RGG_2024v15n4

Rice Genomics and Genetics 2024, Vol.15, No.4, 178-189 http://cropscipublisher.com/index.php/rgg 189 Wang J., Shi J., Liu S., Sun X., Huang J., Qiao W., Cheng Y., Zhang L., Zheng X., and Yang Q., 2020, Conservation recommendations for Oryza rufipogon Griff., in China based on genetic diversity analysis, Scientific Reports, 10(1): 14375. https://doi.org/10.1038/s41598-020-70989-w Wang M., Yu Y., Haberer G., Marri P., Fan C., Goicoechea J., Zuccolo A., Song X., Kudrna D., Ammiraju J., Cossu R., Maldonado C., Chen J., Lee S., Sisneros N., Baynast K., Golser W., Wissotski M., Kim W., Sanchez P., Ndjiondjop M., Sanni K., Long M., Carney J., Panaud O., Wicker T., Machado C., Chen M., Mayer K., Rounsley S., and Wing R., 2014, The genome sequence of African rice (Oryza glaberrima) and evidence for independent domestication, Nature Genetics, 46(9): 982-988. https://doi.org/10.1038/ng.3044 Wang W., Mauleon R., Hu Z., Chebotarov D., Tai S., Wu Z., Li M., Zheng T., Fuentes R., Zhang F., Mansueto L., Copetti D., Sanciangco M., Palis K., Xu J., Sun C., Fu B., Zhang H., Gao Y., Zhao X., Shen F., Cui X., Yu H., Li Z., Chen M., Detras J., Zhou Y., Zhang X., Zhao Y., Kudrna D., Wang C., Li R., Jia B., Lu J., He X., Dong Z., Xu J., Li Y., Wang M., Shi J., Li J., Zhang D., Lee S., Hu W., Poliakov A., Dubchak I., Ulat V., Borja F., Mendoza J., Ali J., Gao Q., Niu Y., Yue Z., Naredo M., Talag J., Wang X., Li J., Fang X., Yin Y., Glaszmann J., Zhang J., Li J., Hamilton R., Wing R., Ruan J., Zhang G., Wei C., Alexandrov N., McNally K., Li Z., and Leung H., 2018, Genomic variation in 3 010 diverse accessions of Asian cultivated rice, Nature, 557(7703): 43-49. https://doi.org/10.1038/s41586-018-0063-9 Watarai N., Yamamoto N., Sawada K., and Yamada T., 2019, Evolution of aspergillus Oryzae before and after domestication inferred by large-scale comparative genomic analysis, DNA Research, 26(6): 465-472. https://doi.org/10.1093/dnares/dsz024 Wei X., Qiao W., Chen Y., Wang R., Cao L., Zhang W., Yuan N., Li Z., Zeng H., and Yang Q., 2012, Domestication and geographic origin of Oryza sativa in China: insights from multilocus analysis of nucleotide variation of O. sativa and O. rufipogo, Molecular Ecology, 21(20): 5073-5087. https://doi.org/10.1111/j.1365-294X.2012.05748.x Yu X., Zhao Z., Zheng X., Zhou J., Kong W., Wang P., Bai W., Zheng H., Zhang H., Li J., Liu J., Wang Q., Zhang L., Liu K., Yu Y., Guo X., Wang J., Lin Q., Wu F., Ren Y., Zhu S., Zhang X., Cheng Z., Lei C., Liu S., Liu X., Tian Y., Jiang L., Ge S., Wu C., Tao D., Wang H., and Wan J., 2018, A selfish genetic element confers non-mendelian inheritance in rice, Science, 360(6393): 1130-1132. https://doi.org/10.1126/science.aar4279 Zhang J., Pan D., Fan Z., Yu H., Jiang L., Lv S., Sun B., Chen W., Mao X., Liu Q., and Li C., 2022, Genetic diversity of wild rice accessions (Oryza rufipogon Griff.) in Guangdong and Hainan provinces, China, and construction of a wild rice core collection, Frontiers in Plant Science, 13: 999454. https://doi.org/10.3389/fpls.2022.999454 Zheng X., Pang H., Wang J., Yao X., Song Y., Li F., Lou D., Ge J., Zhao Z., Qiao W., Kim S., Ye G., Olsen K., Liu C., and Yang Q., 2021, Genomic signatures of domestication and adaptation during geographical expansions of rice cultivation, Plant Biotechnology Journal, 20(1): 16. https://doi.org/10.1111/pbi.13730 Zhou J., Yang Y., Lv Y., Pu Q., Li J., Zhang Y., Deng X., Wang M., Wang J., and Tao D., 2022, Interspecific hybridization is an important driving force for origin and diversification of Asian cultivated rice Oryza sativa L., Frontiers in Plant Science, 13: 932737. https://doi.org/10.3389/fpls.2022.932737

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