研究报告

鹅掌楸不同交配组合子代遗传多样性分析

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  • 南京林业大学林木遗传与生物技术省部共建教育部重点实验室, 南京 210037

收稿日期: 2009-06-27

  修回日期: 2009-09-28

  网络出版日期: 2010-01-15

基金资助

国家自然科学基金项目(编号:30771748, 30972391)和国家“十一五”科技支撑课题项目(编号:2006BAD01A16)资助

Comparison of genetic diversity among five mating types of Liriodendron revealed by SSR markers

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  • Key Laboratory of Genetics & Biotechnology (Nanjing Forestry University), Ministry of Education, Nanjing 210037, China

Received date: 2009-06-27

  Revised date: 2009-09-28

  Online published: 2010-01-15

Supported by

National Natural Science Foundation of China

摘要

揭示不同交配类型与子代遗传多样性的关系, 对于林木杂交育种及种子园管理具有理论与实践意义。文章选取来自鹅掌楸、北美鹅掌楸及杂交鹅掌楸的16个交配亲本, 共组配14个杂交组合, 分属5种交配类型, 分别为种间杂交、种内交配、多父本混合授粉、回交、以及自交。每个交配组合随机抽取30个子代, 利用SSR分子标记检测各子代群体遗传多样性以及16个交配亲本间的遗传距离。结果表明, 总体上, 鹅掌楸交配子代群体具有较高的遗传多样性。5种交配类型子代群体中, 遗传多样性水平由高至低的趋势为: 多父本混合授粉子代、种间交配子代、杂种F1与亲本的回交子代、种内交配子代, 自交子代。子代遗传多样性与亲本间遗传距离呈显著正相关, 表明亲本间遗传距离大, 则子代遗传多样性高。相同亲本正反交子代群体的遗传多样性差别不明显。

本文引用格式

朱其卫,李火根 . 鹅掌楸不同交配组合子代遗传多样性分析[J]. 遗传, 2010 , 32(2) : 183 -188 . DOI: 10.3724/SP.J.1005.2010.00183

Abstract

The exploration of relationships between mating patterns and genetic diversity of progenies has theoretical and practical significance for both interspecies hybridization breeding and seed orchard management in tree species. Sixteen plants of Liriodendron chinense, L. tulipifera, and hybrid Liriodendron were chosen as the mating parents. Fourteen combinations were obtained from 5 types of mating types including inter-species mating, intra-species mating, multi-male parent pollination, backcross and self-cross in Liriodendron. Thirty progenies from each combination together with 16 mating parents were sampled to appraise their genetic diversity and inter-parent genetic distance using 16 SSR loci. Overall, a rela-tively high level of genetic diversity was found in the progenies of the 14 mating combinations in Liriodendron. The order of genetic diversity levels among the progenies of 5 types of mating systems from high to low was multi-male parent polli-nation, inter-species, backcross, intra-species, and self-cross, respectively. A significant positive correlation was found be-tween genetic distance of the mating parents and genetic diversity of corresponding progeny, indicating that the bigger the genetic distance of mating parents, the higher the progeny genetic diversity. The level of genetic diversity of the progenies of reciprocal crosses with the same parents was almost identical.

参考文献

[1] 张大勇, 姜新华. 植物交配系统的进化、资源分配对策与遗传多样性. 植物生态学报, 2001, 25(2): 130-143.

[2] 王章荣. 鹅掌楸属杂交育种回顾与展望. 南京林业大学学报, 2003, 27(3): 76-78.

[3] 黄双全, 郭友好. 鹅掌楸的传粉环境与性配置. 生态学报, 2000, 20(1): 49-52.

[4] 尹增芳, 樊汝汶. 中国鹅掌楸小孢子发生的细胞化学研究. 植物学通报, 1998, 15(3): 34-37.

[5] 贺善安, 郝日明, 汤诗杰. 鹅掌楸致濒的生态因素研究. 植物资源与环境, 1996, 5(1): 1-8.

[6] 李火根, 陈龙, 黄敏仁. 鹅掌楸属树种种源试验研究. 林业科技开发, 2005, 19(5): 13-16.

[7] 刘丹, 顾万春, 杨传平. 鹅掌楸属遗传多样性分析评价. 植物遗传资源学报, 2006, 7(2): 188-191.

[8] 李火根, 施季森. 杂交鹅掌楸良种选育与种苗繁育. 林业科技开发, 2009, 23(3): 1-4.

[9] Struss D, Plieske J. The use of microsatellite marker for detection of genetic diversity in barley population. Theor Appl Genet, 1998, 97: 308-315.

[10] Plaschke J, Ganal MW, Roder MS. Detection of genetic diversity in closely bread wheat using microsatellite markers. Theor Appl Genet, 1995, 91: 1001-1117.

[11] Xu M, Li HG, Zhang B. Fifteen polymorphic simple sequence repeat markers from expressed sequence tags of Liriodendron tulipifera. Mol Ecol Notes, 2006, 6: 728-730.

[12] 张博, 张露, 诸葛强, 王明庥, 黄敏仁. 一种高效的树木总DNA提取方法. 南京林业大学学报(自然科学版), 2004, 28(1): 13-17.

[13] Rogers OS, Bendich AJ. Extraction of DNA from plant tissues. Plant Mol Biol Manu, 1988, A6: 1-10.

[14] Yeh FC, Yang RC. Popgene version 1.32. [2000-12]. http://www.ualberta.ca/~fyeh/download.htm.

[15] 王明庥. 林木遗传育种学. 北京: 中国农业出版社, 2001, 57-64.

[16] 刘广绪, 包振民, 胡景杰, 王师, 姚冰, 战爱斌. 栉孔扇贝、华贵栉孔扇贝及其种间杂交子代、种内交配子代的ISSR分析. 中国海洋大学学报, 2006, 36(1): 071-075.

[17] 张冬梅, 李悦, 沈熙环, 周世良, 张春晓. 去劣疏伐对油松种子园交配系统及遗传多样性影响的研究. 2001, 植物生态学报, 25(4): 483-487.

[18] 李周岐, 王章荣. 用RAPD 标记进行鹅掌楸杂种识别和亲本选配. 林业科学, 2002, 38(5): 170-174.

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