تاثیر آبیاری تکمیلی، محلول پاشی اسید سالیسیلیک و هیومیک اسید بر واکنش رنگیزه های گیاهی(کلروفیل a، کلروفیل b و کروفیل کل) و میزان جذب عناصر غذایی بالنگوی شهری (Lallemantia iberica) درشرایط آب و هوایی خرم آباد
محورهای موضوعی : اسید هیومیکالناز خشنود 1 , علیرضا شکوه فر 2 , طیب ساکی نژاد 3 , مسعود رفیعی 4 , سید کیوان مرعشی 5
1 - گروه فیزیولوژی گیاهان زراعی، دانشگاه آزاد اسلامی، اهواز، ایران
2 - گروه زراعت، واحد اهواز، دانشگاه آزاد اسلامی، اهواز، ایران
3 - گروه زراعت، واحد اهواز، دانشگاه آزاد اسلامی، اهواز، ایران
4 - هیئت علمی بخش تحقیقات علوم زراعی و باغی، مرکز تحقیقات و آموزش کشاورزی و منابع طبیعی لرستان، سازمان تحقیقات، آموزش و ترویج کشاورزی،
5 - گروه زراعت، واحد اهواز، دانشگاه آزاد اسلامی، اهواز، ایران
کلید واژه: بالنگوی شهری, سالیسیلیک اسید, گیاهان روغنی, محلول پاشی, هیومیک اسید,
چکیده مقاله :
هدف از این پژوهش بررسی تأثیر آبیاری تکمیلی و محلولپاشی اسید سالیسیلیک و هیومیک اسید بر خصوصیات بیوشیمیایی تودههای بالنگوی شهری در شرایط آب و هوایی خرم آباد در ایستگاه تحقیقاتی ویسیان بود. بدین منظور آزمایشی به صورت اسپلیت پلات_ فاکتوریل به مدت دوسال در قالب طرح پایه بلوک کامل تصادفی در سه تکرار در سالهای زراعی ۹۹-۱۳۹۷ در شهرستان خرم آباد انجام شد. فاکتور اصلی آبیاری تکمیلی در چهار سطح شامل شاهد، آبیاری در مرحله غنچه دهی، در مرحله گل دهی، در مرحله غنچه دهی و گل دهی و عامل فرعی محلولپاشی اسید سالیک در سه سطح شامل شاهد، محلولپاشی با غلظت 5/0 میلی مولار، با غلظت 1 میلی مولار و عامل فرعی محلولپاشی هیومیک اسید در دو سطح شامل شاهد و با غلظت 1 میلی مولار بود. صفات مورد ارزیابی در این آزمایش شامل میزان نیتروژن، فسفر، پتاسیم، مس و آهن اندام هوایی، کروفیل a، کلروفیل b و مجموع کلروفیل a و b بودند. سطوح مختلف آبیاری تکمیلی و محلولپاشی اسید هیومیک و سالیسیک اسید به صورت معنی داری بر صفات فوق اثرگذار بودند. بر اساس نتایج مقایسات میانگین، بیشترین مقدار نیتروژن در اندام هوایی، آهن در اندام هوایی، کلروفیلa، کلروفیلb، کلروفیل کل در سال اول، در تیمار آبیاری تکمیلی در مرحله غنچهدهی- محلول پاشی سالیسیلیک اسید با غلظت ۱ میلیمولار و محلول پاشی هیومیک اسید با غلظت ۱ میلی مولار حاصل شد.
The objective of this study was to investigate the effects of supplementary irrigation and foliar spraying with salicylic acid and humic acid on the biochemical properties of dragon's head (Lallemantia iberica) under Khorramabad climatic conditions at Visian Research Station. The experiment was conducted as a split-plot-factorial based on a randomized complete block design for two years of 2017- 2018 and 2018-2019 in Khorramabad city.Experimental treatments consisted of supplementary irrigation at four levels (including control, budding stage, flowering stage, and budding stage + flowering stage) as the main factor; foliar spraying with salicylic acid at three levels (including control, 0.5 mM, and 1 mM) as the first subfactor, and foliar spraying with humic acid at two levels (including control and 1 mM) as the second subfactor. In this study, different characteristics such as shoot nitrogen content, shoot phosphorus content, shoot potassium content, shoot copper content, shoot iron content, chlorophyll a, chlorophyll b, and chlorophyll total were evaluated. According to the results, various levels of supplementary irrigation and foliar spraying with humic acid and salicylic acid significantly affected the above characteristics. Mean comparison results revealed that the highest nitrogen content in the shoot (3.74%), shoot iron content (182.33 mg g-1), chlorophyll a (5.18 mg g-1 fresh weight), chlorophyll b (5.18 mg g-1 fresh weight) chlorophyll total (5.18 mg g-1 fresh weight) were recorded in the first year under treatment with supplementary irrigation at the budding stage and foliar spraying with salicylic acid (1 mM) and humic acid (1 mM).
