PGT_2024v15n3

Plant Gene and Traits 2024, Vol.15, No.3, 141-151 http://genbreedpublisher.com/index.php/pgt 150 Haliru B., Rafii M., Mazlan N., Ramlee S., Muhammad I., Akos I., Halidu J., Swaray S., and Bashir Y., 2020, Recent strategies for detection and improvement of brown planthopper resistance genes in rice: a study, Plants, 23: 9. https://doi.org/10.3390/plants9091202 PMid:32937908 PMCid:PMC7569854 Li Y., Cheah B., Fang Y., Kuang Y., Lin S., Liao C., Huang S., Lin Y., and Chuang W., 2021, Transcriptomics identifies key defense mechanisms in rice resistant to both leaf-feeding and phloem feeding herbivores, BMC Plant Biology, 21(1): 306. https://doi.org/10.1186/s12870-021-03068-5 PMid:34193042 PMCid:PMC8243607 Mishra A., Barik S., Pandit E., Yadav S., Das S., and Pradhan S., 2022, Genetics, mechanisms and deployment of brown planthopper resistance genes in rice, Critical Reviews in Plant Sciences, 41: 91-127. https://doi.org/10.1080/07352689.2022.2062906 Tan H., Palyam S., Gouda J., Kumar P., and Chellian S., 2021, Identification of two QTLs, BPH41 and BPH42, and their respective gene candidates for brown planthopper resistance in rice, Scientific Reports, 12: 21. https://doi.org/10.21203/rs.3.rs-979035/v1 Li Y., Fan C., Xing Y., Jiang Y., Luo L., Sun L., Shao D., Xu C., Li X., Xiao J., He Y., and Zhang Q., 2011, Natural variation in GS5 plays an important role in regulating grain size and yield in rice, Nature Genetics, 43: 1266-1269. https://doi.org/10.1038/ng.977 PMid:22019783 Lyu J., Wang D., Duan P., Liu Y., Huang K., Zeng D., Zhang L., Dong G., Li Y., Xu R., Zhang B., Huang X., Li N., Wang Y., Qian Q., and Li Y., 2020, Control of grain size and weight by the GSK2-Large1/OML4 pathway in rice, Plant Cell, 32: 1905-1918. https://doi.org/10.1105/tpc.19.00468 PMid:32303659 PMCid:PMC7268794 Ma X., Feng F., Zhang Y., Elesawi I., Xu K., Li T., Mei H., Liu H., Gao N., Chen C., Luo L., and Yu S., 2019, A novel rice grain size gene OsSNBwas identified by genome-wide association study in natural population, PLoS Genetics, 15: 71. https://doi.org/10.1371/journal.pgen.1008191 PMid:31150378 PMCid:PMC6581277 Ngangkham U., Samantaray S., Yadav M., Kumar A., Chidambaranathan P., and Katara J., 2018, Effect of multiple allelic combinations of genes on regulating grain size in rice, PLoS One, 13: 84. https://doi.org/10.1371/journal.pone.0190684 PMid:29304121 PMCid:PMC5755915 Ruan B., Shang L., Zhang B., Hu J., Wang Y., Lin H., Zhang A., Liu C., Peng Y., Zhu L., Ren D., Shen L., Dong G., Zhang G., Zeng D., Guo L., Qian Q., and Gao Z., 2020, Natural variation in the promoter of TGW2 determines grain width and weight in rice, The New Phytologist, 11: 40. https://doi.org/10.1111/nph.16540 PMid:32167575 Radchenko E., Abdullaev R., and Anisimova I., 2022, Genetic resources of cereal crops for aphid resistance, Plants, 11:19. https://doi.org/10.3390/plants11111490 PMid:35684263 PMCid:PMC9182920 Ramayya P., Vinukonda V., Singh U., Alam S., Venkateshwarlu C., Vipparla A., Dixit S., Yadav S., Abbai R., Badri J., Padmakumari A., Singh V., and Kumar A., 2021, Marker-assisted forward and backcross breeding for improvement of elite Indian rice variety naveen for multiple biotic and abiotic stress tolerance, PLoS One, 16: 21. https://doi.org/10.1371/journal.pone.0256721 PMid:34473798 PMCid:PMC8412243 Shi C., Dong N., Guo T., Ye W., Shan J., and Lin H., 2020, A quantitative trait locus GW6 controls rice grain size and yield through the gibberellin pathway, The Plant Journal, 11: 93. https://doi.org/10.1111/tpj.14793 PMid:32365409 Tian P., Liu J., Mou C., Shi C., Zhang H., Zhao Z., Lin Q., Wang J., Wang J., Zhang X., Guo X., Cheng Z., Zhu S., Ren Y., Lei C., Wang H., and Wan J., 2019, GW5-Like, a homolog of GW5, negatively regulates grain width, weight and salt resistance in rice, Journal of Integrative Plant Biology, 12: 74. https://doi.org/10.1111/jipb.12745 PMid:30450718 Usman B., Zhao N., Nawaz G., Qin B., Liu F., Liu Y., and Li R., 2021, CRISPR/Cas9 guided mutagenesis of grain size 3 confers increased rice (Oryza sativa L.) grain length by regulating cysteine proteinase inhibitor and ubiquitin-related proteins, International Journal of Molecular Sciences, 22: 25. https://doi.org/10.3390/ijms22063225 PMid:33810044 PMCid:PMC8004693 Wang D., Sun W., Yuan Z., Sun Q., Fan K., Zhang C., and Yu S., 2021, Identification of a novel QTL and candidate gene associated with grain size using chromosome segment substitution lines in rice, Scientific Reports, 11: 6. https://doi.org/10.1038/s41598-020-80667-6 PMid:33420305 PMCid:PMC7794494

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