restoring souce for CMS lines with the cytoplasm of Jiangxi Dongxiang wild rice. Hybrid Rice, 6, 4–6. (in Chinese)E Z G, Wang L. 2008. Discovery and utilization of favorable genes in wild rice. Hereditas, 30, 1397–1405. (in Chinese)Fujii S, Kazama T, Yamada M, Toriyama K. 2010. Discovery of global genomic re-organization based on comparison of two newly sequenced rice mitochondrial genomes with cytoplasmic male sterility-related genes. BMC Genomics, 11, 209.Hu B, Wan Y, Li X, Cai Y, Luo X, Xie J. 2012. Research progress on genetic diversity and its ecological conservation of endangered Dongxiang wild rice (Oryza rufipogon Griff.). Agricultural Science & Technology, 13, 113–119.Igarashi K, Kazama T, Motomura K, Toriyama K. 2013. Whole genomic sequencing of RT98 mitochondria derived from Oryza rufipogon and northern blot analysis to uncover a cytoplasmic male sterility-associated gene. Plant and Cell Physiology, 54, 237–243.Itabashi E, Kazama T, Toriyama K. 2009. Characterization of cytoplasmic male sterility of rice with Lead Rice cytoplasm in comparison with that with Chinsurah Boro II cytoplasm. Plant Cell Reports, 28, 233–239.Kazama T, Itabashi E, Fujii S, Nakamura T, Toriyama K. 2016. Mitochondrial ORF79 levels determine pollen abortion in cytoplasmic male sterile rice. The Plant Journal, 85, 707–716.Koressaar T, Remm M. 2007. Enhancements and modifications of primer design program Primer3. Bioinformatics, 23, 1289–1291.Li S, Tan Y, Wang K, Wan C, Zhu Y. 2008. Gametophytically alloplasmic CMS line of rice (Oryza sativa L.) with variant orfH79 haplotype corresponds to specific fertility restorer. Theoretical and Applied Genetics, 117, 1389–1397.Lin S C, Yuan L P. 1980. Hybrid rice breeding in China. In: Innovative Approaches to Rice Breeding. International Rice Research Institute, Manila, Philippines. pp. 35–51.Luan J, Liu T, Luo W, Liu W, Peng M, Li W, Dai X, Liang M, Chen L. 2013. Mitochondrial DNA genetic polymorphism in thirteen rice cytoplasmic male sterile lines. Plant Cell Reports, 32, 545–554.Luo D, Xu H, Liu Z, Guo J, Li H, Chen L, Fang C, Zhang Q, Bai M, Yao N, Wu H, Wu H, Ji C, Zheng H, Chen Y, Ye S, Li X, Zhao X, Li R, Liu Y G. 2013. A detrimental mitochondrial-nuclear interaction causes cytoplasmic male sterility in rice. Nature Genetics, 45, 573–577.Motomura K, Ishimine Y, Murayama S, Higa T, Goya A, Motoyose T. 2001. Inheritance of cytoplasmic male sterility and restorer of fertility gene in a developed rice line, RT98C. Japanese Journal of Tropical Agriculture, 45, 202–208. (in Japanese)Motomura K, Moromizato Z, Adaniya S. 2003. Inheritance of cytoplasmic male sterility and restoration of fertility in rice line, RT102C, derived from Oryza rufipogon. Japanese Journal of Tropical Agriculture, 47, 70–76. Okazaki M, Kazama T, Murata H, Motomura K, Toriyama K. 2013. Whole mitochondrial genome sequencing and transcriptional analysis to uncover an RT102-type cytoplasmic male sterility-associated candidate gene derived from Oryza rufipogon. Plant and Cell Physiology, 54, 1560–1568.Rajendrakumar P, Biswal A K, Balachandran S M, Ramesha M S, Viraktamath B C, Sundaram R M. 2007. A mitochondrial repeat specific marker for distinguishing wild abortive type cytoplasmic male sterile rice lines from their cognate isogenic maintainer lines. Crop Science, 47, 207–211.Rao Y S. 1988. Cytohistology of cytoplasmic male sterile lines in hybrid rice. In: Smith W H, Bostian L R, Cervantes E P, eds., Hybrid Rice. International Rice Research Institute, Manila, Philippines. pp. 115–128.Shen X, Yan S, Huang R, Zhu S, Xiong H, Shen L. 2013. Development of novel cytoplasmic male sterile source from Dongxiang wild rice (Oryza rufipogon). Rice Science, 20, 379–382.Shinjyo C. 1969. Cytoplasmic genetic male sterility in cultivated rice, Oryza sativa L. Part II. The inheritance of male sterility. Japanese Journal of Genetics, 44, 149–156.Tan Y, Xu X, Wang C, Cheng G, Li S, Liu X. 2015. Molecular characterization and application of a novel cytoplasmic male sterility-associated mitochondrial sequence in rice. BMC Genetics, 16, 45.Untergasser A, Cutcutache I, Koressaar T, Ye J, Faircloth BC, Remm M, Rozen S G. 2012. Primer3 - New capabilities and interfaces. Nucleic Acids Research, 40, e115.Wang N Y. 2009. Explorations and studies on CMS-FA hybrid rice breeding technology. Journal of Agricultural Science and Technology, 11, 7–12. (in Chinese)Wang Z, Zou Y, Li X, Zhang Q, Chen L, Wu H, Su D, Chen Y, Guo J, Luo D, Long Y, Zhong Y, Liu Y G. 2006. Cytoplasmic male sterility of rice with boro II cytoplasm is caused by a cytotoxic peptide and is restored by two related PPR motif genes via distinct modes of mRNA silencing. The Plant Cell, 18, 676–687.Wu R X. 1986. Breeding and application of a CMS-DA line Xieqingzao A. Seed, 5–6, 16–18. (in Chinese)Xiao X, Wang Y, Xiao S, Xiong X, Zhou J, Zhou C. 2001. Breeding of new cytoplasmic male sterile line “Dong B11A” from Dongxiang wild rice. Acta Agriculturae Jiangxi, 13, 8–11. (in Chinese)Xie J, Chen Q, Chen D, Qiu B, Wan Y. 2002. SSLP analysis of nuclear genome in Dongxiang wild rice. Acta Agriculturae Jiangxi, 14, 1–6. (in Chinese)Yi P, Wang L, Sun Q, Zhu Y. 2002. Discovery of mitochondrial chimeric gene associated with cytoplasmic male sterility of HL-rice. Chinese Science Bulletin, 47, 744–747. Yuan L P. 1986. Hybrid rice in China. Chinese Journal of Rice Science, 1, 8–18. (in Chinese) |