Investigating Growth of Frankenia thymifolia as a Cover Plant During Drought Stress in Different Growth Media and Irrigation Periods
محورهای موضوعی : مجله گیاهان زینتیMohsen Majidi 1 , Ali Mohammadi Torkashvand 2 , Raheleh Ebrahimi 3
1 - M.Sc. Student, Department of Horticulture, Science and Research Branch, Islamic Azad University, Tehran, Iran
2 - Associate Professor, Department of Soil Science, Science and Research Branch, Islamic Azad University, Tehran, Iran
3 - Assistant Professor, Department of Horticulture, Science and Research Branch, Islamic Azad University, Tehran, Iran
کلید واژه: manure, compost, Growth medium, drought, <i>Frankinia</i>,
چکیده مقاله :
There are some plants can replace grass among cover plants. Cover plants are obvious solution of problem in these places that the most important plant is Frankinia and Lisimakia etc. The aim of this study is to use organic wastes, biological fertilizers and moisture super absorbents in the growth media of Frankinia to increase water holding capacity, delay in permanent wilting point and drought stress control. The experiment was carried out during drought stress out of greenhouse in open space in 2017. A factorial experiment based on Randomized Completely Block Design with two factors was conducted. First factor was three periods of irrigation in 2 and 4 days and one week, second factor was different growth media including: 1.90% soil+10% manue, 2. 70% soil, 15% manure+ 15% vermicompost, 3.70% soil, 15% manure+ 15% vermicompost + 1 g/kg stockosorb (super absorbent), 4.50% soil, 25% manure+ 25% vermicompost and 5. 50% soil, 25% manure+ 25% vermicompost + 1 g/kg super absorbent. Rooted transplants of Frankinia in pots (diameter 12 cm and height 15 cm) were planted in boxes 30×30 cm numbered 6 every box. Morphological traits including longest branch, total number of lateral branches, dry and fresh weight of shoot, prolin, leaf relative water and the concentration of K, P, Fe and Zn in shoot and uptake of these nutrients by shoot, were measured. The growth media were analyzed for pH, EC, organic carbon, total nitrogen, C/N ratio and P and K available. Results showed the mixture 50-50 of soil and organic compounds (composted manure and vermicompost) is used as the growth medium. Using one g/kg superabsorbent in cited medium in compared with control medium (irrigation period 2 days), can increase irrigation period to one week.
در میان مجموعه غنی از گیاهان پوششی، گیاهانی یافت میشوند که میتوانند جایگزین چمن شوند و میتوان آنها را برای جاهایی که چمن با شکست مواجه شده و یا مراقبت از آن دردسرساز بوده در نظر گرفت. گیاهان پوششی راه حلی آشکار برای این مکانها میباشند که شاخصترین این گیاهان شامل فرانکینیا، سدوم، دایکوندرا، لیزوماکیا، آرنیا، آپتنیا و غیره... میباشد. هدف از انجام این مطالعه، استفاده از ضایعات آلی، کودهای بیولوژیک و سوپر پلیمرهای جاذب به منظور افزایش نگه داشت آب در خاک، تأخیر در نقطه پژمردگی دائم، کنترل تنش آبی و بهبود ظرفیت نگه داشت آب در بستر رشد گیاه فرانکینیا است. این آزمایش به منظور بررسی رشد گیاه فرانکینیا تحت شرایط تنش خشکی در سال 1396 تحت شرایط خارج از گلخانه و در محیط باز صورت گرفت. یک آزمایش فاکتوریل بر پایه طرح بلوک های کامل تصادفی با دو فاکتور، طراحی و اجرا گردید. فاکتور اول سه دوره آبیاری شامل 2 روز، 4 روز و 7 روز و فاکتور دوم پنج بستر کشت که شامل درصدهای متفاوتی از مواد تشکیل دهنده 1- بستر کشت شماره یک: شامل 90 درصد خاک زراعی + 10 درصد کود پوسیده دامی، 2- بستر کشت شماره دو: شامل 70 درصد خاک + 15 درصد کود پوسیده دامی + 15 درصد ورمی کمپوست، 3- بستر کشت شماره سه: شامل 70 درصد خاک + 15 درصد کود