Zhou Y L, NE Uzokwe V, Zhang C H, Cheng L R, Wang L, Chen K, Gao X Q, Sun Y, Chen J J, Zhu L H, Zhang Q, Ali J, Xu J L, Li Z K. Improvement of bacterial blight resistance of hybrid rice in China using the Xa23 gene derived from wild rice ( Oryza rufipogon )[J]. Crop Protection, 2011, 30: 637-644
[4]
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[J]. Theor Appl Genet, 1997, 95: 313-320
[5]
Sundaram R N, Vishnupriya M R, Biradar S K, Laha G S, Reddy G A, Rani N S, Sarma N P, Sonti R V. Marker assisted introgression of bacterial blight resistance in Samba Mahusuri, an elite indica rice variety[J]. Euphytica, 2008, 160: 411-422
[6]
Basavaraj S H, Singh V K, Singh A, Singh A, Singh A, Anand D, Yadav S, Ellur R K, Singh D, Krishnan S G, Nagarajan M, Mohapatra T, Prabhu K V, Singh A K. Markers-assisted improvement of bacterial blight resistance in parental lines of Pusa RH10, a superfine grain aromatic rice hybrid[J]. Mol Breeding, 2010, 26: 293-305
Salgotra R K, Gupta B B, J Millwood R, Balasubramaniam M, Jr C N S. Introgression of bacterial leaf blight resistance and aroma genes using functional marker-assisted selection in rice ( Oryza sativa L. ) [J]. Euphytica, DOI 10.1007/s10681-011-0599-3
Wang L, Wang A, Huang X, Zhao Q, Dong G, Qian Q, Sang T, Han B. Mapping 49 quantitative trait at high resolution through sequencing-base genotyping of rice recombinant inbred lines[J]. Theor Appl Genet, 2011, 122: 327-340
[26]
Huang X, Wei X, Sang T, Zhao Q, Feng Q, Zhao Y, Li C, Zhu C, Lu T, Zhang Z, Li M, Fan D, Guo Y, Wang A, Wang L, Deng L, Li Y, Weng Q, Liu K, Huang T, Zhou T, Jing Y, Li W, Lin Z, S Buckler E, Qian Q, Zhang Q F, Li J, Han B. Genome-wide association studies of 14 agronomic traits in rice landraces[J]. Nature Genetics, 2010, 42(11): 961-968
Shah B H, Ding X H, Zeng L X, Talukdar A, Zhang Z M, Zeng R Z, Zhang G Q. Pyramiding four bacterial blight resistance genes into rice cultivars in south china[J]. Molecular Plant Breeding, 2006, 4(4): 493-499
Kottapalli K R, Narasu M L, Jena K K. Effective strategy for pyramiding three bacterial blight resistance genes into fine grain rice cultivar, Samba Mahsuri, using sequence tagged site markers[J]. Biotechnol Lett, 2010, 32:989-996
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[J]. Plant Breeding, 2007, 126: 36-42
Suh J P, Yang S J, Jeung J U, Pamplona A, Kim J J, Lee J H, Hong H C, Yang C I, Kim Y G, Jena K K. Development of elite breeding lines conferring Bph18 gene-derived resistance to brown planthopper(BPH) by marker-assisted selection and genome-wide background analysis in japonica rice (Oryza sativa L.)[J]. Field Crops Research, 2011, 120: 215-222
[37]
Hu J, Li X, Wu C, Yang C, Hua H, Gao G, Xiao J, He Y. Pyramiding and evaluation of the brown planthopper resistance genes Bph14 and Bph15 in hybrid rice[J]. Mol Breeding, 2012, 29: 61-69
[38]
Sharma P N, Toril A, Takumi S, Mori N, Nakamura C. Marker-assisted pyramiding of brown planthopper ( Nilaparvta lugens stal) resistance genes Bph1 and Bph2 on rice chromosome 12[J]. Hereditas, 2004, 140: 61-69
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[J]. Theor Appl Genet, 2003, 106: 326-331