Chen W F, Xu Z J, Zhang L B, Zhang W Z, Ma D R. 2007. Theories and practices of breeding japonica rice for super high yield. Scientia Agricultura Sinica, 40, 869–874. (in Chinese)
Cui Y, Zhu M M, Xu Z J, Xu Q. 2019. Assessment of the effect of ten heading time genes on reproductive transition and yield components in rice using a CRISPR/Cas9 system. Theoretical and Applied Genetics, 132, 1887–1896.
Cui Y F, Meng J, Wang Q X, Zhang W M, Cheng X Y, Chen W F. 2017. Effects of straw and biochar addition on soil nitrogen, carbon, and super rice yield in cold waterlogged paddy soils of North China. Journal of Integrative Agriculture, 16, 1064–1074.
Duan M, Sun Z, Shu L, Tan Y, Yu D, Sun X, Liu R, Li Y, Gong S, Yuan D. 2013. Genetic analysis of an elite super-hybrid rice parent using high-density SNP markers. Rice, 6, 21.
Endo-Higashi N, Izawa T. 2011. Flowering time genes Heading date 1 and Early heading date 1 together control panicle development in rice. Plant & Cell Physiology, 52, 1083–1094.
Fan M, Wang X, Sun J, Zhang Q, Xu Z, Xu Q, 2017. Effect of indica pedigree on eating and cooking quality in rice backcross inbred lines of indica and japonica crosses. Breeding Science, 67, 450–458.
GB/T 17891-1999. 1999. High Quality Paddy Rice. General Administration of Quality Supervision, Inspection and Quarantine of the People’s Republic of China. (in Chinese)
Huang X, Qian Q, Liu Z, Sun H, He S, Luo D, Xia G, Chu C, Li J, Fu X. 2009. Natural variation at the DEP1 locus enhances grain yield in rice. Nature Genetics, 41, 494–497.
Jiao Y, Wang Y, Xue D, Wang J, Yan M, Liu G, Dong G, Zeng D, Lu Z, Zhu X. 2010. Regulation of OsSPL14 by OsmiR156 defines ideal plant architecture in rice. Nature Genetics, 42, 541–544.
NY/T 83-1988. 1988. Determination of Rice Quality. The Ministry of Agriculture of the People’s Republic of China. (in Chinese)
Peng S, Khus G S, Virk P, Tang Q, Zou Y. 2008. Progress in ideotype breeding to increase rice yield potential. Field Crops Research, 108, 32–38.
Phing L, Wendy C L, Mohammad A Y. Rafii, Mohd I, Mohd R P, Adam. 2016. Advances to improve the eating and cooking qualities of rice by marker-assisted breeding. Critical Reviews in Biotechnology, 36, 87–98.
Qian Q, Guo L, Smith S M, Li J. 2016. Breeding high-yield superior-quality hybrid super-rice by rational design. National Science Review, 3, 283–294.
Sun J, Liu D, Wang J Y, Ma D R, Tang L, Gao H, Xu Z J, Chen W F. 2012. The contribution of intersubspecific hybridization to the breeding of super-high-yielding japonica rice in northeast China. Theoretical and Applied Genetics, 125, 1149–1157.
Tian Z, Qian Q, Liu Q, Yan M, Liu X, Yan C, Liu G, Gao Z, Tang S, Zeng D. 2009. Allelic diversities in rice starch biosynthesis lead to a diverse array of rice eating and cooking qualities. Proceedings of the National Academy of Sciences of the United States of America, 106, 21760–21765.
Wang J, Yu H, Xiong, G S, Lu Z F, Jiao Y Q, Meng X B, Liu G F, Chen X W, Wang Y H, Li J Y. 2017. Tissue-specific ubiquitination by IPA1 INTERACTING PROTEIN1 modulates IPA1 protein levels to regulate plant architecture in rice. The Plant Cell, 29, 697–707.
Wang Y Z, Wang X J, Yuan L, Xu H, Wang J Y, Zhao M H, Tang L, Ma D R, Xu Z J, Chen W F. 2015. Analysis of yield and quality traits and their relationship in japonica rice in Northern China. Acta Agronomica Sinica, 41, 910–918. (in Chinese)
Xu H, Zhao M, Zhang Q, Xu Z, Xu Q. 2016. The DENSE AND ERECT PANICLE 1 (DEP1) gene offering the potential in the breeding of high-yielding rice. Breeding Science, 66, 659.
Xu Q, Chen W F, Xu Z J. 2015. Relationship between grain yield and quality in rice germplasms grown across different growing areas. Breeding Science, 65, 226–232.
Zhao M, Sun J, Xiao Z, Cheng F, Xu H, Tang L, Chen W, Xu Z, Xu Q. 2016. Variations in DENSE AND ERECT PANICLE 1 (DEP1) contribute to the diversity of the panicle trait in high-yielding japonica rice varieties in northern China. Breeding Science, 66, 599–605.
Zhou J H, Tang L G, Xiao H Y. 2018. Estimating the average treatment effect of adopting stress tolerant variety on rice yield in China. Journal of Integrative Agriculture, 17, 940–948.
|