MPB_2024v15n4

Molecular Plant Breeding 2024, Vol.15, No.4, 167-177 http://genbreedpublisher.com/index.php/mpb 175 References Bei X., Shahid M., Wu J., Chen Z., Wang L., and Liu X., 2019, Re-sequencing and transcriptome analysis reveal rich DNA variations and differential expressions of fertility-related genes in neo-tetraploid rice, PLoS One, 14(4): e0214953. https://doi.org/10.1371/journal.pone.0214953 PMid:30951558 PMCid:PMC6450637 Cai D., Chen J., Chen D., Dai B., Zhang W., Song Z., Yang Z., Du C., Tang Z., He Y., Zhang D., He G., and Zhu Y., 2007, The breeding of two polyploid rice lines with the characteristic of polyploid meiosis stability, Science in China Series C: Life Sciences, 50: 356-366. https://doi.org/10.1007/s11427-007-0049-6 PMid:17609893 Chen L., Guo H., Chen S., Yang H., Ghouri F., and Shahid M., 2020, Comparative study on cytogenetics and transcriptome between diploid and autotetraploid rice hybrids harboring double neutral genes, PLoS One, 15(9): e0239377. https://doi.org/10.1371/journal.pone.0239377 PMid:32986735 PMCid:PMC7521696 Chen L., Shahid M.Q., Wu J., Chen Z., Wang L., and Liu X., 2018, Cytological and transcriptome analyses reveal abrupt gene expression for meiosis and saccharide metabolisms that associated with pollen abortion in autotetraploid rice, Molecular Genetics and Genomics, 293(6): 1407-1420. https://doi.org/10.1007/s00438-018-1471-0 PMid:29974305 PMCid:PMC6244853 Chen L., Yuan Y., Wu J., Chen Z., Wang L., Shahid M.Q., and Liu X., 2019, Carbohydrate metabolism and fertility related genes high expression levels promote heterosis in autotetraploid rice harboring double neutral genes, Rice, 12(1): 34. https://doi.org/10.1186/s12284-019-0294-x PMid:31076936 PMCid:PMC6510787 Chen R., Feng Z., Zhang X., Song Z., and Cai D., 2021, A new way of rice breeding: polyploid rice breeding, Plants, 10(3): 422. https://doi.org/10.3390/plants10030422 PMid:33668223 PMCid:PMC7996342 Chen Y., Shahid M., Wu J., Deng R., Chen Z., Wang L., Liu G., Zhou H., and Liu X., 2022, Thermo-sensitive genic male sterile lines of neo-tetraploid rice developed through gene editing technology revealed high levels of hybrid vigor, Plants, 11(11): 1390. https://doi.org/10.3390/plants11111390 PMid:35684163 PMCid:PMC9182671 Clark J.W., and Donoghue P.C.J., 2018, Whole-genome duplication and plant macroevolution, Trends in Plant Science, 23(10): 933-945. https://doi.org/10.1016/j.tplants.2018.07.006 PMid:30122372 Fimanekeni N., Nabieu K., and Liu X., 2023, Sequencing of S5 gene in autotetraploid rice japonica and indica to overcome F1 hybrids embryo sac sterility, International Journal of Genetics and Molecular Biology, 15(2): 21-30. https://doi.org/10.5897/IJGMB2021.0211 Gaballah M., Attia K., Ghoneim A., Khan N., EL-Ezz A., Yang B., Xiao L., Ibrahim E., and Al-Doss A., 2022, Assessment of genetic parameters and gene action associated with heterosis for enhancing yield characters in novel hybrid rice parental lines, Plants, 11(3): 266. https://doi.org/10.3390/plants11030266 PMid:35161248 PMCid:PMC8838428 Ghaleb M.A.A., Li C., Shahid M.Q., Yu H., Liang J., Chen R., Wu J., and Liu X., 2020, Heterosis analysis and underlying molecular regulatory mechanism in a wide-compatible neo-tetraploid rice line with long panicles, BMC Plant Biology, 20: 83. https://doi.org/10.1186/s12870-020-2291-z PMid:32085735 PMCid:PMC7035737 Guo H., Mendrikahy J., Xie L., Deng J., Lu Z., Wu J., Li X., Shahid M., and Liu X., 2017, Transcriptome analysis of neo-tetraploid rice reveals specific differential gene expressions associated with fertility and heterosis, Scientific Reports, 7: 40139. https://doi.org/10.1038/srep40139 PMid:28071676 PMCid:PMC5223177 He J., Shahid M., Li Y., Guo H., Cheng X., Liu X., and Lu Y., 2011, Allelic interaction of F1 pollen sterility loci and abnormal chromosome behaviour caused pollen sterility in intersubspecific autotetraploid rice hybrids, Journal of Experimental Botany, 62: 4433-4445. https://doi.org/10.1093/jxb/err098 PMid:21624978 PMCid:PMC3170543 He Y., Ge J., Wei Q., Jiang A., Gan L., Song Z., and Cai D., 2011, Using a polyploid meiosis stability (PMeS) line as a parent improves embryo development and the seed set rate of a tetraploid rice hybrid, Canadian Journal of Plant Science. 91(2): 325-335. https://doi.org/10.4141/CJPS09190 Ichijima K., 1934, On the artificially induced mutations and polyploid plants of rice occurring in subsequent generations, Proceedings of the Japan Academy, 10(6): 388-391. https://doi.org/10.2183/pjab1912.10.388

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