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Research Articles

Effect of fertilizer and harvesting stage on growth and bioactive compounds content of Rheum tanguticum

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Pages 4462-4476 | Received 12 Aug 2022, Accepted 28 Jun 2023, Published online: 10 Jul 2023

References

  • Cheng, Y., H. Q. Zhang, L. J. Qu, Y. He, M. N. Routledge, Y. Y. Gong, and B. L. Qiao. 2020. Identification of rhein as the metabolite responsible for toxicity of rhubarb anthraquinones. Food Chemistry 331:127363. doi:10.1016/j.foodchem.2020.127363.
  • Chotchutima, S., S. Tudsri, K. Kangvansaichol, and P. Sripichitt. 2016. Effects of sulfur and phosphorus application on the growth, biomass yield and fuel properties of leucaena (Leucaena leucocephala, (Lam.) de Wit.) as bioenergy crop on sandy infertile soil. Agriculture and Natural Resources 50 (1):54–9. doi:10.1016/j.anres.2015.09.002.
  • Cojocaru, A., L. Vlase, N. Munteanu, T. Stan, G. C. Teliban, M. Burducea, and V. Stoleru. 2020. Dynamic of phenolic compounds, antioxidant activity, and yield of rhubarb under chemical, organic and biological fertilization. Plants 9 (3):355. doi:10.3390/plants9030355.
  • Du, Z. Y., Y. W. Liu, N. Zhang, L. Y. Zhao, X. N. Zhai, and Z. W. Fan. 2021. Mechanism of Rhubarb action and present status of clinical research. Heilongjiang Medical Journal 45 (09):1001–4. doi:10.3969/j.issn.1004-5775.2021.09.041.
  • Gendy, A. G. E., A. E. E. Gohary, E. A. Omer, S. F. Hendawy, M. S. Hussein, V. Petrova, and I. Stancheva. 2015. Effect of nitrogen and potassium fertilizer on herbage and oil yield of chervil plant (Anthriscus cerefolium, L.). Industrial Crops and Products 69:167–74. doi:10.1016/j.indcrop.2015.02.023.
  • Huang, F., and G. H. Jiang. 2019. Research progress on rhubarb cultivation. Journal of Chinese Medicinal Materials 42 (1):230–4. doi:10.13863/j.issn1001-4454.2019.01.049.
  • Jid, S., T. R. B. da Silva, F. Rogério, R. F. Santos, and D. Secco. 2013. Yield response in crambe to potassium fertilizer. Industrial Crops and Products 43:297–300. doi:10.1016/j.indcrop.2012.07.043.
  • Kapoor, R., B. Giri, and K. G. Mukerji. 2004. Improved growth and essential oil yield and quality in Foeniculum vulgare, Mill on mycorrhizal inoculation supplemented with P-fertilizer. Bioresource Technology 93 (3):307–11. doi:10.1016/j.biortech.2003.10.028.
  • Kiymaz, S., B. Altun, and A. Ertek. 2022. Effect of different water regimes and nitrogen applications on the growth, yield, essential oil content, and quality parameters of the oil rose (Rosa damascena Mill.) Journal of Plant Nutrition 45 (14):2108–22. doi:10.1080/01904167.2022.2063730.
  • Koyama, J., I. Morita, and N. Kobayashi. 2007. Simultaneous determination of anthraquinones in rhubarb by high-performance liquid chromatography and capillary electrophoresis. Journal of Chromatography. A 1145 (1–2):183–9. doi:10.1016/j.chroma.2007.01.076.
  • Liang, W., Y. Chen, X. Li, F. X. Guo, J. C. Sun, X. M. Zhang, B. Xu, and W. Y. Gao. 2021. Label-free proteomic analysis of smoke-drying and shade-drying processes of postharvest rhubarb: a comparative study. Frontiers in Plant Science 12:663180. doi:10.3389/fpls.2021.663180.
  • Li, J., L. Meng, J. Zhang, S. L. Wei, and C. W. Lan. 2021. Effects of different fertilization treatments on fresh weight per plant and composition accumulation of Polygonum multiflorum. Modern Chinese Medicine 23 (5):839–4. doi:10.13313/j.issn.1673-4890.20200807001
  • Li, J., Q. Zhang, C. X. Xiao, and X. F. Pu. 2019. Determination of sennoside A sennoside B and in paiduyangyan capsules by HPLC. Asia-Pacific Traditional Medicine 15 (1):6–8. doi:10.11954/ytctyy.201901015.
  • Mirtaleb, S. H., Y. Niknejad, and H. Fallah. 2021. Foliar spray of amino acids and potassic fertilizer improves the nutritional quality of rice. Journal of Plant Nutrition 44 (14):2029–41. doi:10.1080/01904167.2021.1889588.
  • Pandey, V., and D. D. Patra. 2015. Crop productivity, aroma profile and antioxidant activity in Pelargonium graveolens, L’Hér. under integrated supply of various organic and chemical fertilizers. Industrial Crops and Products 67:257–63. doi:10.1016/j.indcrop.2015.01.042.
