. 作物学报, 2000,26(1): 9-13.
[21] 黄福平, 梁月荣, 陆建良, 等. 应用RAPD和ISSR分子标记构建茶树回交1代部分遗传图谱[J]. 茶叶科学, 2006, 26(3): 16-21.
[22] 姚明哲. 利用ISSR和EST-SSR标记研究中国茶树资源的遗传多样性和遗传结构[D]. 杭州: 浙江大学, 2009: 57-62.
[23] 李建华. 四川茶树种质资源遗传多样性及亲缘关系的SSR和ISSR分析[D]. 成都: 四川农业大学, 2009: 46-48.
[24] 沈程文, 黄建安, 赵世浩, 等. 利用SRAP和ISSR标记分析广东茶树种质资源的遗传多样性[J]. 核农学报, 2010, 24(5): 948-955.
[25] 郭春芳, 唐玉海, 孙云, 等. 11个茶树品种遗传多样性的ISSR和TRAP比较分析[J]. 中国农学通报, 2008, 24(1): 340-346.
[26] 张国武, 钟文斌, 乌云塔娜, 等. 油茶优良无性系ISSR分子鉴别[J]. 林业科学研究, 2007, 20(2): 278-282.
[27] 刘本英. ISSR标记鉴别云南茶树种质资源的研究[J]. 茶叶科学, 2009, 29(5): 355-364.
[28] 郭春芳, 唐玉海, 孙云. 茶树种质资源遗传多样性的ISSR分析[J]. 热带作物学报, 2008, 29(2): 181-186.
[29] 宁静, 李健权, 董丽娟, 等. 黄金茶种质资源遗传多样性和亲缘关系的ISSR分析[J]. 茶叶科学, 2010, 30(2): 149-156.
[30] 沈程文, 黄亦欢, 黄建安, 等. 湖南典型茶树地理种群遗传多样性[J]. 农业生物技术学报, 2007, 15(5): 855-860.
[31] 姚明哲, 陈亮, 王新超, 等. 我国茶树无性系品种遗传多样性和亲缘关系的ISSR分析[J]. 作物学报, 2007, 33(4): 598-604.
[32] 季鹏章, 张俊, 王平盛, 等. 云南古茶树(园)遗传多样性的ISSR分析[J]. 茶叶科学, 2007, 27(4): 271-279.
[33] Takeda Y.Cross compatibility of tea plant (Camellia sinensis) and its allied species in the Genus Camellia[J]. Jpn Agric Res Q, 1990, 24: 111-116.
[34] Wang G, Mahalingam R, Knaph T.(C-A) and (G-A) anchored simple sequence repeats (ASSRs) generated polymorphism in soybean, Glycine max (L.) Merr[J]. Theor Appl Genet, 1998, 96: 1086-1096.
[35] 郑林和. 我国39个茶树品种的RAPD与ISSR分析[D]. 福州: 福建农林大学, 2006: 38-46.
[36] 罗军武, 施兆鹏, 沈程文, 等. 茶树种质资源遗传多样性的RAPD分析[J]. 作物学报, 2004, 30(3): 266-269.
[37] Kaundun S S, Zhyvoloup A, Park Y G.Evaluation of the genetic diversity among elite tea (Camellia sinensis var sinensis) accessions using RAPD markers[J].·Euphytica, 2000, 115: 7-16.
[38] Wachira FN, Waugh R, Hackett C A, et al Detection of genetic diversity in tea (Camellia sinensis) using RAPD markers[J]. Genome, 1995, 38: 201-210.
[39] 董利娟, 张曙光, 杨阳. 茶树珍稀资源——江华苦茶的研究[J]. 茶叶通讯, 2003, 13(3): 3-7.
[40] 刘宝祥, 龙翔, 彭继光, 等. 江华苦茶性状分离与良种选育阶段总结[C]. 长沙: 湖南省茶叶研究所, 1987: 42-46.
[41] 龙翔. 江华苦茶叶色类型与品质关系的研究[J]. 茶叶通讯, l991, 1(2): 13-16.
[42] 吴会芳, 李作洲, 黄宏文. 湖北野生天麻的遗传分化及栽培天麻种质评价[J]. 生物多样性, 2006, 14(4): 315-326.
[43] 刘本英, 李友勇, 唐一春, 等. 云南茶树资源遗传多样性与亲缘关系的ISSR分析[J]. 作物学报, 2010, 36(3): 391-400.
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