Abedi, T. and Pakniyat, H. (2010). Antioxidant enzyme changes in response to drought stress in
ten cultivars of oilseed rape (Brassica napus L.). Czech Journal of Genetics and Plant
Breeding. 46: 27-34.
Attia, A. N., Sultan, M. S., Emara, M.A. and El-Shazly, B.W. (2017). Effect of Foliar Spraying
with Nano and Natural Materials under Water Stress Conditions on Cotton Leaves Chemical
Composition. Journal of Plant Production. 8(2):161 -169.
Ayari, M. (2016). Effect of seed pretreatment and supplementary irrigation on some
physiological characteristics of urban lallemantia plant. Ph.D. Thesis. Faculty of Agriculture,
University of Tabriz.
Benami, A. and Ofenm, A. (1984). Irrigation engineering-sprinkler, trickle and surface
irrigation: principles, design and agricultural practices. Irrigation Engineering Scientific
Publications.pp.257.
Demir, S. (2004). Influence of arbuscular mycorrhiza on some physiological growth parameters
of pepper. Turkish Journal of Biology. 28: 85-90.
Dordas, C. and Sioulas, S. (2008). Safflower yield, chlorophyll content, photosynthesis and
water efficiency response to nitrogen fertilization under rainfed conditions. Crop Product.
27: 78-85.
Eskandari, H.A. and Valizadeh Amrayi, A. (2016). Effect of supplementary irrigation in
reproductive growth stage on grain yield, oil and energy efficiency of rapeseed production
system in rainfed conditions. Journal of Agriculture. 18 (4): 907-919.
Fazli, M., A., Mir Mahmoudi, T., Rahimi, A. and Yazdan Seta, S. (2020). Effect of irrigation
regime and fertilizer treatments on vegetative and yield properties of Lallemantia royleana
Benth Journal of Environmental Stress in Crop Sciences. 14(4): 1015-1003.
Ghorbani S., Khazayi H.M, Kafi, M. and Banayanaval M. (2010). Effect of Humic acid in
irrigation water on yield and yield components of maize (Zea mays L.). Journal of Ecology.
2(1):131-123.
Ghosh, P.K., Ajay, K.K., Bandyopadhyay, M.C., Manna, K.G., Mandal, A.K. and Hati, K.M.
(2004). Comprative effectiveness of cattle manure, poultry manure, phosphocompost and
fertilizer NPK on three cropping system in vertisoils of semi-arid tropics. Dry matter yield,
nodulation, chlorophyll content and enzyme activity. Bioresource Technology, 95: 85-93.
Idrees, M., Khan, M.M.A., Naeem, M., Aftab, T., Hashmi, N. and Alam, M. (2011). Modulation
of defence responses by improving photosynthetic activity, antioxidative metabolism and
vincristine and vinblastine accumulation in Catharanthus roseus (L.) G. Don through
salicylic acid under water stress. Russian Agricultural Sciences. 37: 474-482.
Jabbari, M., Khayyat, M., Fallahi, H.R. and Samadzadeh, A.R. (2017). Influence of saffron
corm soaking in salicylic acid and potassium nitrate on vegetative and reproductive growth
and its chlorophyll fluorescence indices. Saffron Agronomy and Technology. 5(1): 21-35.
Kausar, A. and Azam, F. (1985). Effect of humic acid on wheat seeding growth. Environmental
and Experimental Botany 25: 245-252.
Khaled, H. and Fawy, H. (2011) Effect of different levels of humic acids on the nutrient content,
plant growth and soil properties under conditions of salinity. Soil and Water Research. 6(1):
21-29.
Lichtenthaler, H.K. and Bustchmann, C. (2001). Chlorophylls and Carotenoids: Measurement
UNIT F4.3 and Characterization by UV-VIS Spectroscopy. Current Protocols in Food
Analytical Chemistry, F4.3.1-F.4.3.8.
