Welcome to Acta Agronomica Sinica,

Acta Agron Sin ›› 2011, Vol. 37 ›› Issue (06): 975-981.doi: 10.3724/SP.J.1006.2011.00975

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

Pyramiding Resistance Gene Pi-ta, Pi-b, and Stv-bi by Marker-assisted Selection in Rice (Oryza sativa L.)

WANG Jun,YANG Jie,CHEN Zhi-De,FAN Fang-Jun,ZHU Jin-Yan,YANG Jin-Huan,ZHONG Wei-Gong*   

  1. Institute of Food Crops, Jiangsu Academy of Agricultural Sciences / Nanjing Branch of Chinese National Center for Rice Improvement, Nanjing 210014, China
  • Received:2010-11-05 Revised:2011-03-28 Online:2011-06-12 Published:2011-04-12
  • Contact: 仲维功, E-mail: wgzhong0503@yahoo.com.cn

Abstract: The blast and stripe disease are two major diseases of rice in Yangtze River japonica cultivating area. Breeding resistant cultivars is the most effective way to prevent these two major diseases. Wuyujing 8, containing both Pi-ta and Pi-b, was crossed with Zhendao 42 which carried rice stripe disease resistance gene Stv-bi. Two gene-markers, Pita and Pib, and one SCAR marker tightly linked with Stv-bi were used for marker-assisted selection in each segregating generation. After the multi-generation breeding and identification of resistance, three resistance genes were put together finally. One new rice stable line, 74121 was obtained which conferred good agronomic characteristics containing high-yield, good quality and multi-resistance. These results indicated that marker-assisted selection could not only be a simple and effective way but also provide genetic resources for breeding new rice multi-resistant varieties.

Key words: Rice, Blast, Stripe disease, Pi-ta, Pi-b, Stv-bi, Marker-assisted selection

