作物学报 ›› 2014, Vol. 40 ›› Issue (06): 973-983.doi: 10.3724/SP.J.1006.2014.00973
孙宗修**,*,鄂志国**,王磊,朱德峰,张玉屏,胡国成,刘文真,付亚萍*
SUN Zong-Xiu**,*,E Zhi-Guo**,WANG Lei,ZHU De-Feng,ZHANG Yu-Ping,HU Guo-Cheng,LIU Wen-Zhen,FU Ya-Ping*
摘要:
亲本是作物育种的基础,骨干亲本指同一时期用于育种的亲本中在同样的世代内衍生的品种(系)数量较多,种植面积较大的育种材料。确定骨干亲本不但能够了解育种历史和亲本的贡献,而且对育种也有重要指导作用。本文分析了以往确定骨干亲本时存在的主要问题,提出评定骨干亲本应该有一定的规范,即对同时代育成品种(系)和同衍生世代量化比较。以水稻数据库中我国育成的2398份水稻品种(系)为依据,按亚种分类,育成年代分组,以连续3代衍生的品种(系)数量及其种植面积为参数,分析育成品种在后续育种研究中的应用状况,在此基础上,采用量化评选的方法,评选出我国20世纪下半叶用于水稻育种的骨干亲本,其中籼稻26个,粳稻23个。本文以水稻为例提出了评选骨干亲本的原则和方法,并对今后选择育种亲本和提高育种效率提出了一些建议。
| [1]刘华招, 刘延, 陈温福. 寒地水稻骨干亲本石狩白毛衍生品种的育成、推广及启示. 黑龙江八一农垦大学学报, 2011, 23(2): 8–12Liu H Z, Liu Y, Chen W F. The reviews and enlightenments on the breeding and popularization of rice variety Ishikari-shiroge derived ones. J Heilongjiang Bayi Agric Univ, 2011, 23(2): 8–12 (in Chinese with English abstract)[2]刘旭. 我国小麦种质资源价值的分析. 中国资产评估, 2009, (3): 26–30Liu X. The resource value analysis of Chinese wheat germplasm. Appraisal J China, 2009, (3): 26–30 (in Chinese)[3]黎裕, 王天宇. 我国玉米育种种质基础与骨干亲本的形成. 玉米科学, 2010, 18(5): 1–8LI Y, WANG T Y. Germplasm base of maize breeding in China and formation of foundation parents. J Maize Sci, 2010, 18(5): 1–8 (in Chinese with English abstract)[4]郑康乐, 庄杰云, 陆军, 李西明, 朱旭东, 柯苇, 赵社根. 籼稻骨干亲本的STS多态性. 农业生物技术学报, 1997, 5: 325–330Zheng K L, Zhunag J Y, Lu J, Li X M, Zhu XD, Ke W, Zhao S G. STS database of major parents in current breeding programs of rice (O. sativa L. subsp. indica). J Agric Biotech, 1997, 5: 325–330 (in Chinese with English abstract)[5]王宪云, 刘钊, 曹英豪, 白辉, 刘丽娟, 李莉云, 刘国振. 水稻骨干亲本不同发育时期蛋白质表达的多态性. 中国农业科学, 2011, 44: 2849–2856Wang X Y, Liu Z, Cao Y H, Bai H, Liu L J, Li L Y, Liu G Z. The profiling of protein expression at different developmental stages of elite rice varieties. Sci Agric Sin, 2011, 44: 2849–2856 (in Chinese with English abstract)[6]于海霞, 肖静, 田纪春. 小麦骨干亲本矮孟牛及其衍生后代遗传解析. 中国农业科学, 2012, 45: 199–207Yu H X, Xiao J, Tian J C. Genetic dissection of milestone parent Aimengniu and itself derivatives. Sci Agric Sin, 2012, 45: 199–207 (in Chinese with English abstract)[7]Zhang H J, Wang H, Qian Y L, Xia J F, Li Z F, Shi Y Y, Zhu L H, Ali J, Gao Y M, Li Z K. Simultaneous improvement and genetic dissection of grain yield and its related traits in a backbone parent of hybrid rice (Oryza sativa L.) using selective introgression. Mol Breed, 2013, 31: 181–194[8]Zhang H J, Wang H, Ye G Y, Qian Y L, Shi Y Y, Xia J F, Li Z F, Zhu L H, Gao Y M, Li Z K. Improvement of yield and its related traits for backbone hybrid rice parent Minghui 86 using advanced backcross breeding strategies, J Integr Agric, 2013, 12: 561–570[9]Zhao C H, Cui F, Fan Z Q, Li J, Ding A M. Genetic analysis of important loci in the winter wheat backbone parent Aimengniu-V. Aust J Crop Sci, 2013, 7: 182–188[10]赵一洲, 王绍林, 张战. 