Effect of Salinity and Drought Stresses on Seed Germination of Thymus satureioides
محورهای موضوعی : Ecology, Autecology and SynecologyBrahim Ouahzizi 1 , Hamza Elbouny 2 , Khalid Sellam 3 , Chakib Alem 4 , Abdelmonaim Homrani Bakali 5
1 - Ph.D. Student, Faculty of Sciences & Techniques, Moulay Ismail University, Errachidia, Morocco
2 - Ph.D. Student, Faculty of Sciences & Techniques, Moulay Ismail University, Errachidia, Morocco
3 - Professor, Faculty of Sciences & Techniques, Moulay Ismail University, Errachidia, Morocco
4 - Professor, Faculty of Sciences & Techniques, Moulay Ismail University, Errachidia, Morocco
5 - Searcher, Regional Center of Agricultural Research of Errachidia, National Institute of Agricultural Research, Avenue Ennasr, BP 415 Rabat Principale, 10090 Rabat, Morocco
کلید واژه: germination, Salinity, drought, Thymus satureioides,
چکیده مقاله :
Salinity stress and drought stress are the major environmental constraint for promoting medicinal plants in the arid lands of Morocco. To extendthe cultivation of Thymus satureioides in Tafilalet zone, Morocco, we investigate (in 2020) the effects of salinity and drought stresses on seed germination traits of T. satureioides. Salinity treatments included six concentrations of NaCl (0, 1, 2.5, 5, 7 and 10 g/l) and drought stress; five osmotic potentials of PolyEtylenGlycol 4000 (0, -0.1, -0.3, -0.6 and -0.9 MPa). Results showed that T. Satureioides tolerated salinity till the concentration of 2.5g/l of NaCl, which was statistically not different from control. Then, a highly significant reduction in germination percentage was recorded with the increasing salt concentration, only 38% seed germination was recorded for 5 g/l and a complete inhibition was started from 7 g/l and 10 g/l of NaCl. Decreasing osmotic potentials inhibited progressively and significantly seed germination, the germination percentage for -0.1 MPa, -0.3 MPa, and -0.6 MPa were 85.3%, 65.3%, 6.6% respectively. The two stresses (Drought and salinity) had negative impacts on seed germination, but the drought effect was accentuated than salinity in reducing germination.
Abbad, A., Belaqziz, B., Bekkouche, K., Markouk, M., 2011. Influence of temperature and water potential on laboratory germination of two Moroccan endemic thymes: Thymus maroccanus Ball. and Thymus broussonetii Boiss. Afr. J. Agric. Res.6: 4740-4745.
Al-Karaki, G.N., 2001. Germination, sodium and potassium concentrations of barley seeds as influenced by salinity. J. Plant Nutr. 24: 511–522.
Bakhshandeh, E., Ghadiryan, R., Galeshi, S., Soltani, E., 2011. Modeling the effects water stress and temperature on seed germination of Soybean (Glycine max L.) and Velvetleaf (Abutilion thephrasti Med.). Int. J. Plant Prod. 18: 29-47.
Belaqziz, R., Romane, A., Abbad, A., 2009. Salt stress effects on germination, growth and essential oil content of an endemic thyme species in Morocco (Thymus maroccanus Ball.). J. Appl. Sci. Res. 5858-5886.
Bellakhdar, J., Claisse, R., Fleurentin, J., Younos, C., 1991. Repertory of standard herbal drugs in the Moroccan pharmacopoeia. J. Ethnopharmacol. 35: 123-143.
Benabid, A., 2000. Flore et Ecosystsyemes du Maroc : Evaluation et Préservation de la Biodiversité, Kalila Wa Dimna Publications, Rabat, Morocco.
Bor, M.F., Özdemir, F., Türkan, I., 2003. The effect of salt stress on lipid peroxidation and antioxidants in leaves of sugar beet Beta vulgaris L. and wild beet. Plant Sci. 164: 77-84.
Daws, M.I., Crabtree, L.M., Dalling, J.W., Mullins, C.E., Burslem, D.F.R., 2008. Germination responses to water potential in neotropical pioneers suggest large-seeded species take more risk. Ann. Bot. 102: 945-951.
Farooq, M., Basra, S.MA., Hafeez, K., Ahmad, N., 2005. Thermal hardening: a new seed vigor enhancement tool in rice. Acta Bot. Sinica, 47: 187-192.