[1]Wang C-L(王才林), Zhang Y-D(张亚东), Zhu Z(朱镇), Zhao L(赵凌), Chen T(陈涛). Rice breeding for resistance to stripe virus disease. Acta Agron Sin (作物学报), 2008, 34(3): 530–533 (in Chinese with English abstract)
[2]Ou S H. Rice Diseases, 2nd edn. UK: CAB International, 1985. pp 109–201
[3]Bryan G T, Wu K S, Farrall L, Jia Y L, Hershey H P, McAdams S A, Faulk K N, Donaldson G K, Tarchini R, Valent B. A single amino acid difference distinguishes resistant ansusceptible alleles of the rice blast resistance gene Pi-ta. Plant Cell, 2000, 12: 2033–2046
[4]Wang Z X, Yano M, Yamanouchi U, Iwamoto M, Monna1 L, Hayasaka H, Katayose Y, Sasaki T. The Pib gene for rice blast resistance belongs to the nucleotide binding and leucine-rich repeat class of plant disease resistance genes. Plant J, 1999, 19: 55–64
[5]Yao S(姚姝), Chen T(陈涛), Zhang Y-D(张亚东), Zhu Z(朱镇), Zhao L(赵凌), Zhao Q-Y(赵庆勇), Zhou L-H(周丽慧), Wang C-L(王才林). Pyramiding of translucent endosperm mutant gene Wx-mq and rice stripe disease resistance gene, Stv-bi by marker-assisted selection in rice (Oryza sativa). Chin J Rice Sci (中国水稻科学), 2010, 24(4): 341–347 (in Chinese with English abstract)
[6]Hayano-Saito Y, Tsuji T, Fujii K, Saito K, Iwasaki M, Saito A. Localization of the rice stripe disease resistance gene, Stv-bi, by graphical genotyping and linkage analyses with molecular markers. Theor Appl Genet, 1998, 96: 1044–1049
[7]Hayano-Saito Y, Saito K, Nakamura S, Kawasaki S, Iwasaki M. Fine physical mapping of the rice stripe resistance gene locus, Stv-bi. Theor Appl Genet, 2000, 101: 59-63
[8]Hayano-Saito Y, Saito K, Fujii K, Touyama T, Tsuji T, Sugiura N, Izawa T, Iwasaki M. SCAR marker for selection of the rice stripe resistance gene Stv-bi. J Breed Res, 2000, 2: 67–72
[9]Luo C-P(罗楚平), Ni L(倪磊), Chen Z-Y(陈志谊), Liu Y-F(刘永锋), Liu Y-Z(刘邮洲), Nie Y-F(聂亚锋). Inoculation technology of rice blast and rice resistance to it in Jiangsu regional tests in 2009. Jiangsu Agric Sci (江苏农业科学), 2009, (6): 178–179 (in Chinese)
[10]Zhou T(周彤), Zhou Y-J(周益军), Cheng Z-B(程兆榜), Yang R-M(杨荣明), Ji J-A(吉健安). Identification of resistance to rice stripe virus in japonica rice varieties and analysis for its inhertance of Zhendao 88. Acta Phytophyl Sin (植物保护学报), 2007, 34(5): 475–479 (in Chinese with English abstract)
[11]Wang Z-H(王忠华), Jia Y-L(贾育林), Wu D-X(吴殿星), Xia Y-W(夏英武). Molecular markers-assisted selection of the rice blast resistance gene Pi-ta. Acta Agron Sin (作物学报), 2004, 30(12): 1259–1265 (in Chinese with English abstract)
[12]Fjellstrom R, Conaway-Bormans C A, McClung A M, Marchetti M A, Shank A R, Park W D. Development of DNA markers suitable for marker assisted selection of three Pi genes conferring resistance to multiple Pyricularia grisea pathotypes. Crop Sci, 2004, 44: 1790–1798
[13]Wang J(王军), Yang J(杨杰), Chen Z-D(陈志德), Zhong W-G(仲维功). Development and application of fragrance gene markers in rice. Mol Plant Breed (分子植物育种), 2008, 6(6): 1209–1212 (in Chinese with English abstract)
[14]Lei C-L(雷财林), Ling Z-Z(凌忠专), Wang J-L(王久林), Wan J-M(万建民). Research advanccs in rice breeding for disease resistance. Bull Biol (生物学通报), 2004, 39(11): 4–7 (in Chinese)
[15]Chen H-Q(陈红旗), Chen Z-Q(陈宗祥), Ni S(倪深), Zuo S-M(左示敏), Pan X-B(潘学彪), Zhu X-D(朱旭东). Pyramiding three genes with resistance to blast by marker-assisted selection to improve rice blast resistance of Jin23B. Chin J Rice Sci (中国水稻科学), 2008, 22(1): 23–27 (in Chinese with English abstract)
[16]Chen X-W(陈学伟), Li S-G(李仕贵), Ma Y-Q(马玉清), Li H-Y(黎汉云), Zhou K-D(周开达), Zhu L-H(朱立煌). Marker-assisted selection and pyramiding for three blast resistance genes, Pi-d(t)1, Pi-b, Pi-ta2, in rice. Chin J Biotech (生物工程学报), 2004, 20(5):708–713 (in Chinese with English abstract)
[17]Yoshimura S, Yoshimura A, Iwata N, McCouch S R. Tagging and combining bacterial blight resistance gene in rice using RAPD and RFLP markers. Mol Breed, 1995, 1: 375–387
[18]Huang N, Angeles E R, Domingo J, Magpantay G, Singh S, Zhang G, Kumaravadivel N, Bennett J, Khush G S. Pyramiding of bacterial blight resistance genes in rice: marker-assisted selection using RFLP and PCR. Theor Appl Genet, 1997, 95: 313–320
[19]Deng Q-M(邓其明), Zhou Y-J(周宇爝), Jiang Z-X(蒋昭雪), Wan Y-X(万映秀), Zhao B(赵斌), Yang L(杨丽), Li P(李平). Pyramiding bacterial blight (BB) resistance genes (Xa21, Xa4 and Xa23) into rice and its effect analysis. Acta Agron Sin (作物学报), 2005, 31(9): 1241−1246 (in Chinese with English abstract)
[20]Domingo J P, New T W, Kumaravaclivel N G, Magpantay G B, Hittalmani S, Parco A S, Huang N, Angeles E R, Khush G S. Rice resistant breeding to bacterial blight and blast by molecular marker-assisted selection. Philippine J Crop Sci, 1995, 20: 3
[21]Narayanar N N, Baisakh N, Vera Cruz C M, Gnanamanickam S S, Datta K, Datta S K. Improvement rice resistance to bacterial blight and blast through molecular breeding. Crop Sci, 2002, 42: 2072–2079