Mackowiak, C.L., Grossl, P.R. and Bugbee, B.G. (2001). Beneficial effects of humic acid on
micronutrient availability to wheat. Soil Science Society of America Journal. 65:1744-1750.
Metwally, A., Finkemeier, I., Georgi, M. and Dietz, K. J. (2003). Salicylic acid alleviates the
cadmium toxicity in barley seedlings. Plant Physiology, 132(1): 272-281.
Mostafavi, Ro. and Jlilian, J. (2019). Investigation of yield changes, physiological
characteristics and quality of Lallemantia iberica under the influence of chemical, bioorganic
fertilization and frequency of irrigation, Iranian Journal of Rainfed Agriculture, 8
(1): 95-115.
Mozaffari, M. Khorasani Nejad, S. and Gorgini Shabankareh, H. (2017). Effect of irrigation
regimes and application of HA on some physiological and biochemical characteristics of
Portulaca oleracea under greenhouse conditions. Journal of Agriculture, 19 (2): 401-416.
Mulvaney CS and Bremer JM (1982). Methods of soil analysis. Chemical and Microbiological
Properties. Part. 2, Pp. 595-624.
Nematollahi, A., Jafari, A. and Bagheri. A. (2013). Effects of drought and salicylic acid on
photosynthetic pigment and nutrient uptake of the cultivated sunflower (Helianthus annuus
L.). Journal of Plant EchoPhysiology. 5(12): 86-102.
Naderi, R., Valizadeh, M., Toorchi, M., and Shakiba, M.R. (2014). Antioxidant enzyme changes
in response to osmotic stress in wheat (Triticum aestivum L.) seedling. Acta Biologica
Szegediensis, 58(2): 95-101.
Nasuti Miandoab, R., Samavat, S. and Tehrani, M. M. (2010) Humic acid fertilizer on plants
and soil properties. Food Agriculture 101: 53-55.
Oweis, T. and Hachum, A. (2006). Water harvesting and supplemental irrigation for improved
water productivity of dry farming systems in West Asia and North Africa. Agricultural water
management, 80(1-3): 57-73.
Pirzad, A., Alyari, H. Shakiba, M.R., Zehtab-Salmasi, S. and Mohammadi, A. (2006). Essential
oil content and composition of german chamomile (Matricaria chamomilla L.) at different
irrigation regimes. Journal of Agronomy. 5(3): 451-455.
Prakash, K., Soora, N.K. and Soora, V.M. (2018). Responses of soybean to water stress and
supplemental irrigation in upper Indo-Gangetic plain: Field experiment and modeling
approach. Field crop Research 219:76-86.
Rahimi, N., Jalilian, J., Pirzad, A.R., and Gholinejad, A. (2019). Study of changes in grain yield
and oil of linseed oil (Linum usitaissimum). Journal of Plant Ecophysiology, 20th Year, 41:
42-52.
Rajpar, I., Bhatti, M.B. Ul-hassan, Z. Shah, A.N. and Tunio, S.D. (2011). Humic acid improves
growth, yield and oil content of Brassica compestris L. Journal of Agriculture, Agricultural
Engineering and Veterinary Science. 27(2): 125-133.
Ryan J, Estefan, G. and Rashid A (2001). Soil and plant Analysis: Laboratory manual,
interaction center for agricultural research in the dry areas (ICARDA). 2nd Ed. A leppo,
Syrian, pp: 1-18.
Zachariakis, M., Tzorakakis, E., Kritsotakis, I., Siminis, C.I. and Manios, V. (2001). Humic
substances stimulate plant growth and nutrient accumulation in grapevine rootstocks. Acta
Horticulturae, 549: 131-13.
Zandi, N., Khalesroo, Sh., Badakhshan, H. and Haidarf, Gh. (2020). Effect of HA foliar
application on yield and morphological traits of some safflower cultivars. Journal of
Agricultural Knowledge and Sustainable Production. 13 (4): 2-14.
Zargaran, S.M. Tehran Far, A. Nemati, H. and Siavashpour, B. (2016). Effect of SA on some
morphophysiological characteristics of sunflower flowers in water deficit conditions. Journal
of Horticultural Sciences (Agricultural Sciences and Industries) 30 (1): 151-162.
Zhao, H. C. (2000). Influence of water stress on the lipid physical membrance from
P.betuloefolia. Biointerfaces 19: 181-185.