四川省小麦育成品种系谱分析及发展进程
收稿日期: 2019-03-08
修回日期: 2019-06-04
网络出版日期: 2019-06-19
基金资助
国家重点研发计划项目(2016YFD0101600);国家重点研发计划项目(2017YFD0100905);四川省科技计划项目(2016NYZ0012);四川省科技计划项目(2017JY0077);四川省科技计划项目(2018JY0627);四川省财政创新能力提升工程项目(2016ZYPZ-016);四川省育种攻关项目资助(2016NYZ0030)
Pedigree and development of wheat varieties in Sichuan Province
Received date: 2019-03-08
Revised date: 2019-06-04
Online published: 2019-06-19
Supported by
Supported by the National Key Research and Development Program of China(2016YFD0101600);Supported by the National Key Research and Development Program of China(2017YFD0100905);The Science and Technology Planning Project of Sichuan Province(2016NYZ0012);The Science and Technology Planning Project of Sichuan Province(2017JY0077);The Science and Technology Planning Project of Sichuan Province(2018JY0627);The Innovation Capacity Improvement Project of Sichuan Finance(2016ZYPZ-016);The Breeding Research Project of Sichuan Province(2016NYZ0030)
品种系谱蕴含亲本来源、选育方式、亲缘关系等大量信息,对揭示农作物品种演变特点、规律并最终指导育种实践具有重要意义。本文汇总了四川省1936~2017年间326个小麦品种的系谱信息,对育种方式、亲本构成、高频亲本及骨干亲本的变化、遗传贡献、易位系及人工合成种质分布等情况进行了梳理与分析。从20世纪30年代至今,四川省育种家从大量材料中选用387个直接亲本,采用杂交育种等方式,配制数千个组合,从256个组合中选育出314个品种,对四川省小麦生产做出了重要贡献,同时也为小麦育种提供了更为优异的材料基础。四川省小麦育种经历了从无到有,从主要依靠引进材料、地方品种到自主创制材料的过程;高频亲本、骨干亲本随育种进程推进而逐渐变化。易位系和人工合成种质对四川省小麦育种贡献巨大。育种目标的一致性必然导致遗传多样性散失和遗传基础脆弱,今后重点应加强资源的创制、保护和利用。本文通过育成品种的系谱梳理,对四川省小麦的育种发展进程进行了分析,以期为未来种质资源的收集创制和育种研究提供重要参考信息。
郑建敏,罗江陶,万洪深,李式昭,杨漫宇,李俊,杨恩年,蒋云,刘于斌,王相权,蒲宗君 . 四川省小麦育成品种系谱分析及发展进程[J]. 遗传, 2019 , 41(7) : 599 -610 . DOI: 10.16288/j.yczz.19-081
Variety pedigree contains a lot of information, including parental origin, breeding methods, genetic relationship, and so on. Studying them could reveal the evolution characteristics and rules of breeding and ultimately guide practice. The pedigrees of 326 wheat varieties from 1936 to 2017 in the history of the Sichuan Province was collected and analyzed in terms of breeding methods, parental composition, changes of high frequency parents and backbone parents, genetic contribution, distribution of translocation lines and synthetic germplasms. Over the past 80 years since 1930s, breeders have selected 387 direct parents from a large number of materials, made 256 combinations by means of cross breeding, and have released 314 varieties from them, which contributed directly to wheat breeding and production in Sichuan. Wheat breeding experienced a process from utilizing landraces, introducing foreign germplasm to creating breeding materials independently; high-frequency parents and backbone parents used for breeding gradually changed in different stage of the breeding history. Synthetic germplasms contributed greatly to wheat breeding in recent years. The consistency of breeding objectives will inevitably lead to the loss of genetic diversity and the fragility of genetic basis. In the future, the protection and utilization of genetic resources should be strengthened. In this review, the development of wheat breeding in Sichuan was summarized through pedigree analysis, in order to provide a reference for future research.