پوسیده دامی+ 15 درصد ورمی کمپوست + یک گرم بر کیلوگرم سوپر جاذب استوکوزورب، 4- بستر کشت شماره چهار: شامل 50 درصد خاک + 25 درصد کود پوسیده دامی + 25 درصد ورمی کمپوست، 5- بستر کشت شماره پنج: شامل 50 درصد خاک + 25 درصد کود پوسیده دامی + 25 درصد ورمی کمپوست+یک گرم بر کیلوگرم سوپرجاذب می باشد. نشاهای گیاه فرانکینیا که در گلدان هایی با قطر دهانه 12و ارتفاع 15 سانتی متر از قبل ریشه دار شده بودند، به ترتیب در پلات های مستطیلی شکل به ابعاد 30 در 30 سانتی متر و به تعداد 6 عدد نشاء در هر پلات کاشته شد. صفات مورفولوژیکی شامل طول بلندترین شاخه، تعداد کل شاخه های جانبی، وزن تر و خشک اندام هوایی، میزان پرولین موجود در گیاه، میزان آب نسبی برگ و غلظت عناصر در اندام هوایی شامل پتاسیم، فسفر، آهن و روی اندازهگیری شد. بسترهای کشت خاک از نظر pH، EC، کربن آلی، نیتروزن کل، نسبت C/N، فسفر و پتاسیم قابل جذب تجزیه شد.نتایج نشان داد که برای رشد بیشتر فرانکینیا، از مخلوط 50- 50 از خاک و مواد آلی (کود دامی پوسیده و ورمیکمپوست) به عنوان بستر کاشت استفاده شود. با استفاده از یک گرم بر کیلوگرم سوپرجاذب رطوبت در بستر کشت بالا، در مقایسه با بستر شاهد (آبیاری 2 روز) میتوان دور آبیاری را به یک هفته افزایش داد.
Almasiyan, F., Astayi, A. and Nasiri Mahallati, M. 2006. Effect of leachate and solid waste compost on yield and yield components of wheat. DESERT (Biaban), 11 (1):89-97. (in Persian).
Barbosa, O., Tratalos, J.A., Armsworth, P.R., Davies, R.G., Fuller, R.A., Johnson, P. and Gaston, K.J. 2007.Who benefits from access to green space? A case study from Sheffield, UK. Landscape and Urban Planning, 83(2): 187-195.
Bialczyk, J., Lechowski, Z., Dziga, D. and Meja, E. 2007. Fruit yield of tomato cultivated on media with bicarbonate and nitrate/ ammonium as the nitrogen source. Journal of Plant Nutrition, 30: 149-161.
Davidson, H., Mecklenburg, R. and Peterson, C. 1994. Nursery management: Administration and culture. Third ed. Englewood Cliffs, NJ, USA: Prentice Hall.
Easton, L.C. and Kleindorfer, S. 2009. Effects of salinity levels and seed mass on germination in Australian species of Frankenia L. (Frankeniaceae). Environmental and Experimental Botany, 65(2): 345-352.
Fallahian, A. 2006. Grass construction and maintenance technology. Mashhad University Press, 90 pages. (in Persian).
Gayasinghe, G.Y., Liyana Arachchi, I.D. and Tokashiki, Y. 2010. Evaluation of containerized substrates developed from cattle manure compost and synthetic aggregates for ornamental plant production as a peat alternative. Resources Conservation and Recycling, 54: 1412–1418.
Goos, R.J. 1995. A laboratory exercise to demonstrate nitrogen mineralization and immobilization. Journal of Natural Resources and Life Sciences Education, 24: 68-70.
Grigatti, M., Giorgioni, M.E. and Ciavatta, C. 2007. Compost-based growing media: Influence on growth and nutrient use of bedding plants. Bioresource Technology, 98 (18): 3526–3534.
Emami, A. 1996. Plant analysis methods. Soil and Water Research Institute, Iran, pp: 982 (in Persian).
Jankauskien, J. and Brazaity, A. 2008. The influence of various substratum on the quality of cucumber seedling and photosynthesis parameters. Lithuanian Iinstitute of Horticulture, 126 (3): 288- 303.
Mohammadi Torkashvand, A. 2006. Investigating the possibility of using sugarcane molasses as soil modifier. Final Report of Research Project, Faculty of Agriculture, Islamic Azad University of Rasht, Rasht.
Mohammadi Torkashvand, A., Alidoust, M. and Mahboub Khomami, A. 2015. The reuse of peanut organic wastes as a growth medium for ornamental plants. International Journal Recycling Organic Waste Agriculture, 4: 85–94.
