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Research Article

Comparison of inorganic fertilizer with biostimulants and coenzyme Q10 to enhance radish performance

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References

  • Bashir, M.A., A. Rehim, Q.-U.-A. Raza, A.R. H Muhammad, L. Zhai, H. Liu, and H. Wang. 2021. Biostimulants as plant growth stimulators in modernized agriculture and environmental sustainability, In: pp. 311–322. In: F. Ahmad and M. Sultan (eds.). Technology in agriculture. IntechOpen, London, United Kingdom
  • Ben Mrid, R., B. Benmrid, J. Hafsa, H. Boukcim, M. Sobeh, and A. Yasri. 2021. Secondary metabolites as biostimulant and bioprotectant agents: A review. Sci. Total Environ. 777(146204):146204. article. doi:10.1016/j.scitotenv.2021.146204.
  • Bulgari, R., G. Cocetta, A. Trivellini, P. Vernieri, and A. Ferrante. 2015. Biostimulants and crop responses: A review. Biol. Agric. Hortic. 31(1):1–7. doi: 10.1080/01448765.2014.964649.
  • Caruso, G., S. De Pascale, E. Cozzolino, A. Cuciniello, V. Cenvinzo, P. Bonini, G. Colla, and Y. Rouphael. 2019. Yield and nutritional quality of Vesuvian piennolo tomato PDO as affected by farming system and biostimulant application. Agronomy. 9(9):505. article no. 505 doi:10.3390/agronomy9090505.
  • Chitu, E., and C. Paltineanu. 2020. Timing of phenological stages for apple and pear trees under climate change in a temperate-continental climate. Int J Biometeorol 64(8):1263–1271. doi: 10.1007/s00484-020-01903-2.
  • Colla, G., Y. Rouphael, R. Canaguier, E. Svecova, and M. Cardarelli. 2014. Biostimulant action of a plant-derived protein hydrolysate produced through a hydrolysis. Front Plant Sci 5(448): article no. doi: 10.3389/fpls.2014.00448.
  • Drobek, M., M. Frąc, and J. Cybulska. 2019. Plant biostimulants: Importance of the quality and yield of horticultural crops and the improvement of plant tolerance to abiotic stress—A review. Agronomy. 9(6):335. article no. doi:10.3390/agronomy9060335.
  • Garcia, A.L., R. Madrid, V. Gimeno, W.M. Rodriguez-Ortega, N. Nicolas, and F. Garcia-Sanchez. 2011. The effects of amino acids fertilization incorporated to the nutrient solution on mineral composition and growth in tomato seedlings. Spanish J. Agric. Res. 9(3):852–861. doi: 10.5424/sjar/20110903-399-10.
  • Giordano, M., C. El-Nakhel, G. Caruso, E. Cozzolino, S. De Pascale, M.C. Kyriacou, G. Colla, and Y. Rouphael. 2020. Stand-alone and combinatorial effects of plant-based biostimulants on the production and leaf quality of perennial wall rocket. Plants. 9(7):922. article no. 992 doi:10.3390/plants9070922.
  • Halpern, M., A. Bar-Tal, M. Ofek, D. Minz, T. Muller, and U. Yermiyahu. 2015. The use of biostimulants for enhancing nutrient uptake. Adv. Agron. 130:141–174.
  • Khan, S., H. Yu, Q. Li, Y. Gao, B.N. Sallam, H. Wang, P. Liu, and W. Jiang. 2019. Exogenous application of amino acids improves the growth and yield of lettuce by enhancing photosynthetic assimilation and nutrient availability. Agronomy. 9(5):266. article no. 266 doi:10.3390/agronomy9050266.
  • Kim, H.J., K.M. Ku, S. Choi, and M. Cardarelli. 2019. Vegetal-derived biostimulant enhances adventitious rooting in cuttings of basil, tomato, and chrysanthemum via brassinosteroid-mediated processes. Agronomy 9(2): article no. 74. doi: 10.3390/agronomy9020074.
  • Kocira, A., J. Lamorska, R. Kornas, N. Nowosad, M. Tomaszewska, D. Leszczyńska, K. Kozłowicz, and S. Tabor. 2020. Changes in biochemistry and yield in response to biostimulants applied in bean (Phaseolus vulgaris L.). L.). Agronomy. 10(2):189. article no. 189 doi:10.3390/agronomy10020189.
  • Lacerda, V.R., A.F.G. Acevedo, I.C. Marques, W.J. da S Dellabiglia, A.K.L. Ferraz, L.S.P. Basílio, and F. Broetto. 2022. Silicon as a mitigator of water deficit stress in radish crop. Science Horticulture. 291(110600):110600. article. doi:10.1016/j.scienta.2021.110600.
  • Li, J., H. Liu, H. Wang, J. Luo, X. Zhang, Z. Liu, Y. Zhang, L. Zhai, Q. Lei, T. Ren, et al. 2018. Managing irrigation and fertilization for the sustainable cultivation of greenhouse vegetables. Agric. Water Manag 210:354–363. doi: 10.1016/j.agwat.2018.08.036.
  • Liu, X.Q., K.Y. Ko, S.H. Kim, and K.S. Lee. 2007. Effect of amino acid fertilization on nitrate assimilation of leafy radish and soil chemical properties in high nitrate soil. Commun. Soil Sci. Plant Anal. 39(1–2):269–281. doi: 10.1080/00103620701759301.
  • Mola, I., E.C. Di, L. Ottaiano, M. Giordano, Y. Rouphael, G. Colla, and M. Mori. 2019. Effect of vegetal- and seaweed extract-based biostimulants on agronomical and leaf quality traits of plastic tunnel-grown baby lettuce under four regimes of nitrogen fertilization. Agronomy. 9(10):571. article no. 571 doi:10.3390/agronomy9100571.
  • Raza, Q.-U.-A., M. Amjad Bashir, A. Rehim, R. Ejaz, H.M.A. Raza, U. Shahzad, F. Ahmed, and Y. Geng. 2022. Biostimulants induce positive changes in the radish morpho-physiology and yield. Front Plant Sci 13: article no. 950393. doi: 10.3389/fpls.2022.950393
  • Rehim, A., M. Amjad Bashir, Q.-U.-A. Raza, K. Gallagher, and G.P. Berlyn. 2021. Yield enhancement of biostimulants, vitamin B12, and CoQ10 compared to inorganic fertilizer in radish. Agronomy. 11(4):697. article no. 697 doi:10.3390/agronomy11040697.
  • Rouphael, Y., and G. Colla. 2020. Toward a sustainable agriculture through plant biostimulants: From experimental data to practical applications. Agronomy. 10(10):1461. article no. 1461 doi:10.3390/agronomy10101461.
  • Tarafdar, J.C. 2022. Biostimulants for sustainable crop production. Biostimulants for sustainable crop production, In: pp. 299–313. In: H. Singh and A. Vaishnav (eds.). New and future developments in microbial biotechnology and bioengineering, sustainable agriculture: Revitalization through organic products. Elsevier, Amsterdam, The Netherlands.
  • Xu, J., J. Min, H. Sun, B.P. Singh, H. Wang, and W. Shi. 2022. Biostimulants decreased nitrogen leaching and NH3 volatilization but increased N2O emission from plastic-shed greenhouse vegetable soil. Environ. Sci. Pollut. Res. 29(4):6093–6102. doi: 10.1007/s11356-021-16039-y.

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