水稻骨干亲本育种价值分析. 垦殖与稻作, 2006, (4): 6–9Zhao Y Z, Wang S L, Zhang Z. Analysis on breeding value of primal parents in rice. Reclaiming and Rice Cultivation, 2006, (4): 6–9[11]Bandillo N, Raghavan C, Muyco P A, Sevilla M A L, Lobina I T, Dilla-Ermita C J, Tung C W, McCouch S, Thomson M, Mauleon R, Singh R K, Gregorio G, Redoña E, Leung H. Multi-parent advanced generation inter-cross(MAGIC) populations in rice: progress and potential for genetics research and breeding. Rice, 2013, 6: 11[12]邵国军, 王洪山, 韩勇, 张城. 辽宁省水稻品种系谱分析. 北方水稻, 2008, 38(5): 12–16Shao G J, Wang H S, Han Y, Zhang C. Pedigree analysis of rice varieties in Liaoning province. North Rice, 2008, 38(5): 12–16 (in Chinese with English abstract)[13]刘化龙, 王敬国, 赵宏伟, 邹德堂, 陈温福, 徐正进. 黑龙江水稻育种骨干亲本及系谱分析. 东北农业大学学报, 2011, 42(4): 18–21Liu H L, Wang J G, Zhao H W, Zou D T, Chen W F, Xu Z J. Analysis of founder parents for cultivar varieties in Heilongjiang Province. J Northeast Agric Univ, 2011, 42(4): 18–21 (in Chinese with English abstract)[14]汤圣祥, 王秀东, 刘旭. 中国常规水稻品种的更替趋势和核心骨干亲本研究. 中国农业科学, 2012, 45: 1455–1464Tang S X, Wang X D, Liu X. Study on the renewed tendency and key backbone-parents of inbred rice varieties (O. sativa) in China. Sci Agric Sin, 2012, 45: 1455–1464 (in Chinese with English abstract)[15]林世成, 闵绍楷. 中国水稻品种及其系谱. 上海: 上海科学技术出版社, 1991. p 411Lin S C, Min S K. Rice Variety and Their Genealogy in China. Shanghai: Shanghai Scientific and Technical Publishers, 1991. p 411 (in Chinese)[16]吴方喜, 蔡秋华, 朱永生, 张建福, 谢华安. 籼型杂交稻恢复系明恢63的利用与创新. 福建农业学报, 2011, 26: 1101–1112Wu F X, Cai Q H, Zhu Y S, Zhang J F, Xie H A. Application of indica restorer line, minghui 63, for rice hybridization. Fujian J Agric Sci, 2011, 26: 1101–1112 (in Chinese with English abstract)[17]万建民. 中国水稻遗传育种与品种系谱. 北京: 中国农业出版社, 2010. p 742Wan J M. Rice Genetic Breeding and Variety Genealogy in China. Beijing: China Agriculture Press, 2010. p 742 (in Chinese) [18]鄂志国, 王磊. 中国水稻品种及其系谱数据库. 中国水稻科学, 2011, 25: 565–566E Z G, Wang L. Construction of database for Chinese rice varieties and their genealogy. Chin J Rice Sci, 2011, 25: 565–566 (in Chinese with English abstract)[19]周泽隆. 矮仔占的种质及其衍生系谱. 西南农业学报, 1991, 4(1): 29–35Zhou Z L. Germplasm and its derivative genealogies of variety Ai-zi-zhan. Southwest China J Agric Sci, 1991, 4(1): 29–35 (in Chinese with English abstract)[20]邹江石, 聂毓琦, 潘启民, 傅春霞, 郑为认, 裔承宽. 广亲和选系“02428”在籼粳亚种间杂交的初步利用. 中国农业科学, 1989, 22(1): 6–14Zhou J S, Nie Y Q, Pan Q M, Fu C X, Zheng W R, Yi C K. The tentative utilization of wide compatibility strain 02428 in indica × japonica hybrid rice. Sci Agric Sin, 1989, 22(1): 6–14 (in Chinese with English abstract)[21]魏兴华, 汤圣祥, 余汉勇, 王一平, 袁筱萍, 徐群. 