MSB_2025v16n2

Molecular Soil Biology 2025, Vol.16, No.2, 55-62 http://bioscipublisher.com/index.php/msb 62 Posse R., Borghi E., Fornaciari G., Valani F., Boni F., Moreira R., and Costa G., 2019, Influence of irrigation depths in the growth of Chrysanthemum puritan cultivar, cultivated in pots, under open field conditions, in the Northwest region of Espírito Santo, Journal of Experimental Agriculture International, 30: 1-8. https://doi.org/10.9734/JEAI/2019/46465 Sahithi B., Razi K., Murad M., Vinothkumar A., Saravanan J., Benjamin L., Jeong B., and Muneer S., 2020, Comparative physiological and proteomic analysis deciphering tolerance and homeostatic signaling pathways in Chrysanthemum under drought stress, Physiologia Plantarum, 172(2): 289-303. https://doi.org/10.1111/ppl.13142 Sun J., Gu J., Zeng J., Han S., Song A., Chen F., Fang W., Jiang J., and Chen S., 2013, Changes in leaf morphology, antioxidant activity and photosynthesis capacity in two different drought-tolerant cultivars of chrysanthemum during and after water stress, Scientia Horticulturae, 161: 249-258. https://doi.org/10.1016/J.SCIENTA.2013.07.015 Sun Q., Hua S., Ye J., Zheng X., and Liang Y., 2010,. Flavonoids and volatiles in Chrysanthemum morifoliumRamat flower from Tongxiang county in China, African Journal of Biotechnology, 9: 3817-3821. https://doi.org/10.5897/AJB2010.000-3252 Taweesak V., Abdullah T., Hassan S., Kamarulzaman N., and Yusoff W., 2014, Growth and flowering responses of cut Chrysanthemum grown under restricted root volume to irrigation frequency, The Scientific World Journal, 2014(1): 254867. https://doi.org/10.1155/2014/254867 Turan A., Uçar Y., and Kazaz S., 2015, Effects of different irrigation treatments on quality parameters of cut chrysanthemum, Scientific Papers. Series B, Horticulture, LIX: 419-426. Vimal V.B., Bala M.B.M., and Sharda R.S.R., 2022, Assessment of Nitrogen fertigation and plant spacing in Chrysanthemum (Chrysanthemum morifolium Ramat.) cv. Ratlam selection, Int. J. Agric. Extension. Social. Dev., 7(7S): 108-112. https://doi.org/10.33545/26180723.2024.v7.i7sb.809 Wahome P., and Shongwe N., 2014, Effects of salinity stress on vegetative growth of chrysanthemum [Dendranthemaglandiflora Kitam.], UNISWA Journal of Agriculture, 15: 19-27. Wang W.P., Zhang B., and Li M.M., 2024, Big data analytics in biology: a systematic review of methods for large-scale data processing, Computational Molecular Biology, 14(3): 97-105. Xu Y., Liu Y., Peng Z., Guo L., and Liu D., 2021, Effects of chemical fertilizer reduction combined with organic fertilizer on the yield, quality, and pharmacological activity of Chrysanthemum morifolium, Ying yong sheng tai xue bao = The journal of applied ecology, 32(8): 2800-2808. https://doi.org/10.13287/j.1001-9332.202108.024 Yasemin S., Köksal N., and Ansari B., 2022, A cut flower cultivation under saline conditions: C. morifoliumRamat ‘Bacardi’, Polish Journal of Environmental Studies, 31(2): 1901-1907. Yuan H., Jiang S., Liu Y., Daniyal M., Jian Y., Peng C., Shen J., Liu S., and Wang W., 2020, The flower head of Chrysanthemum morifoliumRamat. (Juhua): A paradigm of flowers serving as Chinese dietary herbal medicine, Journal of Ethnopharmacology, 261: 113043. https://doi.org/10.1016/j.jep.2020.113043 Zhang W., Wang T., Guo Q., Zou Q., Yang F., Lu D., and Liu J., 2020, Effect of soil moisture regimes in the early flowering stage on inflorescence morphology and medicinal ingredients of Chrysanthemum morifoliumRamat. Cv. ‘Hangju’, Scientia Horticulturae, 260: 108849. https://doi.org/10.1016/j.scienta.2019.108849

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