Adsule, P.G., & Dan, A. (1979). Simplified extraction procedure in the rapid spectrophotometric method for lycopene estimation in tomato. Journal of Food Science and Technology, (2), 22-38.
Amin, A.A., Fatma, A.E., Gharib, M., El-Awadi, El-Sherbeny, M., & Rashad, M. (2011). Physiological response of onion plants to foliar application of putrescine and glutamine. Scientia Horticulturae, 129, 353-360. https://doi.org/10.1016/j.scienta.2011.03.052
Bashan, Y., & Holguin, G. (2005). zospirillum/plant relationship: environmental and physiological advances. Canadian Journal of Microbiology, 43, 103-121.: https://doi.org/10.1139/m96-147
Belimov, A.A., Safronova, V.I., Sergeyeva, T.A., Egorova, T.N., Matveyeva, V.A., Tsyganov, V.E., Borisov, A.Y., Tikhonovich, I.A., Kluge, C., Preisfeld, A., & Dietz, K.J. (2001). Characterization of plant growth-promoting rhizobacteria isolated from polluted soils and containing 1-aminocyclopropane-1-carboxylate deaminase. Canadian Journal of Microbiology, 47(7), 642-652. https://doi.org/10.1139/w01-062
Bremner, J.M., & Mulvaney, C.S. (1982). Nitrogen – Total. In Methods of Soil Analysis, Part 2: Chemical and Microbiological Properties (pp. 595-624). https://doi.org/10.2134/agronmonogr9.2.2ed.c31
Cakmakci, R., Erat, M., Erdoman, U.G., & Donmez, M.F. (2007). The influence of PGPR on growth parameters, antioxidant and pentose phosphate oxidative cycle enzymes in wheat and spinach plants. Journal of Plant Nutrition and Soil Science, 170, 288-295. https://doi.org/10.1002/jpln.200521805
Dehghani Mashkani, M.R., Naghdi Badi, H., Darzi, M.T., Mehrafarin, A., Rezazadeh, Sh., & Kadkhoda, Z. (2011). The effect of biological and chemical fertilizers on quantitative and qualitative yield of Shirazian babooneh (Matricaria recutita L.). Journal of Medicinal Plants, 38, 35-48. (In Persian)
Dorais, M., Ehret, D.L., & Papadopoulos, A.P. (2008). Tomato (Solanum lycopersicum) health components: from the seed to the consumer. Phytochemistry Reviews, 7, 231-250. https://doi.org/10.1007/s11101-007-9085-x
Fatahi Moghadam, J., Seyedghasemi, S.E., & Madani, S. (2017). The effect of five rootstocks on physical, mechanical and chemical characteristics of Yashar fruits – a new Mandarin-during ripening stages. Journal of Plant Production, 24(2), 109-123. (In Persian)
Fish, W.W., Perkins-Veazie, P., & Collins, J.K. (2002). A quantitative assay for lycopene that utilizes reduced volumes of organic solvents. Journal of Food Composition and Analysis, 15, 309-317. https://doi.org/10.1006/jfca.2002.1069
Hokmalipour, S., Panahiane-Kivi, & Shirie-Janagard, M. (2018). The effect of seed inoculation with Azotobacter and Azospirillum on yield and some qualitative and quantitative characteristics of safflower at different planting dates. Journal of Water and Soil, 32(5), 931-942. (In Persian)
Kazemi, M. (2013). Influence of foliar application of 5-sulfosalicylic acid, malic acid, putrescine, and potassium nitrate on vegetative growth and reproductive characteristics of strawberry cv. 'Selva'. Journal of Biological and Environmental Sciences, 7, 93-101.
Khademi, O., & Akbari, A. (2016). The effects of putrescine treatment on the yield and quality of strawberry fruit cv. Camarosa. The First National Symposium of Small Fruits. (In Persian)
Khoshkhatti, N., Eini, & Koolivand, D. (2023). Effect of mycorrhizal fungus Rhizoglomus irregulare on the infection of tomato with Tomato bushy stunt virus. Journal of Applied Research in Plant Protection, 12(2), 199-209. (In Persian)
Mohammadrezakhani, S., Hajilou, J., & Rezanejad, F. (2018). Effect of foliar spray with putrescine and proline on some physiological characteristics of peel and pulp of two Citrus species in response to low temperature stress. Pomology Research, 3(1), 1-13. (In Persian)
Mona, H., Mahgoub, N.G., Abd El Aziz, M., & Azza, M.A.M.T. (2011). Response of Dahlia pinnata L. plant to foliar spray with putrescine and thiamine on growth, flowering, and photosynthetic pigments. Journal of Agricultural and Environmental Sciences, 10(5), 769-775.