  • Jha, P., M. Ram, M. A. Khan, U. Kiran, M. Z. Abdin Mahmooduzzafar. 2011. Impact of organic manure and chemical fertilizers on artemisinin content and yield in Artemisia annua L. Industrial Crops & Products 33(2): 296–301. doi:10.1016/j.indcrop.2010.12.011.
  • Qi, H. 2015. Study on the key technology of standardized cultivation of Rheum tanguticum Maxim. ex Balf. Lanzhou: Gansu Agricultural University.
  • Sampaio, M. C., R. F. Santos, D. Bassegio, E. S. d Vasconselos, M. d A. Silva, D. Secco, and T. R. B. d Silva. 2016. Fertilizer improves seed and oil yield of safflower under tropical conditions. Industrial Crops and Products 94:589–95. doi:10.1016/j.indcrop.2016.09.041.
  • Seyyedi, S. M., P. R. Moghaddam, M. Khajeh-Hosseini, and L. Shahandeh. 2015. Influence of phosphorus and soil amendments on black seed (Nigella sativa L.) oil yield and nutrient uptake. Industrial Crops and Products 77:167–74. doi:10.1016/j.indcrop.2015.08.065.
  • Shen, N., Y. L. Cui, W. H. Xu, X. H. Zhao, and L. C. Yang. 2017. Impact of phosphorus and potassium fertilizers on growth and anthraquinone content in Rheum tanguticum, Maxim. ex Balf. Industrial Crops and Products 107:312–9. doi:10.1016/j.indcrop.2017.05.044.
  • Shen, N., Y. L. Cui, H. K. Zhou, and W. H. Xu. 2018. Contents of catechin in radix and rhizoma of Rheum tanguticum at different growing stages and harvesting stages and with different fertilizer doses. Chinese Journal of Experimental Traditional Medical Formulae 24 (10):38–42. doi:10.13422/j.cnki.syfjx.20180829.
  • Wang, J. B., Y. Qin, W. Kong, Z. W. Wang, L. N. Zeng, F. Fang, C. Jin, Y. I. Zhao, and X. H. Xiao. 2011. Identification of the antidiarrhoeal components in official rhubarb using liquid chromatography–tandem mass spectrometry. Food Chemistry 129 (4):1737–43. doi:10.1016/j.foodchem.2011.06.041.
  • Wang, X. M., and Y. Ren. 2009. Rheum tanguticum, an endangered medicinal plant endemic to China. Journal of Medicine Plants Research 3:1195–203. doi:10.1089/jmf.2008.0269.
  • Wei, X., Y. C. Shi, Z. Y. Chen, J. M. Tang, and J. Q. Wei. 2014. Effects of different fertilization treatments on growth characteristics and medicinal biomass of Premna fulva. Journal of Guangxi Academy of Sciences 30 (4):269–73. doi:10.13657/j.cnki.gxkxyxb.20141126.009.
  • Xiang, H., J. Zuo, F. Guo, and D. Dong. 2020. What we already know about rhubarb: A comprehensive review. Chinese Medicine 15:88. doi:10.1186/s13020-020-00370-6.
  • Xiong, H. R., S. T. Qiang, H. Guo, Z. A. Yang, and X. C. Yan. 2021. Study on textual, status of original plant resources and protection of rhubarb. Lishizhen Medicine and Materia Medica Research 32 (2):424–8. doi:10.3969/j.issn.1008-0805.2021.02.52.
  • Yang, H. Y. 2016. The research progress on genuiness of medicinal materials. Asia-Pacific Traditional Medicine 12 (5):52–5. doi:10.11954/ytctyy.201605019.
  • Yang, F. R., J. D. Ran, H. T. Liu, J. Y. Song, and C. X. Xie. 2021. Geographic variation of functional components and the climatic response characteristics of Rheum tanguticum Maxim. ex Balf. Acta Ecologica Sinica 41 (9):3645–55. doi:10.5846/stxb201912312854.
  • Zhang, T. T. 2012. Studies on Key technology for cultivated standardization of Rheum Palmatum. Lanzhou: Gansu Agricultural University.
  • Zhang, M. M., H. J. Hu, J. Li, Y. M. Ding, J. Zhang, L. Li, and S. L. Wei. 2020. Effect of different harvest time on functional components of Rheum tanguticum. Modern Chinese Medicine 22 (05):735–40. doi:10.13313/j.issn.1673-4890.20191119011.
  • Zhang, H. X., and M. C. Liu. 2004. Separation procedures for the pharmacologically active components of rhubarb. Journal of Chromatography. B, Analytical Technologies in the Biomedical and Life Sciences 812 (1–2):175–81. doi:10.1016/j.jchromb.2004.08.010.
  • Zhao, F. F. 2011. Quality specification study of raw rhubarb. Beijing: University of Chinese Medicine.
  • Zhu, Z. B., Z. S. Liang, R. L. Han, and J. Dong. 2009. Growth and saikosaponin production of the medicinal herb Bupleurum chinense DC. under different levels of nitrogen and phosphorus. Industrial Crops and Products 29 (1):96–101. doi:10.1016/j.indcrop.2008.04.010.

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