تعداد نشریات | 418 |
تعداد شمارهها | 9,991 |
تعداد مقالات | 83,505 |
تعداد مشاهده مقاله | 77,093,400 |
تعداد دریافت فایل اصل مقاله | 54,129,518 |
Effect of Drought and Salinity Stress on Morpho-physiologycal Variation of the Iranian Endemic Stachys multicaulis Benth. in Different Soil Textures | ||
Journal of Rangeland Science | ||
مقاله 5، دوره 9، شماره 3، مهر 2019، صفحه 246-258 اصل مقاله (848.18 K) | ||
نوع مقاله: Research and Full Length Article | ||
نویسندگان | ||
Habib Yazdanshenas* 1؛ Mohammad Jafary2؛ Ali Tavili2؛ Hossein Arzani3؛ Hossain Azarnivand4 | ||
1University of Tehran | ||
2university of Tehran | ||
3Tehran university | ||
4Natural resources | ||
چکیده | ||
Adaptation of plants under drought and salinity stress depends directly on the type of soil texture. Therefore, in this research, the morpho-physiological variations of Stachys multicaulis, an Iranian wild endemic plant species, were investigated in different soil textures under drought and salinity stress. For this purpose, plants were cultivated in three different light, medium and heavy soil textures under pot condition (outside the greenhouse near the plant original habitat) in 2016. Then, a set of drought stress (3 day intervals of irrigation; 3 to 15 days) and salinity stress (0, 5, 10, 15, 20 and 25 ds/m- NaCl) was used in two separate factorial experiments based on a completely randomized design with four replications. The results showed that both drought and salinity had significant effects on morpho-physiological properties of S. multicaulis (p<0.01) based on type of soil texture. All of traits had higher performance in heavy soil texture except trichome length. For 15 day interval of irrigation, higher values of plant biomass, plant greenness, leaf length/width ratio, leaf angle, and node distance as 8.25g, 28.1%, 4.17, 55°, 1.5cm respectively were obtained in heavy soil texture. Similarly, for salinity of 25 ds/m, higher values of same traits as 7.7g, 25%, 3.9, 50°, and 1.4cm, respectively were obtained in heavy soil texture. Both drought and salinity stress had no significant effect (p<0.01) on leaves trichome number, trichome length, floret number per plant and branch number per plant in all three soil textures. The morphological variations of the plant occurred with greater intensity in salinity stress and it was concluded that plant tolerance to salinity was lower than drought. | ||
کلیدواژهها | ||
Salt stress؛ Soil properties؛ Pot culturing؛ Physiological properties؛ Greenness value | ||
مراجع | ||
Ali, M.A., Abbas, A., Niaz, S., Zulkiffal, M., Ali, S., 2009. Morpho-physiological criteria for drought tolerance in sorghum (Sorghum bicolor) at seedling and post-anthesis stages. Int. J. Agric. Biol; 11(6): 674-680.
Amir-Ahmadi, N., Moosavi, M.R., Moafpourian, G., 2017. Effect of soil texture and its organic content on the efficacy of Trichoderma harzianum (MIAU 145 C) in controlling Meloidogyne javanica and stimulating the growth of kidney beans. Biocontrol science and technology, 27(1): 115-127.
Asghari, T., 2010. Effect of water deficit on some traits of Cichorium intybus L. at different densities. Journal of plant ecophysiology. 2 (3) 2-9.
Cambrollé, J., Redondo-Gómez, S., Mateos-Naranjo, E., Luque, T., Figureueroa, M.E., Physiological responses to salinity in the yellow-horned poppy, Glaucium flavum. Plant 2011. Physiology and Biochemistry, 49(2): 186-194.
Chakhchar A, Lamaoui M, Aissam S, Ferradous A, Wahbi S, El Mousadik A, Ibnsouda-Koraichi, S, Filali-Maltouf A, El., Modafar C. 2016. Differential physiological and antioxidative responses to drought stress and recovery among four contrasting Argania spinosa ecotypes. Journal of Plant Interactions, 11(1): 30-40.
Dexter, A.R., 2004. Soil physical quality: Part I. Theory, effects of soil texture, density, and organic matter, and effects on root growth. Geoderma,; 120(3-4): 201-214.
