Scientia Agricultura Sinica ›› 2013, Vol. 46 ›› Issue (10): 1965-1973.doi: 10.3864/j.issn.0578-1752.2013.10.001

• CROP GENETICS & BREEDING·GERMPLASM RESOURCES·MOLECULAR GENETICS •     Next Articles

DNA-Marker Based Analysis of the Allelic Constitution and Subspecies Attribution of Super Hybrid Rice Yiyou 673

 HUANG  Ting-Xu, ZHU  Yu-Jun, FAN  Ye-Yang, YOU  Qing-Ru, ZHOU  Peng, YANG  Dong, XIE  Hua-An, ZHUANG  Jie-Yun   

  1. 1.Institute of Rice Research, Fujian Academy of Agricultural Sciences/Fuzhou National Sub-center for Rice Improvement, Fuzhou 350018
    2.China National Rice Research Institute/Chinese National Center for Rice Improvement/State Key Laboratory of Rice Biology, Hangzhou 310006
  • Received:2013-01-21 Online:2013-05-15 Published:2013-04-16

Abstract: 【Objective】 This study was conducted to determine the allelic constitution and subspecies attribution of the super hybrid rice Yiyou 673, so as to facilitate the utilization of beneficial alleles carried by Yiyou 673, and to provide information for establishing an appropriate indica-japonica proportion in rice breeding. 【Method】 Three major restorer lines of the three-line hybrid rice, including the founder parent Minghui 63, its derivative Minghui 86, and Fuhui 673 which is derived from Minghui 86, as well as cytoplasmic male sterile line Yixiang A, and Yiyou 673 which is developed by crossing Fuhui 673 to Yixiang A, were assayed with 17 markers for 13 genes of agronomically importance and 15 SSR markers for indica-japonica differentiation. 【Result】 Polymorphism was detected in eight of the gene marker regions, including two genes for heading date and yield traits, two key genes for grain quality, and four genes for blast resistance. At Wx locus which is responsible for amylose content and gel consistency of the milled rice, a high-quality allele was transmitted from Minghui 63 to Fuhui 673 through Minghui 86. At ALK locus controlling gelatinization temperature and two loci for blast resistance, Pib and Pita, the male and female parents of the F1 hybrid rice Yiyou 673 showed allelic complementation for high grain quality and resistance to blast. In addition, it was shown that Minghui 63, Minghui 86 and Fuhui 673 are all indica-inclined, but the japonica component of 40.0% in Minghui 86 and Fuhui 673 is higher than the value of 33.3% in Minghui 63.【Conclusion】 Beneficial alleles derived from Minghui 63 and other parental lines were pyramided in Fuhui 673, which were combined with those carried by Yixiang A to establish a favorable allelic complementation in Yiyou 673.

Key words: super hybrid rice , Yiyou 673 , subspecies differentiation , genetic composition

[1]陈温福, 徐正进, 张文忠, 马殿荣, 张树林. 中国超级稻育种研究进展与前景. 沈阳农业大学学报, 2007, 38(5): 662-666.

Chen W F, Xu Z J, Zhang W Z, Ma D R, Zhang S L. Advances and prospects in research of rice breeding for super high yield in China. Journal of Shenyang Agricultural University, 2007, 38(5): 662-666. (in Chinese)

[2]程式华, 曹立勇, 庄杰云, 吴伟明. 关于超级稻品种选育的资源和基因利用问题. 中国水稻科学, 2009, 23(3): 223-228.

Cheng S H, Cao L Y, Zhuang J Y, Wu W M. Discussion on germplasm and gene utilization in breeding of super rice. Chinese Journal of Rice Science, 2009, 23(3): 223-228. (in Chinese)

[3]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(8): 1455-1464.

Tang S X, Wang X D, Liu X. Study on the renewed tendency and key backbone-parents of inbred rice varieties (O. sativa L.) in China. Scientia Agricultura Sinica, 2012, 45(8): 1455-1464. (in Chinese)

[4]斯华敏, 付亚萍, 刘文真, 孙宗修, 胡国成. 水稻光温敏雄性核不育系的系谱分析. 作物学报, 2012, 38(3): 394-407.

Si H M, Fu Y P, Liu W Z, Sun Z X, Hu G C. Pedigree analysis of photoperiod-thermo sensitive genic male sterile rice. Acta Agronomica Sinica, 2012, 38(3): 394-407. (in Chinese)

[5]Zhou J B, Zhang Y M, Lu H Y, You A Q, Zhu L L, He G C. Transmission of important chromosomal regions under selection revealed in rice pedigree breeding programs. Molecular Breeding, 2012, 30: 717-729.

