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Identification of QTLs for the resistance to rice stripe virus in the indica rice variety Dular

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Abstract

The indica variety Dular has a high level of resistance to rice stripe virus (RSV). We performed quantitative trait locus (QTL) analysis for RSV resistance using 226 F2 clonal lines at the seedling stage derived from a cross between the susceptible japonica variety Balilla and the resistant indica variety Dular with two evaluation criteria, infection rate (IR) and disease rating index (DRI). The experiments were performed in both 2004 and 2005. Based on IR, three putative QTLs were detected and had consistent locations in the 2 years, one QTL was detected in the RM7324–RM3586 interval on chromosome 3. The other two QTLs were linked and located in the RM287–RM209 and RM209–RM21 intervals on the long arm of chromosome 11, and accounted for 87.8–57.8% of the total phenotypic variation in both years. Based on DRI, three putative QTLs were also detected and had consistent locations in both years. One of them was located in the RM1124–SSR20 interval on the short arm of chromosome 11, while the other two linked QTLs had the same chromosomal locations on chromosome 11 as those detected by IR, and accounted for 55.7–42.9% of total phenotypic variation in both years. In comparison to the mapping results from previous studies, one of the two linked QTLs had a chromosomal location that was similar to Stv-b i, an important RSV resistance gene, while the other appeared to be a newly reported one.

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Abbreviations

DRI:

Disease rating index

IR:

Infection rate

RSV:

Rice stripe virus

SBPH:

Small brown planthopper

SSR:

Simple sequence repeat

References

  • Ahn SN, Kim YK, Han SS et al (1996) Molecular mapping of a gene for resistance to a Korean isolate of rice blast. Rice Genet Newslett 13:74–76

    Google Scholar 

  • Basten CJ, Weir BS, Zeng ZB (2001) QTL cartographer: a reference manual and tutorial for QTL mapping. North Carolina State University, USA

    Google Scholar 

  • Cai LJ, Ma XZ, Kang L, Deng KJ, Zhao SY, Li CB (2003) Detecting Rice stripe virus (RSV) in the small brown planthopper (Laodelphax striatellus) with high specificity by RT-PCR. J Virol Methods 112:115–120. doi:10.1016/S0166-0934(03)00200-3

    Article  CAS  Google Scholar 

  • Ding XL, Jiang L, Liu SJ, Wan JM (2004) QTL analysis for rice stripe disease resistance gene using recombinant inbred lines derived from crossing of Kinmaze and Dv85. Acta Genetica Sin 31(3):287–292

    CAS  Google Scholar 

  • Hayano Y, Tsuji T, Fujii K, Saito K, Iwasaki M, Saito A (1998) Localization of the rice stripe disease resistance gene, Stv-b i, by graphical genotyping and linkage analyses with molecular markers. Theor Appl Genet 96:1044–1049. doi:10.1007/s001220050837

    Article  Google Scholar 

  • Hayano Y, Saito K, Nakamura S, Kawasaki S, Iwasaki M (2000) Fine physical mapping of the rice stripe resistance gene locus, Stvb-i. Theor Appl Genet 101:59–63. doi:10.1007/s001220051449

    Article  Google Scholar 

  • Hibino H, Cabauatan PQ, Omura T, Tsuchizaki T (1985) Rice grassy stunt virus strain causing tungrolike symptoms in the Philippines. Plant Dis 69:538–541. doi:10.1094/PD-69-538

    Article  Google Scholar 

  • Ikeda R, Kaneda C (1982) Genetic relationships of brown planthopper resistance to dwarf and stripe disease resistance in rice. Jpn J Breed 32:177–185

    Google Scholar 

  • Ise K, Ishikawa K, Li CY, Ye CR (2002) Inheritance of resistance to rice stripe virus in rice line ‘BL 1’. Euphytica 127:185–191. doi:10.1023/A:1020286412751

    Article  CAS  Google Scholar 

  • Ishikawa K, Nemoto H, Omura T, Tsuchizaki T (1987) Improvement of test method for rice stripe virus with simplified ELISA. Ann Phytopath Soc Jpn 54:123

    Google Scholar 

  • Ji CQ, Zhong H, Zhong PY, Liang GH (2005) Detecting rice stripe virus in infected rice plants by RT-PCR. J Shanghai Jiaotong Univ 23(2):188–191

    Google Scholar 

  • Jiang YP, Duan HP, Li J, Yuan LG, Wang ZG, Gong CG et al (2005) Current situation and control countermeasures of eventful rice diseases and pests in Shanghai suburbs. Acta Agric Shanghai 21(1):78–81

    CAS  Google Scholar 

  • Lander ES, Green SP, Abrahamson J, Barlow A, Daly MJ, Lincoln SE et al (1987) MAPMAKER: an interactive computer package for constructing primary genetic linkage maps of experimental and natural populations. Genomics 1:174–181. doi:10.1016/0888-7543(87)90010-3

    Article  PubMed  CAS  Google Scholar 

  • Li JX, Yu SB, Xu CG, Tan YF, Gao YJ, Li XH et al (2000) Analyzing quantitative trait loci for yield using a vegetatively replicated F2 population from a cross between the parents of an elite rice hybrid. Theor Appl Genet 101:248–254. doi:10.1007/s001220051476

    Article  CAS  Google Scholar 

  • Liu KD, Wang J, Li HB, Xu CG, Liu AM, Li XH et al (1997) A genome-wide analysis of wide compatibility in rice and the precise location of the S5 locus in the molecular map. Theor Appl Genet 95:809–814. doi:10.1007/s001220050629