Erdemoglu, N., Turan, N.N., Cakõcõ, I., Sener, B., Aydõn, A., 2006. Antioxidant activities of some Lamiaceae plant extracts. Phytotherapy Research: An International Journal Devoted to Pharmacological and Toxicological Evaluation of Natural Product Derivatives, 20(1): 9-13.
Forni, C., Duca, D., Glick, B.R., 2017. Mechanisms of plant response to salt and drought stress and their alteration by rhizobacteria. Plant and Soil, 410(1-2): 335-356.
Hamer, J.J., Veneklaas, E.J., Renton, M., Poot, P. 2016. Links between soil texture and root architecture of Eucalyptus species may limit distribution ranges under future climates. Plant and soil, 403(1-2): 217-229.
He, J., Li, H., Rasaily, R.G., Wang, Q., Cai, G., Su, Y., Qiao, X., Liu, L., 2011. Soil properties and crop yields after 11 years of no tillage farming in wheat–maize cropping system in North China Plain. Soil and Tillage Research, 113(1):48-54.
IPCC (Intergovernmental Panel on Climate Change) 2001. Climate Change 2001. Available at http://www.ipcc.ch; accessed on September 1, 2005.
Jamali, H., Quayle, W., Scheer, C., Rowlings, D., Baldock, J., 2016. Effect of soil texture and wheat plants on N2O fluxes: A lysimetric study. Agricultural and forest meteorology, 223:17-29.
Jamzad, M., Akbari, M.T., Rustaiyan, A., Masoudi, S., Azad, L., 2009. Chemical Composition of Essential Oils of Three Stachys Species Growing Wild in Iran: Stachys asterocalyx Rech. f., Stachys obtusicrena Boiss. and Stachys multicaulis Benth. Journal of Essential Oil Research, 21(2): 101-104.
Jiang, X., Qi, W., Xu, X., Li, Y., Liao, Y., Wang, B., 2014. Higher soil salinity causes more physiological stress in female of Populus cathayana cuttings. Acta Ecologica Sinica, 34(4):225-231.
Kaleybar, B.Sh., Nematzadeh, Gh., Hashemi, S.H.R., Askari, H., Kabirnataj, S., 2013. Physiologic and genetic reply of halophyte Aeluropus to salt. Journal of modified crop plants. (12): 29-12.
Karray-Bouraoui, N., Rabhi, M., Neffati, M., Baldann, B., Ranieri, A., Marzouk, B., Lachaâl, M., Smaoui, A., 2009. Salt effect on yield and composition of shoot essential oil and trichome morphology and density on leaves of Mentha pulegium. Industrial Crops and Products, 30(3): 338-343.
kolahchi, N., Mohseni Saravi, M., Tavili, A., Jafari, M., Assadian, G., 2011. Rangeland Ecohydrology, New Paradigm in Water Management of Arid and Semi-arid Lands. Journal of Rangeland Science, 1(4): 303-308.
Li, C., Lei, J., Zhao, Y., Xu, X., Li, S., 2015. Effect of saline water irrigation on soil development and plant growth in the Taklimakan Desert Highway shelterbelt. Soil and Tillage Research, 146: 99-107.
Lynch, J., 1995. Root architecture and plant productivity. Plant physiology, 109(1):1-7.
Noori, S.A., Izadi-Darbandi, A., Mehdi Mortazavian, S.M., 2014. Effect of Salinityon Morpho-Physiological Characteristics of Spring Wheat Genotypes. 4(1); 13-21.
Pandolfi, C., Mancuso, S., Shabala, S., 2012. Physiology of acclimation to salinity stress in pea (Pisum sativum). Environmental and Experimental Botany, 84: 44-51.
Poot, P., Veneklaas, E., 2013. Species distribution and crown decline are associated with contrasting water relations in four common sympatric eucalypt species in southwestern Australia. Plant Soil; 364:409–423.
Prakash, R., Singh, D., Pathak, N.P., 2010. The effect of soil texture in soil moisture retrieval for specular scattering at C-band. Progress in Electromagnetics Research, 108:177-204.
Promkhambut, A., Younger. A, Polthanee, A., Akkasaeng, C. 2010. Morphological and physiological responses of sorghum (Sorghum bicolor L. Moench) to waterlogging. Asian Journal of Plant Sciences, 9(4), 183.
