Construction of rice chromosome segment substitution lines harboring Oryza barthii genome and evaluation of yield-related traits
Author:
Affiliation:
1. Bioscience and Biotechnology Center, Nagoya University
2. Department of Plant and Soil Science, Texas Tech University
3. STAY GREEN Co., Ltd.
Publisher
Japanese Society of Breeding
Subject
Plant Science,Genetics,Agronomy and Crop Science
Link
https://www.jstage.jst.go.jp/article/jsbbs/67/4/67_17022/_pdf
Reference48 articles.
1. Ali, M.L., L.P. Sanchez, S.B. Yu, M. Lorieux and G.C. Eizenga (2010) Chromosome segment substitution lines: a powerful tool for the introgression of valuable genes from Oryza wild species into cultivated rice (O. sativa). Rice 3: 218–234.
2. Amarawathi, Y., R. Singh, K.A. Singh, P.V. Singh, T. Mohapatra, R.T. Sharma and K.N. Singh (2008) Mapping of quantitative trait loci for basmati quality traits in rice (Oryza sativa L.). Mol. Breed. 21: 49–65.
3. Bessho-Uehara, K., D.R. Wang, T. Furuta, A. Minami, K. Nagai, R. Gamuyao, K. Asano, R.B. Angeles-Shim, Y. Shimizu, M. Ayano et al. (2016) Loss of function at RAE2, a previously unidentified EPFL, is required for awnlessness in cultivated Asian rice. Proc. Natl. Acad. Sci. USA 113: 8969–8974.
4. Bian, J.M., L. Jiang, L.L. Liu, X.J. Wei, Y.H. Xiao, L.J. Zhang, Z.G. Zhao, H.Q. Zhai and J.M. Wan (2010) Construction of a new set of rice chromosome segment substitution lines and identification of grain weight and related traits QTLs. Breed. Sci. 60: 305–313.
5. Cheema, K.K., N.K. Grewal, Y. Vikal, R. Sharma, J.S. Lore, A. Das, D. Bhatia, R. Mahajan, V. Gupta, T.S. Bharaj et al. (2008) A novel bacterial blight resistance gene from Oryza nivara mapped to 38 Kb region on chromosome 4L and transferred to Oryza sativa L. Genet. Res. 90: 397–407.
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