Nilam, M., Gribbon, P., Reinshagen, J., Cordts, K., Schwedhelm, E., Nau, W.M., & Hennig, A. (2017). A label-free continuous fluorescence-based assay for monitoring ornithine decarboxylase activity with a synthetic putrescine receptor. SLAS DISCOVERY: Advancing Life Sciences R&D, 2(7), 906-914. https://doi.org/10.1177/2472555217705210
Olsen, S.R., Sommers, L.E., & Page, A.L. (1982). Methods of soil analysis. Part 2. Chemical and microbiological properties of Phosphorus. ASA Monograph, 9, 403-430. https://doi.org/10.2134/agronmonogr9.2.2ed.c24
Ordookhani, K., Khavazi, K., Moezzi, A., & Rejali, F. (2010). Influence of PGPR and AMF on antioxidant activity, lycopene and potassium contents in tomato. African Journal of Agricultural Research, 5(10), 1108-1116.
Rouphael, Y., Schwarz, D., Krumbein, A., & Colla, G. (2010). Impact of grafting on product quality of fruit vegetables. Scientia Horticulturae, 127, 172-179. https://doi.org/10.1016/j.scienta.2010.09.019
Ryan, J., Estefan, G., & Rashid, A. (2007). Soil and Plant Analysis Laboratory Manual. ICARDA.
Saleh Hosseini, Z. (2003). Common Methods in Food Analysis. Shiraz University Press, 45 p. (In Persian)
Salehi, A., Ghalavand, A., Sefidkon, F., & Asgharzade, A. (2011). The effect of zeolite, PGPR, and vermicompost application on N, P, K concentration, essential oil content and yield in organic cultivation of German chamomile (Matricaria chamomilla L.). Iranian Journal of Medicinal and Aromatic Plants, 27(2), 188-201. (In Persian)
Soltani Tularud, A.A., Ziyatbarahmadi, S., Esmailpour, B., Khawazi, K., & Fathul Uloomi, S. (2014). Investigating the effect of plant growth-stimulating bacteria and used mushroom compost on the growth and performance of tomato plant (Lycopersicon esculentum). Soil Research (Soil and Water Sciences), 29(3A), 285-296. (In Persian)
Steinbachel, A. (2010). Plant Growth and Health-Promoting Bacteria. New York: Springer Heidelberg Dordrecht. https://doi.org/10.1007/978-3-642-13612-2
Takahashi, T., & Kakehi, J.I. (2009). Polyamines: ubiquitous polycations with unique roles in growth and stress responses. Annals of Botany, 105(1), 1-6. https://doi.org/10.1093/aob/mcp251
Tang, W., & Newton, R.J. (2004). Increase of polyphenol oxidase and decrease of polyamines correlate with tissue browning in Virginia pine (Pinus virginiana Mill.). Plant Science, 167, 621-628. https://doi.org/10.1016/j.plantsci.2004.04.028
Turan, M., Ataoglu, N., & Sahin, F. (2006). Evaluation of the capacity of phosphate-solubilizing bacteria and fungi on different forms of phosphorus in liquid culture. Journal of Sustainable Agriculture, 28, 99-108. https://doi.org/10.1300/J064v28n03_09
Wang, J., Teng, T., & Yu, Y. (2006). The firmness detection by excitation dynamic characteristics for peach. Food Control, 17, 353–358. https://doi.org/10.1016/j.foodcont.2004.11.003
Weller, D.M., & Cook, R.J. (1986). Increased growth of wheat by seed treatments with fluorescent pseudomonads and implication of Pythium control. Canadian Journal of Plant Pathology, 8, 328-334. https://doi.org/10.1080/07060668609501803
Youssef, A.A., Edris, A.E., & Gomaa, A.M. (2004). A comparative study between some plant growth regulators and certain growth hormone-producing microorganisms on growth and essential oil composition of Salvia officinalis L. plants. Annals of Agricultural Science, 49, 299-311.