[1]

Yuan LP. 2014. Development of hybrid rice to ensure food security. Rice Science 21:1−2

doi: 10.1016/S1672-6308(13)60167-5
[2]

Li J, Yuan L. 1999. >Hybrid rice: genetics, breeding, and seed production. In Plant Breeding Reviews, ed. Janick J. vol. 17. John Wiley & Sons. pp. 15−158. https://doi.org/10.1002/9780470650134.ch2

[3]

Yang W, Fang Y, Yan Z, Shen G, Wang H, et al. 2022. Progress and prospect of hybrid rice mechanized seed production technology in China. Journal of Agricultural Catastrophology 12(7):176−78

doi: 10.3969/j.issn.2095-3305.2022.07.057
[4]

Tang W, Zhang G, Deng H. 2020. Technology exploration and practice of hybrid rice mechanized seed production. Chinese Journal of Rice Science 34(2):95−103

doi: 10.16819/j.1001-7216.2020.9130
[5]

Maruyama K, Kato H, Araki H. 1991. Mechanized production of F1 seeds in rice by mixed planting. Japan Agricultural Research Quarterly 24:243−52

[6]

Li H, You C, Yoshikawa M, Yang X, Gu H, et al. 2022. A spontaneous thermo-sensitive female sterility mutation in rice enables fully mechanized hybrid breeding. Cell Research 32:931−45

doi: 10.1038/s41422-022-00711-0
[7]

Xu E, Wang Y, Ni S, Chen H, Zhu X. 2015. Application of small grain recessive gene in the mechanical sorting of hybrid rice seeds. China Rice 21(3):8−11

[8]

Yu Y, Wu Y, Zeng X, Yuan L. 2007. Characterization and genetic studies on dwarf rice mutant Xiaoxiangai with small grains. Hybrid Rice (6): 67–70

[9]

Fan Y, Li Y. 2019. Molecular, cellular and Yin-Yang regulation of grain size and number in rice. Molecular Breeding 39:163

doi: 10.1007/s11032-019-1078-0
[10]

Li N, Xu R, Li Y. 2019. Molecular networks of seed size control in plants. Annual Review of Plant Biology 70:11.1−11.30

doi: 10.1146/annurev-arplant-050718-095851
[11]

Zhao D, Zhang C, Li Q, Liu Q. 2022. Genetic control of grain appearance quality in rice. Biotechnology Advances 60:108014

doi: 10.1016/j.biotechadv.2022.108014
[12]

Li N, Chen L, Li Y. 2023. Control of grain size and number by MAPK signaling in rice. Seed Biology 2:15−11

doi: 10.3390/seeds2010002
[13]

Ying J, Qin Y, Zhang F, Duan L, Cheng P, et al. 2024. A weak allele of TGW5 enables greater seed propagation and efficient size-based seed sorting for hybrid rice production. Plant Communications 5:100811

doi: 10.1016/j.xplc.2024.100811
[14]

Huang K, Wang Y, Li Y, Zhang B, Zhang L, et al. 2024. Modulation of histone acetylation enables fully mechanized hybrid rice breeding. Nature Plants

[15]

Albert D, Vijayaraghavareddy P, Sreeman S. 2024. Seed size, an imperative trait for seed vigor and drought tolerance in rice. Cereal Research Communications 52:559−68

doi: 10.1007/s42976-023-00403-4