[6]刘怀年, 王世全, 邓其明, 李双成, 郑爱萍, 王玲霞, 陈春霞, 梁越洋, 谢培, 李平. 水稻骨干亲本蜀恢527 产量相关性状关键区段分析. 农业生物技术学报, 2011, 19(3): 393-406.

Liu H N, Wang S Q, Deng Q M, Li S C, Zheng A P, Wang L X, Chen C X, Liang Y Y, Xie P, Li P. Analysis of key genome regions related yield characters of Shuhui 527, an elite rice backbone parent. Journal of Agricultural Biotechnology, 2011, 19(3): 393-406. (in Chinese)

[7]万建民. 中国水稻遗传育种与品种系谱(1986-2005). 北京: 中国农业出版社, 2010: 498-501.

Wan J M. Rice Genetic Breeding and Variety Genealogy in China (1986-2005). Beijing: China Agriculture Press, 2010: 498-501. (in Chinese)

[8]谢华安. 华南型超级稻育种及其技术研究进展. 沈阳农业大学学报, 2007, 38(5): 714-718.

Xie H A. Advances on the breeding program and technology research in South China type super-rice. Journal of Shenyang Agricultural University, 2007, 38(5): 714-718. (in Chinese)

[9]黄庭旭, 王乌齐, 杨东, 游晴如, 郑家团, 张水金, 董瑞霞, 谢华安. 杂交水稻恢复系福恢673的选育研究. 福建农业学报, 2012, 27(10): 1050-1055.

Huang T X, Wang W Q, Yang D, You Q R, Zheng J T, Zhang S J, Dong R X, Xie H A. Breeding of hybrid rice restorer line, Fuhui 673. Fujian Journal of Agricultural Sciences, 2012, 27(10): 1050-1055. (in Chinese)

[10]李清华, 游晴如, 杨东, 郑苹立, 董练飞, 黄俊明, 董瑞霞, 黄庭旭. 不同播种期对宜优673产量及稻米品质性状的影响. 福建农业学报, 2012, 27(7): 691-694.

Li Q H, You Q R, Yang D, Zheng P L, Dong L F, Huang J M, Dong R X, Huang T X. Effect of sowing date on yield and rice quality of Yiyou 673. Fujian Journal of Agricultural Sciences, 2012, 27(7): 691-694. (in Chinese)

[11]Zhang Z H, Wang K, Guo L, Zhu Y J, Fan Y Y, Cheng S H, Zhuang J Y. Pleiotropism of the photoperiod-insensitive allele of Hd1 on heading date, plant height and yield traits in rice. PLoS ONE, 2012, 7(12): e52538.

[12]Yan C J, Yan S, Yang Y C, Zeng X H, Fang Y W, Zeng S Y, Tian C Y, Sun Y W, Tang S Z, Gu M H. Development of gene-tagged markers for quantitative trait loci underlying rice yield components. Euphytica, 2009, 169: 215-226.

[13]Wang C, Chen S, Yu S. Functional markers developed from multiple loci in GS3 for fine marker-assisted selection of grain length in rice. Theoretical and Applied Genetics, 2011, 122: 905-913.

[14]Zhou P H, Tan Y F, He Y Q, Xu C G, Zhang Q. Simultaneous improvement four quality traits of Zhenshan 97, an elite parent of hybrid rice, by molecular marker-assisted selection. Theoretical and Applied Genetics, 2003, 106: 326-331.

[15]Gao Z, Zeng D, Cheng F, Tian Z, Guo L, Su Y, Yan M, Jiang H, Dong G, Huang Y, Han B, Li J, Qian Q. ALK, the key gene for gelatinization temperature, is a modifier gene for gel consistency in rice. Journal of Integrative Plant Biology, 2011, 53(9): 756-765.

[16]Deng Y, Zhu X, Shen Y, He Z. Genetic characterization and fine mapping of the blast resistance locus Pigm(t) tightly linked to Pi2 and Pi9 in a broad-spectrum resistant Chinese variety. Theoretical and Applied Genetics, 2006, 113: 705-713.

[17]殷得所, 夏明元, 李进波, 万丙良, 查中萍, 杜雪树, 戚华雄. 抗稻瘟病基因Pi9的STS连锁标记开发及在分子标记辅助育种中的应用. 中国水稻科学, 2011, 25(1): 25-30.

Yin D S, Xia M Y, Li J B, Wan B L, Zha Z P, Du X S, Qi H X. Development of STS marker linked to rice blast resistance gene Pi9 in marker-assisted selection breeding. Chinese Journal of Rice Science, 2011, 25(1): 25-30. (in Chinese)

[18]Wang H M, Chen J, Shi Y F, Pan G, Shen H C, Wu J L. Development and validation of CAPS markers for marker-assisted selection of rice blast resistance gene Pi25. Acta Agronomica Sinica, 2012, 38(11): 1960-1968.

