CMB_2025v15n1

Computational Molecular Biology 2025, Vol.15, No.1, 26-37 http://bioscipublisher.com/index.php/cmb 36 Fogelman E., Oren-Shamir M., Hirschberg J., Mandolino G., Parisi B., Ovadia R., Tanami Z., Faigenboim A., and Ginzberg I., 2019, Nutritional value of potato (Solanum tuberosum) in hot climates: anthocyanins, carotenoids, and steroidal glycoalkaloids, Planta, 249(4): 1143-1155. https://doi.org/10.1007/s00425-018-03078-y Hannapel D., and Banerjee A., 2017, Multiple mobile mRNA signals regulate tuber development in potato, Plants, 6(1): 8. https://doi.org/10.3390/plants6010008 Han Y.P., 2024, Application of CRISPR/Cas9 technology in editing poplar drought resistance genes, Molecular Plant Breeding, 15(2): 81-89. https://doi.org/10.5376/mpb.2024.15.0010 Jiang L.R., and Xu W.Y., 2024, Expanding genetic horizons: the role of MAGIC populations in enhancing plant breeding efficiency, Molecular Plant Breeding, 15(3): 100-111. https://doi.org/10.5376/mpb.2024.15.0012 Kondhare K., Vetal P., Kalsi 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Engineering drought tolerance in crops using CRISPR Cas systems, Plant Science Today, 10: 255-259. https://doi.org/10.14719/pst.2524 Moon K., Park S., park J., Lee H., Shin S., Lee S., Choi G., Kim S., Cho H., Jeon J., Kim Y., Park Y., and Kim H., 2022, Editing of StSR4 by Cas9-RNPs confers resistance to Phytophthora infestans in potato, Frontiers in Plant Science, 13: 997888. https://doi.org/10.3389/fpls.2022.997888 Malankar N., Kondhare K., Saha K., Mantri M., and Banerjee A., 2023, The phasiRNA siRD29(-) regulates GIBBERELLIN 3-OXIDASE 3 during stolon-to-tuber transitions in potato, Plant Physiology, 193(4): 2555-2572. https://doi.org/10.1093/plphys/kiad493 Nurmanov Y., Chernenok V., and Kuzdanova R., 2019, Potato in response to nitrogen nutrition regime and nitrogen fertilization, Field Crops Research, 231: 115-121. https://doi.org/10.1016/J.FCR.2018.11.014 Park J., Park S., Kwon S., Shin A., Moon K., Park J., Cho H., Park S., Jeon J., Kim H., and Lee H., 2020, Temporally distinct regulatory pathways coordinate thermo-responsive storage organ formation in potato, Cell Reports, 38(13): 110579. https://doi.org/10.2139/ssrn.3717719 Qi W., Ma J., Zhang J., Gui M., Li J., and Zhang L., 2020, Effects of low doses of UV-B radiation supplementation on tuber quality in purple potato (Solanum tuberosumL.), Plant Signaling & Behavior, 15(9): 1783490. https://doi.org/10.1080/15592324.2020.1783490 Razzaq M., Aleem M., Mansoor S., Khan M., Rauf S., Iqbal S., and Siddique K., 2021, Omics and CRISPR-Cas9 approaches for molecular insight, functional gene analysis, and stress tolerance development in crops, International Journal of Molecular Sciences, 22(3): 1292. https://doi.org/10.3390/ijms22031292 Santin F., Bhogale S., Fantino E., Grandellis C., Banerjee A., and Ulloa R., 2017, Solanum tuberosum StCDPK1 is regulated by miR390 at the posttranscriptional level and phosphorylates the auxin efflux carrier StPIN4 in vitro, a potential downstream target in potato development, Physiologia Plantarum, 159(2): 244-261. https://doi.org/10.1111/ppl.12517 Saidi A., and Hajibarat Z., 2021, Phytohormones: plant switchers in developmental and growth stages in potato, Journal of Genetic Engineering and Biotechnology, 19(1): 89. https://doi.org/10.1186/s43141-021-00192-5 Sprenger H., Kurowsky C., Horn R., Erban A., Seddig S., Rudack K., Fischer A., Walther D., Zuther E., Köhl K., Hincha D., and Kopka J., 2016, The drought response of potato reference cultivars with contrasting tolerance, Plant, Cell & Environment, 39(11): 2370-2389. https://doi.org/10.1111/pce.12780 Wang K., Zhang N., Fu X., Zhang H., Liu S., Pu X., Wang X., and Si H., 2022, StTCP15 regulates potato tuber sprouting by modulating the dynamic balance between abscisic acid and gibberellic acid, Frontiers in Plant Science, 13: 1009552. https://doi.org/10.3389/fpls.2022.1009552 Wichrowska D., Rolbiecki R., Rolbiecki S., Sadan H., Figas A., Jagosz B., Atilgan A., and Pál-Fám F., 2021, Effect of Drip 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