Fennane, M., Ibn tattou, M., Ouyahya, A., El oualidi, J., 2007. Flore Pratique du Maroc. Trav. Inst. Sci. Univ. Mohammed V, Sér. Bot. 2: 478.
Flores, J., Briones, O., 2001. Plant life-form and germination in a Mexican intertropical desert: effects of soil water potential and temperature. J. Arid Environ. 47: 485-497.
Groome, M.C., Axler, S., Gfford, D.J., 1991. Hydrolysis of lipid and protein reserves in lobolly pine seeds in relation to protein electrophoretic patterns following imbibitions. Physiol. Plant. 83: 99-106.
IBM Corp, 2010. SPSS Statistics for Windows. Version 18.0. IBM Corp., Armonk, NY.
ISTA, 2015. Chapter 5: The germination test. International Rules for Seed Testing. International Seed Testing Association, Zurich, Switzerland. 5-56.
Keshavarzi, M.H.B., 2012. The effect of different NaCl concentration on germination and early seedling growth of Artemisia annua L. Int. J. Agric. Res. Rev. 2, 135–140.
Khan, M.A., Ungar, I.A., 1997. Effects of thermoperiod on recovery of seed germination of halophytes from saline conditions. Am. J. Bot. 84: 279-283.
Khoshsokhan, F., Babalar, M., Chaghazardi, H.R., Fatahi Moghadam, M.R., 2012. Effect of salinity and drought stress on germination indices of two Thymus species. Cercet. agron. Mold. 45: 27-35.
Koyro, H.W., 2006. Effect of salinity on growth, photosynthesis, water relations and solute composition of the potential cash crop halophyte Plantago coronpus (L.). Environ. Exp. Bot. 56: 136-146.
Liopa-Tsakalidi, A., Zakynthinos, G., Varzakas, T., Xynias, I.N., 2011. Effect of NaCl and G A3 on seed germination and seedling growth of eleven medicinal and aromatic crops. J. Med. Plants Res. 5: 4065–4073.
Manzoor, S., Hameed, A., Khan, M.A., Gul, B., 2017. Seed germination ecology of a medicinal halophyte Zygophyllum propinquum: responses to abiotic factors. Flora 233: 163–170.
Money, N., 1989. Osmotic pressure of aqueous polyethylene glycols relationship between molecular weight and vapour pressure deficit, Plant Physiol. 91: 766-769.
Nedjimi, B., 2013. Effect of salinity and temperature on germination of Lygeum spartum L.(Poaceae). Agric. Res. 2: 340-345.
Ranal, M.A., Santana, D.G., 2006. How and why to measure the germination process? Rev. Bras. Bot 29: 1-11.
Rios-Rojas, L., Tapia, F., Gurovich, L.A., 2014. Electrophysiological assessment of water stress in fruit-bearing woody plants. J. Plant Physiol. 171: 799-806.
Schulze, E.D., Beck, E., Muller-Hohenstein, K., 2005. Plant ecology. Edition, Springer Berlin- Heidelberg. 692 p.
Sharma, S., Sunil, P., Arti, J., Sujata, B., Navdeep, D., Kranti, T., 2014. Effect of salt stress on seedling growth and survival of Oenothera biennis L. Int. Res. J. Environ. Sci. 3: 70-74.
Singah, K.N., Sharma, D.K., Chillar, R.K., 1988. Growth, yield and chemical composition of the different oil seed crop influenced by sodicity. J. Agric. Sci. Camb. 111: 459-463.
Taiz, L., Zeiger, E., 2002. Plant Physiology. 3rd Ed. Sinauer Associates Publishers, Sunderland, 427 p.
Torabi, B., Soltani, E., Archontoulis, S.V., Rabii, A., 2016. Temperature and water potential effects on Carthamus tinctorius L. Seed germination: measurements and modeling using hydrothermal and multiple approaches. Braz. J. Bot. 39: 427-436.
Younis, M.E., Hasaneen, M.N.A., El-Bialy, D.M.A., 2008. Plant growth, metabolism and adaptation in relation to stress conditions. XXI. Reversal of harmful NaCl-effects in lettuce plants by foliar application with urea. Aust. J. Crop Sci. 2: 83-95
Zhou, D., Xiao, M., 2010. Specific ion effects on the seed germination of sunflower. J. Plant Nutr. 33: 255-266.
Zhou, S., Han, Y.Y., Chen, Y., Kong, X., Wang, W., 2015. The involvement of expansion in response to water stress during leaf development in wheat. J. Plant Physiol. 183: 64-74.