    Article  CAS  Google Scholar 

  • Maeda H, Nemoto H, Yagi T, Fukuta Y (1999) QTL analysis for stripe disease resistance using recombinant inbred lines derived from crossing between Miyang and Akihikari. Prospects of rice genetics and breeding for the 21st century—Paper collection of international rice genetics and breeding symposium. China Agricultural Science Technology Press, Beijing, pp 53–57

  • Maeda H, Sugisawa T, Nemoto H, Sunohara Y (2004) QTL analysis for rice stripe resistance in the Japanese upland rice Kanto 72. Breed Sci 54:19–26. doi:10.1270/jsbbs.54.19

    Article  CAS  Google Scholar 

  • Monosi B, Wisser RJ, Pennill L, Hulbert SH (2004) Full-genome analysis of resistance gene homologues in rice. Theor Appl Genet 109:1434–1447. doi:10.1007/s00122-004-1758-x

    Article  PubMed  CAS  Google Scholar 

  • Pink DAC, Lot H, Johnson R (1992) Novel pathotypes of lettuce mosaic virus-breakdown of a durable resistance? Euphytica 63:169–174. doi:10.1007/BF00023921

    Article  Google Scholar 

  • Qin WQ, Gao DM, Chen SX (1994) Studies on techniques of rapid detecting rice stripe virus in Laodelphax striatellus. Acta Agric Zhejiangensis 6:226–229

    Google Scholar 

  • Sharma TR, Madhav MS, Singh BK, Shanker P, Jana TK, Dalal V et al (2005) High-resolution mapping, cloning and molecular characterization of the Pi-k(h) gene of rice, which confers resistance to Magnaporthe grisea. Mol Genet Genomics 274:671. doi:10.1007/s00438-005-0066-8

    Article  CAS  Google Scholar 

  • Song WY, Wang GL, Chen LL, Kim HS, Pi LY, Holsten T et al (1995) A receptor kinase-like protein encoded by the rice disease resistance gene, Xa21. Science 270:1804–1806. doi:10.1126/science.270.5243.1804

    Article  PubMed  CAS  Google Scholar 

  • Sun DZ, Jiang L, Liu SJ, Zhang YX, Huang PH, Cheng XN, Zhai ZH, Wan JM (2006) Detection of QTLs for resistance to rice stripe virus and small brown planthopper in rice (Oryza sativa L.). Acta Agron Sin 32(6):805–810

    CAS  Google Scholar 

  • Wang S, Basten CJ, Zeng ZB (2005) Windows QTL Cartographer 2.5. Department of Statistics, North Carolina State University, Raleigh, NC. (http://statgen.ncsu.edu/qtlcart/WQTLCart.htm)

  • Washio O, Ezuka A, Sakurai Y, Toriyama K (1967) Studies on the breeding of rice varieties resistant to rice stripe disease. I. Varietal difference in resistance to stripe disease. Jpn J Breed 17:91–98

    Google Scholar 

  • Washio O, Toriyama K, Ezuka A, Sakurai Y (1968a) Studies on the breeding of rice varieties resistant to stripe disease. II. Genetic study on resistance to stripe disease in Japanese upland rice. Jpn J Breed 18:96–101

    Google Scholar 

  • Washio O, Toriyama K, Ezuka A, Sakurai Y (1968b) Studies on the breeding of rice varieties resistant to stripe disease. III. Genetic study on resistance to stripe disease in foreign varieties. Jpn J Breed 18:167–172

    Google Scholar 

  • Washio O, Ezuka A, Sakurai Y, Toriyama K (1968c) Testing method for, genetics of and breeding for resistance to rice stripe disease. Bull Chugoku Natl Agric Exp Stn A 16:39–197

    Google Scholar 

  • Xie RK, Mao BH, Wang YD, Zhao Y, Zhen YL (2005) The incidence and control of rice stripe in indica hybrid rice. Hybrid Rice 20:48–49

    Google Scholar 

  • Yamaguchi T, Yasuo S, Ishi M (1965) Studies on rice stripe disease. III. Study on varietal resistance to stripe disease of rice. Plant J Vent Agr Exp Sta 8:109–160

    Google Scholar 

  • Yasui H, Yoshimura A (1999) QTL mapping of antibiosis to green leafhopper, Nephotettix virescens distant and green rice leafhopper, Nephotettix cincticeps Uhler in rice, Oryza sativa L. Rice Genet Newslett 16:96–98

  • Zeng ZB (1994) Precision mapping of quantitative trait loci. Genetics 136:1457–1468

    PubMed  CAS  Google Scholar 

  • Zhang JX (2005) Elementary research on the catastrophic cause of rice stripe virus. J Northwest Sci-Tech Univ Agric Fo 33(Suppl):65–67

    Google Scholar 

  • Zhou T, Wang Y, Chen JQ, Araki H, Jing Z, Jiang K et al (2004) Genome-wide identification of NBS genes in japonica rice reveals significant expansion of divergent non-TIR NBS-LRR genes. Mol Genet Genomics 271:402–415. doi:10.1007/s00438-004-0990-z

    Article  PubMed  CAS  Google Scholar 

Download references

Acknowledgements

This study was financially supported by grants from the State Key Program of Basic Research of P. R. China (No. 2005CB120807); the National Natural Science Foundation of P. R. China (No. 30530118) and the Key Program of the Bureau of Education, Jiangsu, China (No. 05KAJ2012).

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Correspondence to Guo-Hua Liang.

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Wu, SJ., Zhong, H., Zhou, Y. et al. Identification of QTLs for the resistance to rice stripe virus in the indica rice variety Dular. Euphytica 165, 557–565 (2009). https://doi.org/10.1007/s10681-008-9779-1

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