中国水稻国外引种概况及效益分析. 中国水稻科学, 2010, 24: 5–11Wei X H, Tang S X, Yu H Y, Wang Y P, Yuan X P, Xu Q. Beneficial analysis on introduced rice germplasm from abroad in China. Chin J Rice Sci, 2010, 24: 5–11 (in Chinese with English abstract)[22]石明松. 晚粳自然两用系选育及应用初报. 湖北农业科学, 1981, (7): 1–3Shi M S. Preliminary report of breeding and utilization of late japonica natural double-purpose line. Hubei Agric Sci, 1981, (7): 1–3 (in Chinese)[23]曾宪平, 何芳, 吕建群, 陈林. 2001—2010年四川省杂交水稻审定品种的分析. 浙江农业学报, 2012, 24: 361–367Zeng X P, He F, Lu J Q, Chen L. Analysis on registered hybrid rice of Sichuan Province from 2001 to 2010. Acta Agric Zhejiangensis, 2012, 24: 361–367 (in Chinese with English abstract)[24]斯华敏, 刘文真, 付亚萍, 孙宗修, 胡国成. 我国两系杂交水稻发展的现状和建议. 中国水稻科学, 2011, 25: 544–552Si H M, Liu W Z, Fu Y P, Sun Z X, Hu G C. Current situation and suggestions of the development of two-line hybrid rice in China. Chin J Rice Sci, 2011, 25: 544–552 (in Chinese with English abstract) |
| [1] | 胡赵, 钱润, 谢丰璞, 应素平. 水稻SPX基因家族鉴定及响应磷处理的表达分析[J]. 作物学报, 2026, 52(6): 1902-1912. |
| [2] | 邹仪妹, 徐敏, 汪海洋, 姚辉, 王加峰, 刘浩, 任代胜. 两系不育系水稻幼苗根系响应盐胁迫的转录因子调控网络鉴定[J]. 作物学报, 2026, 52(6): 1728-1742. |
| [3] | 闫安, 蒋昆炜, 王蓉圆, 田林, 张璐, 王韵, 徐建龙. 水稻剑叶小维管束数基因SVN7的鉴定与克隆[J]. 作物学报, 2026, 52(5): 1364-1372. |
| [4] | 陈伟, 卫万娟, 赵其兵, 常东伟, 余凌波, 翟鹏飞, 冯志明, 陈宗祥, 任仰涛, 杨鹏, 刘海浪, 李珍富, 杨永乐, 金彦刚, 左示敏. 利用CRISPR/Cas9编辑Hd6基因创制优质早熟水稻新种质[J]. 作物学报, 2026, 52(4): 1046-1056. |
| [5] | 石少阶, 刘凯, 陈姿夷, 王卉颖, 李三和, 周雷, 游艾青. 水稻矮化多分蘖基因DMT1的克隆与功能分析[J]. 作物学报, 2026, 52(4): 1022-1034. |
| [6] | 覃奕琰, 付瑶, 苏畅, 李娜, 徐静茹, 程笑然, 张琪, 赵明辉. OsST41调控水稻苗期耐盐性的功能分析[J]. 作物学报, 2026, 52(3): 802-812. |
| [7] | 叶凡, 李帅, 李思宇, 陈云, 窦超银, 刘立军. 不同节水灌溉方式对东北稻区水稻产量和群体质量的影响[J]. 作物学报, 2026, 52(3): 895-907. |
| [8] | 王婵, 吴莹莹, 李文奇, 李霞, 王芳权, 周彤, 杨杰. 基于HRM技术开发水稻抗条纹叶枯病基因STV11功能标记[J]. 作物学报, 2025, 51(9): 2547-2556. |
| [9] | 陈惠莹, 何嘉欣, 朱斌, 黄士轩, 周星佑, 伍君权, 杨美艳. 水稻黄单胞菌噬菌体vB_XaS_HDB2的全基因组分析和生物学特性研究[J]. 作物学报, 2025, 51(8): 2087-2099. |
| [10] | 杨海洋, 吴林宣, 李博纹, 石翰峰, 袁禧龙, 刘金朝, 蔡海荣, 陈诗怡, 郭涛, 王慧. 基于QTL定位发现的OsWRI3调控水稻种子的落粒性[J]. 作物学报, 2025, 51(7): 1712-1724. |
| [11] | 雷松翰, 范骏扬, 车艳奕, 代永东, 郑雨萌, 田维江, 桑贤春, 王晓雯. 水稻内卷叶突变体acl3的鉴定及调控基因的功能分析[J]. 作物学报, 2025, 51(6): 1467-1479. |
| [12] | 李福媛, 杨奕, 马继琼, 许明辉, 林良斌, 孙一丁. 水稻OsPUB4基因克隆、激素诱导表达分析与互作蛋白筛选[J]. 作物学报, 2025, 51(6): 1690-1700. |
| [13] | 王梦宁, 谢可冉, 高逖, 王飞, 任孝俭, 熊栋梁, 黄见良, 彭少兵, 崔克辉. 水稻幼穗分化期至抽穗期高温对籽粒形态和充实的影响及其与粒重的关系[J]. 作物学报, 2025, 51(5): 1347-1362. |
| [14] | 盛倩男, 方娅婷, 赵剑, 杜思垚, 胡行珍, 余秋华, 朱俊, 任涛, 鲁剑巍. 不同养分管理措施对稻田和旱地油菜产量的影响及其对冻害的响应[J]. 作物学报, 2025, 51(5): 1286-1298. |
| [15] | 翁文安, 邢志鹏, 胡群, 魏海燕, 廖萍, 朱海滨, 瞿济伟, 李秀丽, 刘桂云, 高辉, 张洪程. 无人化旱直播水稻产量形成特征及其能量与经济效益研究[J]. 作物学报, 2025, 51(5): 1363-1377. |
|
||