Radhakrishnan, R., Baek, K.H., 2017. Physiological and biochemical perspectives of non-salt tolerant plants during bacterial interaction against soil salinity. Plant physiology and biochemistry, 116; 116-126.
Ranjbar, A. and Mousavi, S., 2015. Effects of drought stress on the efficiency of photosystem II and content of pigments in the leaves of Nitraria schoberi L. Journal of Plant Ecophysiology. 7(21): 97-85.
Ranjbar-Fordoei, A., Dehghani-Bidgoli, R., 2016. Impact of salinity stress on photochemical efficiency of photosystem II, chlorophyll content and nutrient elements of nitere bush (Nitraria schoberi L.) plants. Journal of Rangeland Science, 6(1): 1-9.
Reynolds, M., Mujeeb Kazi, A., Sawkins, M., 2005. Prospects for utilizing plant‐adaptive mechanisms to improve wheat and other crops in drought and salinity prone environments. Annals of Applied Biology; 146:239-259.
Salem, H.M., Valero, C., Muñoz, M.Á., Rodríguez, M.G., Silva, L.L., 2015. Short-term effects of four tillage practices on soil physical properties, soil water potential, and maize yield. Geoderma, 237; 60-70.
Shabala, S., Cuin, T.A., 2008. Potassium transport and plant salt tolerance. Physiologia Plantarum, 133(4): 651-669.
Shan, L., Yang, C., Li, Y., Duan, Y., Geng, D., Li, Z., Zhang, R, Duan, G., Жигунов, А.В., 2015. Effects of drought stress on root physiological traits and root biomass allocation of Reaumuria soongorica. Acta Ecologica Sinica, 35(5): 155-159.
Shelef, O., Lazarovitch, N., Rewald, B., Golan‐Goldhirsh, A., Rachmilevitch, S., 2010. Root halotropism: salinity effects on Bassia indica root. Plant Biosystems, 144(2): 471-478.
Sivritepe, N., Sivritepe, H.O. and Eris, A., 2003. The effects of NaCl priming on salt tolerance in melon seedlings grown under saline conditions. Scientia horticulturae, 97(3-4), pp.229-237.
Tajamoliyan, M., Irannezhad Parizi, M.H., Malekinezhad, H., Rad, M.H., Sodaiizadeh, H., 2013. Effects of water stress on some physiological characteristics of range plants pen (Fortuynia bungei Boiss.). "Journal of Genetics and Plant Breeding of pasture and woodland; 20(2): 273-283.
Tanaomi, N., Jonoubi, P., Chehregani, Rad A, Majd, A., Ranjbar, M., 2018. Embryological features of Alhagi persarum (Fabaceae): Adapt to environmental constraints. Plant Biosystems-An International Journal Dealing with all Aspects of Plant Biology, 152(1): 152-160.
Turner, NC, Schulze ED, Nicolle D., Kuhlmann I. 2010. Growth in two common gardens reveals species by environment interaction in carbon isotope discrimination of Eucalyptus. Tree Physiol 30:741–747.
Mozaffarian, V. 2007. Umbelliferae. In: Flora of Iran (eds. Assadi, M., Khatamsaz, M., Maassoumi, A. A.) No. 54. -Tehran (In Persian).
Wang, Q., Huo, Z., Zhang, L., Wang, J., Zhao, Y., 2016. Impact of saline water irrigation on water use efficiency and soil salt accumulation for spring maize in arid regions of China. Agricultural Water Management, 163:125-138.
Yadav, S.P., Ibaraki, Y., Gupta, S.D., 2010. Estimation of the chlorophyll content of micro propagated potato plants using RGB based image analysis. Plant Cell, Tissue and Organ Culture (PCTOC), 100(2): 183-188.
Zhang, Z., Li, H., Qiao, S., Zhang, X., Liu, P., Liu, X., 2012. Effect of salinity on seed germination, seedling growth, and physiological characteristics of Perilla frutescens. Plant Biosystems-An International Journal Dealing with all Aspects of Plant Biology, 146(2), 245-251.
Zhu, X.C., Song, F.B., Liu, S.Q., Liu, T.D., Zhou, X., 2012. Arbuscular mycorrhizae improves photosynthesis and water status of Zea mays L. under drought stress. Plant Soil Environ; 58(4): 186-191. | ||
آمار تعداد مشاهده مقاله: 741 تعداد دریافت فایل اصل مقاله: 357 |