[19]刘洋, 徐培洲, 张红宇, 徐建第, 吴发强, 吴先军. 水稻抗稻瘟病Pib基因的分子标记辅助选择与应用. 中国农业科学, 2008, 41(1): 9-14.

Liu Y, Xu P Z, Zhang H Y, Xu J D, Wu F Q, Wu X J. Marker-assisted selection and application of blast resistant gene Pib in rice. Scientia Agricultura Sinica, 2008, 41(1): 9-14. (in Chinese)

[20]Wang Z, Jia Y, Rutger J N, Xia Y. Rapid survey for presence of a blast resistance gene Pi-ta in rice cultivars using the dominant DNA markers derived from portions of the Pi-ta gene. Plant Breeding, 2007, 126: 36-42.

[21]樊叶杨, 庄杰云, 吴建利, 孙宝龙, 郑康乐. 应用微卫星标记鉴别水稻籼粳亚种. 遗传, 2000, 22(6): 392-394.

Fan Y Y, Zhuang J Y, Wu J L, Sun B R, Zheng K L. SSLP-based identification of subspecies in rice (Oryza sativa L.). Hereditas, 2000, 22(6):392-394. (in Chinese)

[22]庄杰云, 施勇烽, 应杰政, 鄂志国, 曾瑞珍, 陈洁, 朱智伟. 中国主栽水稻品种微卫星标记数据库的初步构建. 中国水稻科学, 2006, 20(5): 460-468.

Zhuang J Y, Shi Y F, Ying J Z, E Z G, Zeng R Z, Chen J, Zhu Z W. Construction and testing of a primary microsatellite database of major rice varieties in China. Chinese Journal of Rice Science, 2007, 14(4): 247-255. (in Chinese)

[23]Zheng K L, Huang N, Bennett J, Khush G S. PCR-Based Marker- Assisted Selection in Rice Breeding. IRRI Discussion Paper Series No. 12. Philippines: International Rice Research Institute, 1995: 24.

[24]施勇烽, 应杰政, 王磊, 朱智伟, 庄杰云. 鉴定水稻品种的微卫星标记筛选. 中国水稻科学, 2005, 19(3): 195-201.

Shi Y F, Ying J Z, Wang L, Zhu Z W, Zhuang J Y. Screening SSR markers for rice variety identification. Chinese Journal of Rice Science, 2005, 19(3): 195-201. (in Chinese)

[25]Tsuji H, Taoka K I, Shimamoto K. Regulation of flowering in rice: Two florigen genes, a complex gene network, and natural variation. Current Opinion in Plant Biology, 2011, 14: 45-52.

[26]Xue W, Xing Y, Weng X, Zhao Y, Tang W, Wang L, Zhou H, Yu S, Xu C, Li X, Zhang Q. Natural variation in Ghd7 is an important regulator of heading date and yield potential in rice. Nature Genetics, 2008, 40: 761-767.

[27]中华人民共和国农业部. 中华人民共和国农业行业标准“食用稻品种品质(NY/T593-2002)”. 2002: 11.

Ministry of Agriculture, People’s Republic of China. Cooking Rice Variety Quality(NY/T593-2002). 2002: 11. (in Chinese)

[28]Su Y, Rao Y, Hu S, Yang Y, Gao Z, Zhang G, Liu J, Hu J, Yan M, Dong G, Zhu L, Guo L, Qian Q, Zeng D. Map-based cloning proves qGC-6, a major QTL for gel consistency of japonica/indica cross, responds by Waxy in rice (Oryza sativa L.). Theoretical and Applied Genetics, 2011, 123: 859-867.

[29]江青山, 林纲, 赵德明, 李云武, 贺兵, 包灵丰, 杨从金. 优质香稻不育系宜香1A的选育与利用. 杂交水稻, 2008, 23(2): 11-14.

Jiang Q S, Lin G, Zhao D M, Li Y W, He B, Bao L F, Yang C J. Breeding and utilization of aromatic indica rice CMS line Yixiang 1A with good grain quality. Hybrid Rice, 2008, 23(2): 11-14. (in Chinese)

[30]郭梁, 张振华, 庄杰云. 水稻抽穗期QTL及其与产量性状遗传控制的关系. 中国水稻科学, 2012, 26(2): 235-245.

Guo L, Zhang Z H, Zhuang J Y. Quantitative trait loci for heading date and their relationship with genetic control of yield traits in rice (Oryza sativa). Rice Science, 2013, 20(1): 1-12.
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