| [1] | Jin SBeds . Chinese wheat and its pedigree. Beijing: Agriculture Press, 1983, 1-417. | |||
| [1] | 金善宝主编 . 中国小麦品种及其系谱. 北京: 农业出版社, 1983, 1-417. | |||
| [2] | Zhuang QSeds . Chinese Wheat Improvement and Pedigree Analysis. Beijing: China Agriculture Press, 2003, 1-681. | |||
| [2] | 庄巧生主编. . 中国小麦品种改良及系谱分析. 北京: 中国农业出版社, 2003, 1-681. | |||
| [3] | 余遥主编 . 四川小麦. 成都: 四川科学技术出版社, 1998, 1-517. | |||
| [4] | Ren ZLeds . Wheat Breeding in Rainfed Agricultural Areas. Beijing: Science Press, 2010, 1-288. | |||
| [4] | 任正隆主编 . 雨养农业区的小麦育种. 北京: 科学出版社, 2010, 1-288. | |||
| [5] | Li SReds . Practice and Development of Wheat Variety Improvement in Mianyang. Beijing: China Agriculture Press, 2018, 1-261. | |||
| [5] | 李生荣主编 . 绵阳号小麦品种改良的实践与发展. 北京: 中国农业出版社, 2018, 1-261. | |||
| [6] | Zheng JM, Luo JT, Li SZ, Wan HS, Yang MY, Li J, Yang EN, Pu ZJ . Quality of wheat varieties in regional test in Sichuan province from 2008 to 2016. J Trit Crops, 2017,37(4):513-519. | |||
| [6] | 郑建敏, 罗江陶, 李式昭, 万洪深, 杨漫宇, 李俊, 杨恩年, 蒲宗君 . 2008-2016年四川省小麦区试品系品质分析. 麦类作物学报, 2017,37(4):513-519. | |||
| [7] | Zhang ZQ, Zheng YL, Wei YM, Wu W, Zhou YH, Liu DC, Lan XJ . Analysis on genetic diversity among Sichuan wheat cultivars based on SSR markers. J Trit Crops, 2002,22(2):5-9. | |||
| [7] | 张志清, 郑有良, 魏育明, 吴卫, 周永红, 刘登才, 兰秀锦 . 四川主栽小麦品种遗传多样性的SSR标记研究. 麦类作物学报, 2002,22(2):5-9. | |||
| [8] | Ren ZL, Zhang HQ, Tan FQ, Jiang HR, Yan BJ, Zhuang HY, Fu TH, Zhang XZ, Chen XP . A new variety of wheat, Chuannong 18, with high yield, disease resistance, good quality and early-aging resistance. J Trit Crops, 2004,24(4):158. | |||
| [8] | 任正隆, 张怀琼, 谭飞泉, 蒋华仁, 晏本菊, 张怀渝, 傅体华, 张显志, 陈显培 . 高产抗病优质抗早衰“协调型”小麦新品种——川农18. 麦类作物学报, 2004,24(4):158. | |||
| [9] | Li SR . Breeding of large-spike, high-yield and high- quality wheat varieties Mianyang 33 and Mianyang 35. Chin Agric Bull, 2005,21(4):127-155. | |||
| [9] | 李生荣 . 大穗型丰产优质小麦新品种绵阳33号和绵阳35号的选育. 中国农学通报, 2005,21(4):127-129, 155. | |||
| [10] | Fu TH, Wang CM, Ren ZL . SSR genetic diversity among modern advanced wheat cultivars(Triticum aestivum L.)in Sichuan and its relationships with their pedigree. J Sichuan Agric Univ, 2007,25(1):1-8, 23. | |||
| [10] | 傅体华, 王春梅, 任正隆 . 四川育成小麦品种的SSR遗传多态性及系谱关系. 四川农业大学学报, 2007,25(1):1-8, 23.
/
|