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Exogenous salicylic acid improves photosynthetic pigments and morphological traits of four medicinal plants in an aeroponic system

Publish Year: 1401
Type: Journal paper
Language: English
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JR_JPMB-8-1_001

Index date: 10 April 2022

Exogenous salicylic acid improves photosynthetic pigments and morphological traits of four medicinal plants in an aeroponic system abstract

Salicylic acid (SA) is a phenolic phytohormone that acts as a key regulator of the signaling network in plants under biotic and abiotic stresses. SA exerts stimulatory effects on various physiological processes to plant growth and development. In this research, valerian, chicory, withania, and purple coneflower plants were transferred into an aeroponic system where the effects of SA were investigated on some plant characteristics under greenhouse conditions. The plants were foliar sprayed with SA (0, 50, 100, and 150 mg l-1) at 20, 40, and 60 days after transplanting (DAT). Results showed that the highest chlorophyll a+b, carotenoid, plant height, root length, root volume, number of leaves per plant, root fresh weight, root dry weight, shoot fresh weight, and shoot dry weight were obtained from 150 mg l-1 SA in all the studied medicinal plants. The results revealed that the exogenous application of SA in the aeroponic system increased the root fresh weight, root dry weight, shoot fresh weight and shoot dry weight of chicory, withania, valerian, and purple coneflower plants. Also, the studied medicinal herbs grew well in the aeroponic system.

Exogenous salicylic acid improves photosynthetic pigments and morphological traits of four medicinal plants in an aeroponic system Keywords:

Exogenous salicylic acid improves photosynthetic pigments and morphological traits of four medicinal plants in an aeroponic system authors

Peiman Mohit Rabary

Department of Agronomy and Plant Breeding, Faculty of Agriculture, Malayer University, Malayer, Iran

Zahra Movahedi

Department of Genetics and Plant Production, Faculty of Agriculture, Malayer University, Malayer, Iran

Mehdi Ghabooli

Department of Genetics and Crop Production Faculty of Agriculture Malayer University

Majid Rostami

Department of Genetics and Plant Production, Faculty of Agriculture, Malayer University, Malayer, Iran

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Abdel, F., Gharib, L., ۲۰۰۶. Effect of salicylic acid on ...
Abreu, E.M., Munné-Bosch, S., ۲۰۰۸. Salicylic acid may be involved ...
Ali, MB., Hahn, EJ., Paek, KY., ۲۰۰۷. Methyl jasmonate and ...
Alonso-Ram´ırez, A., Rodr´ıguez, D., Reyes, D., Jim´enez, JA.,Nicol ´as, G., ...
Angooti, F., Nourafcan, F., ۲۰۱۵. Effects of application method and ...
Atal, CK., Sethi, PDA., ۱۹۶۳. A preliminary chemical examination of ...
Bayat, H., Alirezaie, M., Neamati, H., ۲۰۱۲. Impact of exogenous ...
Bergeron, C., Gafner, S., Batch, L.L., Angerhofer, C.K., ۲۰۰۲. Stabilization ...
Biddinger, EJ., Liu, C., July, RJ., Raghotham, KG., ۱۹۹۸. Physiological ...
Bideshki, A., Arvin, M.J., ۲۰۱۰. Effect of salicylic acid (SA) ...
Chen, Z., Zheng, Z., Huang, J., Lai, Z., Fan, B., ...
Choffe, KL., Murch, SJ., Saxena, PK., ۲۰۰۰. Regeneration of Echinacea ...
Delany, T.P., Uknes, S., Vernooij, B., Friedrich, L., Weymann, K., ...
Du, Y.C., Nose, A., Wasano, K., Ushida, Y., ۱۹۹۸. Responses ...
Eraslan, F., Inal, A., Gunes, A., Alpaslan, M., ۲۰۰۷. Impact ...
Fariduddin, Q., Hayat, S., Ahmad, A., ۲۰۰۳. Salicylic acid influences ...
Farooq, M., Wahid, A., Lee, D.J, Cheema S.A., Aziz, T., ...
Hayat, Q., Hayat, S., Irfan, M., Ahmad, A., ۲۰۰۹. Effect ...
Hayat, S., Fariduddin, Q., Ali, B., Ahmad, A., ۲۰۰۵. Effect ...
Kirthikar, KR., Basu, BD., ۱۹۳۳. Indian Medical Plants. ۲d ed. ...
Li, TSC., ۱۹۹۸. Echinacea: cultivation and medicinal value. Hort Technology ...
Lin, Z., Neamati, N., Zhao, H., Kiryu, Y., Turpin, JA., ...
Manaa, A., Gharbi, E., Mimouni, H., Wasti, S., Aschi-Smiti, S., ...
Mandal, S., ۲۰۱۰. Induction of phenolice, lignin and key defense ...
Manthe, B., Schulz, M., Schnabl, H., ۱۹۹۲. Effects of salicylic ...
Martínez, C., Pons, E., Prats, G., León, J., ۲۰۰۴. Salicylic ...
Mishra, J., Dash, A.K., Mishra, S.N., Gupta, A.K., ۲۰۱۳. Withania ...
Molitor, HD., Fischer, M., Popadopoulos, AP., ۱۹۹۹. Effect of several ...
Movahedi, Z., Moeini, A., Soroushzadeh, A., ۲۰۱۲. Comparison of aeroponics ...
Norman, C., Howell, KA., Millar, AH., Whelan, JM., Day, DA., ...
Orabi, S. A., Salman, S. R., Shalaby, A. F., ۲۰۱۰. ...
Patocka, J., Jakl, J., ۲۰۱۰. Biomedically relevant chemical constituents of ...
Rajou, L., Belghazi, M., Huguet, R., Robin, C., Moreau, A., ...
Rao, MV., Davis, KR., ۲۰۰۱. The physiology of ozone-induced cell ...
Rao, MV., Lee, HI., Davis, KR., ۲۰۰۲. Ozone-induced ethylene production ...
Raskin, I., Ehmann, A., Melander, WR., Meeuse, BJD., ۱۹۸۷. Salicylic ...
Raskin, K., ۱۹۹۲. Role of salicylic acid in plants. Annual ...
Rickett, H.W., ۱۹۶۷. Wild flowers of the United States. Parts ...
Senderski, ME., ۲۰۰۹. Zioła:praktycznyporadnik o ziołach i ziołolecznictwie. Wyd. K.E. ...
Shakirova, FM., Shakhabutdinova, AR., Bezrukova, R., Fathkutdinov, A., Fathkhutdinova, D.R., ...
Soffer, H., Burger, DW., ۱۹۸۸. Effects of dissolved oxygen concentration ...
Stacey, G., McAlvin, CB., Kim, SY., Olivares, J., Soto, MJ., ...
Tutin, TG., Burges, NA., Chater, AO., Edmondson, JR., Heywood, VH., ...
Vanacker, H., Lu, H., Rate, DN., Greenberg, JT., ۲۰۰۱. A ...
Vavilov, N.L., ۱۹۵۱. The origin, variation, immunity and breeding of ...
Wang, J., Zhao, J., Liu, H., Zhou, L., Liu, Z., ...
Zhao, HJ., Lin, XW., Shi, HZ., Chang, SM., ۱۹۹۵. The ...
Zhou, Z.S., Guo, K., Elbaz, A.A., Yang, Z.M., ۲۰۰۸. Salicylic ...
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