Mohammadi Torkashvand, A., Deljooy-e-Tohidi, T., Hashemabadi, D. and Kaviani, B. 2015. Effect of different growth media and fertilization methods on growth characteristics and yield of English daisy. Journal of Science and Technology of Greenhouse Culture, 5 (4): 95-109.
Mohammadi Torkashvand, A., Khanjani, H. and Sedaghathoor, S. 2015. The effect of cow manure compost in cultivation bed and irrigation water salinity on the growth of Strelitzia reginae. Trakia Journal of Sciences, 2: 137-142.
Mohammadi Torkashvand, A., Sedaghathoor, S. and Jamalpour, H. 2016. Effects of some organic matter and an artificial moisture absorbent on soil available water, delay of permanent wilting point and the growth of Lysimachia Nummularia cv. ‘Aurea’. Journal of Water and Soil Science, 20 (75): 87-99.
Mohammadi Torkashvand, A., Shahin, H. and Mohammadi, M. 2017. Growth of olive saplings in different media containing artificial and natural super absorbents at two irrigation intervals. Global Journal of Environmental Science and Management, 3 (3): 312-322.
Mohammadkhani, N. and Heidari, R. 2008. Drought-induced accumulation of soluble sugars and proline in two maize varieties. Journal of World Applied Sciences, 3(3): 448-453.
Moldes, A., Cendon, Y. and Barral, M.T. 2007. Evaluation of municipal solid waste compost as a plant growing media component, by applying mixture design. Bioresource Technology, 98: 3069-3075.
Munns, R. and James, R.A. 2003. Screening methods for salinity tolerance: A case study with tetraploid wheat. Plant and Soil, 253 (1): 201-218.
Nayyar, H. 2003 .Acclimation of osmolytes and osmotic adjustment in water-stressed wheat and maize as affected by calcium and its antagonists. Environmental and Experimental Botany, 50:253-264.
Nayyar, H. and Gupta, D. 2006. Differential sensitivity of C3 and C4 plant to water deficit stress: Assosiation with oxidative stress and antioxidants. Environmental and Experimental Botany, 58: 106-113.
Page, A.L., Miller, R.H. and Keeney, D.R. 1982. Methods of soill analysis, Part 2, Chemical and microbiological properties. American Society of Agronomy, Inc. Soil Science of America, Inc. Madison, Wisconsin, USA.
Paranychianakis, N.V. and Chartzoulakis, K.S. 2005. Irrigation of Mediterranean crops with saline water: Fromphysiology to management practices. Agriculture, Ecosystems and Environment, 106: 171-187.
Rahimi Mohammadabad, N., Gholizadeh, F., Zarei, H. and Hemati, H. 2010. Evaluation of proper ratio of sand, rice hull and mushroom compost on qualitative traits of grass. Journal of Plant Environmental Physiology, 2 (34): 52-64.
Robert, D.W. and Browder, J.F. 2005. Chipped pine logs: A potential substrate for greenhouse and nursery crop. HortScience, 40 (5): 1513-1515.
Samiyani, A., Ansari, H., Azizi, M., Hasheminia, M. and Salahurzai, Y. 2014. Effect of drought stress on some biochemical indices in four cover crop species (turf grass (Lolium prenne), Potentilla reptans, Trifolium repens and Frankinia) with usability in green space. Journal of Science and Technology of Greenhouse Cultures, 4 (15), 110-101.
Shadanpur, F., Mohammadi Torkashvand, A. and Hashemi Majd, K. 2011. Marigold: The possibilty using vermicompost as the growth medium. Journal of Ornamental Plants, 1(3): 153-160.
Sivapalan, S. 2001. Effect of polymer on soil water holding capacity and plant water use efficiency. Proceedings of the 10th Agronomy Conference, Hobart, Tasmania, Janurary 2001.
Stocker, O. 1960. Physiological and morphological changes in plant due to water deficiency. Central Arid Zone Research Institute, 15: 63-94.
Tardieu, F. 2005. Plant tolerance to water deficit: Physical limits and possibilities for progress. Geoscience, 337: 57-67.
Verdonck, O. and Gabriels, R. 1992. I. Reference method for the determination of physical properties of plant substrates. II. Reference method for the determination of chemical properties of plant substrates. Acta Horticulturae, 302: 169-179.