[22]Ni D-H(倪大虎), Yi C-X(易成新), Li L(李丽), Wang X-F(汪秀峰), Zhang Y(张毅), Zhao K-J(赵开军), Wang C-L(王春连), Zhang Q(章琦), Wang W-X(王文相), Yang J-B(杨剑波). Developing rice lines resistant to bacterial blight and blast with molecular marker-assisted selection. Acta Agron Sin (作物学报), 2008, 34(1): 100–105 (in Chinese with English abstract)
[23]Sugiura N, Tsuji T, Fujii K, Kato T, Saka N, Touyama T, Hayano-Saito Y, Izawa T. Molecular marker-assisted selection in a recurrent backcross breeding for the incorporation of resistance to rice stripe virus and panicle blast in rice (Oryza sativa L.). Breed Res, 2004, 6: 143–148 (in Japanese with English abstract)
[1] Hu Zhao, Qian Run, Xie Feng-Pu, Ying Su-Ping. Genome-wide identification and expression analysis of the SPX gene family in rice under phosphorus treatment [J]. Acta Agronomica Sinica, 2026, 52(6): 1902-1912.
[2] Zou Yi-Mei, Xu Min, Wang Hai-Yang, Yao Hui, Wang Jia-Feng, Liu Hao, Ren Dai-Sheng. Analysis of transcription factor regulatory networks in two-line male sterile rice seedling roots in response to salt stress [J]. Acta Agronomica Sinica, 2026, 52(6): 1728-1742.
[3] Yan An, Jiang Kun-Wei, Wang Rong-Yuan, Tian Lin, Zhang Lu, Wang Yun, Xu Jian-Long. Identification and cloning of SVN7 controlling small vascular bundle number in the rice flag leaf [J]. Acta Agronomica Sinica, 2026, 52(5): 1364-1372.
[4] Chen Wei, Wei Wan-Juan, Zhao Qi-Bing, Chang Dong-Wei, Yu Ling-Bo, Zhai Peng-Fei, Feng Zhi-Ming, Chen Zong-Xiang, Ren Yang-Tao, Yang Peng, Liu Hai-Lang, Li Zhen-Fu, Yang Yong-Le, Jin Yan-Gang, Zuo Shi-Min. Developing new germplasm of high-quality and early-maturing rice by editing Hd6 via CRISPR/Cas9 [J]. Acta Agronomica Sinica, 2026, 52(4): 1046-1056.
[5] Shi Shao-Jie, Liu Kai, Chen Zi-Yi, Wang Hui-Ying, Li San-He, Zhou Lei, You Ai-Qing. Cloning and functional analysis of the dwarf and multi-tiller gene DMT1 in rice [J]. Acta Agronomica Sinica, 2026, 52(4): 1022-1034.
[6] Qin Yi-Yan, Fu Yao, Su Chang, Li Na, Xu Jing-Ru, Cheng Xiao-Ran, Zhang Qi, Zhao Ming-Hui. Functional analysis of OsST41 regulating salt tolerance in rice seedlings [J]. Acta Agronomica Sinica, 2026, 52(3): 802-812.
[7] Liu Chang-You, Wang Shen, Shi Hui-Ying, Shen Ying-Chao, Sun Lei, Wang Yan, Zhang Zhi-Xiao, Su Qiu-Zhu, Tian Jing, Fan Bao-Jie. QTL mapping for bruchid resistance in an adzuki bean distant hybridization population using rice bean genetic resources [J]. Acta Agronomica Sinica, 2026, 52(3): 936-944.
[8] Ye Fan, Li Shuai, Li Si-Yu, Chen Yun, Dou Chao-Yin, Liu Li-Jun. Effects of water-saving irrigation on rice yield and population quality in Northeast China [J]. Acta Agronomica Sinica, 2026, 52(3): 895-907.
[9] Liu Ning, Fan Ping, Wang Cheng, Chen Qi-Qi, Cheng Qing-Yue, Tie Xia-Na, Tang Jing-Sha, Liu Bin-Bin, Xie Hong-Kun, Wang Jia-Yue, Shi Yuan-Qing, Ma Jun. Effects of reduced nitrogen application combined with organic fertilizer on yield formation and nitrogen utilization in mechanically transplanted rice [J]. Acta Agronomica Sinica, 2026, 52(3): 866-880.
[10] Zhu Jin-Juan, Wang Hui-Ping, Yang Guo-Dong, Wang Yu-Cheng, Yang Chen, Wang Bin, Agustiani Nurwulan, Tu Jun-Ming, Bi Jun-Guo, Cui Ke-Hui, Huang Jian-Liang, Peng Shao-Bing, Yuan Shen. Effects of water management and variety type on grain yield and quality in ratoon rice [J]. Acta Agronomica Sinica, 2026, 52(1): 295-315.
[11] WANG Chan, WU Ying-Ying, LI Wen-Qi, LI Xia, WANG Fang-Quan, ZHOU Tong, YANG Jie. Development of functional markers of rice stripe disease resistance gene STV11 based on HRM technique [J]. Acta Agronomica Sinica, 2025, 51(9): 2547-2556.
[12] GUO Bao-Wei, WANG Wang, WANG Kai, WANG Yan, ZENG Xin, JING Xiu, WANG Jing, NI Xin-Hua, XU Ke, ZHANG Hong-Cheng. Population dynamic characteristics and formation mechanisms of super high-yielding of two types of glutinous rice in the middle and lower reaches of the Yangtze Rive [J]. Acta Agronomica Sinica, 2025, 51(9): 2433-2453.
[13] CHEN Hui-Ying, HE Jia-Xin, ZHU Bin, HUANG Shi-Xuan, ZHOU Xing-You, WU Jun-Quan, YANG Mei-Yan. Whole genome analysis and biological characterization of phage vB_XaS_ HDB2 infected with Xanthomonas oryzae pv. oryzae [J]. Acta Agronomica Sinica, 2025, 51(8): 2087-2099.
[14] YANG Hai-Yang, WU Lin-Xuan, LI Bo-Wen, SHI Han-Feng, YUAN Xi-Long, LIU Jin-Zhao, CAI Hai-Rong, CHEN Shi-Yi, GUO Tao, WANG Hui. OsWRI3, identified based on QTL mapping, regulates seed shattering in rice [J]. Acta Agronomica Sinica, 2025, 51(7): 1712-1724.
[15] WANG Fen, WU Dong-Li, ZHANG Quan-Jun. Response of phenological phase stages of single-cropping rice to climate change in Hubei province, China [J]. Acta Agronomica Sinica, 2025, 51(7): 1934-1948.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!