[1] Zhao K#, Xie J#, Zheng Y, et al. Identification and characterization of the structure genes involved in anthocyanin biosynthesis in flowers of Cymbidium species[J].Frontiers in Plant Science,2026,1-15 [2] Li, X., J. Li, A. Liu, Y. Zhang and K. Zhao*. "Effects of Different Agricultural Wastes on the Growth of Photinia × fraseri Under Natural Low-Temperature Conditions." Horticulturae ,2025,11(9):1-13. [3] Zhao K, Zhang Q, Wang Y, Wei Q, Wang Y. Advances in the biosynthesis and regulatory mechanisms of anthocyanins in horticultural plants: a comprehensive review. Tropical Plants. 2025,4(1):1-7. [4] Zhao K#, Liu# A, Zhang Y, Liu W, Zhao Z, Yang S. Comparative transcriptome analysis reveals changes in gene expression associated with anthocyanin metabolism in Begonia semperflorens under light conditions. Horticulturae. 2024,10(1):1-14. [5] Feng Y#, Zhao K#, Li J, Wang M, Yin H, Fan Z, et al. Transcriptome andpigment analyses provide insights into carotenoids and flavonoids biosynthesis in Camellia nitidissima stamens. Horticulturae. 2024,10(4). [6] Zhao Z #, Liu A #, Zhang Y, Yang X, Yang S, Zhao K*. Effects of progressive drought stress on the growth, ornamental values, and physiological properties of Begonia semperflorens. Horticulturae. 2024,10(4):1-12. [7] 赵坤坤, 王筠竹, 杜建科, 孙崇波. 兰花新品种‘飞天仙女. 园艺学报. 2024,51(S2):173-4. [8] Zhao K #, Jia D #, Zhang X, Li S, Su J, Jiang J, et al. FUL homologous gene CmFL1 is involved in regulating flowering time and floret numbers in Chrysanthemum morifolium. Plant Science. 2023:336. |