Response of Qualitative Characteristics of Cowpea to Foliar Application of Methanol and Zinc Chelate
الموضوعات :Hossien Atrak 1 , Mani Mojadam 2
1 - Msc. Graduated, Department of Agronomy, Ahvaz Branch, Islamic Azad University, Ahvaz, Iran.
2 - Assistant Professor, Department of Agronomy, Ahvaz Branch, Islamic Azad University, Ahvaz, Iran.
الکلمات المفتاحية: Plant height, leaf area index, <i>Chlorophyll, Protein</i>, Pod length,
ملخص المقالة :
BACKGROUND: Foliar fertilization has the advantage of low application rates, uniform distribution of fertilizer materials and quick responses to applied nutrients. Zinc Playing an important role in many biological processes and as an essential element for plant growth and development. OBJECTIVES: This study was done to evaluate the effect of different level of Methanol and Zinc fertilizer on chlorophyll index, protein content, leaf area index and crop production. METHODS: This study was carried out according Factorial experiment based on randomized complete blocks design with three replications along 2018 year. The test factors consisted of different levels of Methanol in distilled water at three levels (a1: the absence of methanol or control, a2: 10% Vol., a3: 20% Vol.) and zinc fertilizer (b1: the lack of zinc or control, b2: 2 per thousand, b3: 4 per thousand). RESULT: Data of analysis of variance indicated effect of different level of Methanol and zinc fertilizer on all studied traits were significant but interaction effect of treatments (instead seed yield) was not significant. Mean comparison result of different level of Methanol indicated that maximum amount of plant height (153.49 cm), pod length (13.12 cm), leaf area index (4.43), chlorophyll index (58.33), protein content (31.51%), protein yield (68.71 gr.m-2) and seed yield (218.08 gr.m-2) was noted for 20%vol. and the minimum of mentioned traits were for control treatment. As for Duncan classification made with respect to different level of Zinc Chelate maximum and minimum amount of studied traits belonged to 4 per thousand concentration (also that doesn’t have significant differences with 2 per thousand) and control treatment. CONCLUSION: Generally based on result of this study use 20%vol. Methanol and 2 per thousand concentration Zinc Chelate produce the maximum amount of mentioned characteristics and can be advice to farmers.
Arnold Bruns, H. and H. Abbas. 2005. UltraHigh plant populations and nitrogen fertility effects on Corn in the Mississippi valley. Vol. 97. USA.
Bakhash-Kelarestaghi, K., H. Madani, M. Bazoobani. and M. Asadi. 2007. Optimizing of zinc quantity and application method on bread wheat (Triticum aestivum L.) in Bam region of Iran. Proc. Zinc Crops Conf. Istanbul. Turkey.
Bakhtavar, M. A., I. Afzal, S. M. A. Basra, A. U. H. Ahmad. and M. A. Noor. 2015. Physiological strategies to improve the performance of spring Maize (Zea mays L.) planted under early and optimum sowing conditions. PLOS ONE. 10(4). e0124441.
Bybordi, A. and G. Mamedov. 2010. Evaluation of Application Methods Efficiency of Zinc and Iron for Canola (Brassica napus L.). Notulae Scientia Biologicae. 2(1): 94-103.
Cakmak, I. 2008. Enrichment of cereal grains with zinc: Agronomic or genetic biofortification. Plant and Soil. 302(1-2): 1-17.
Dhopte, A. M,. and L. M. Manuel. 2002. Principles and techniques for plant scientists. 1st Ed. Updesh Purohit for Agrobios (India), Odhpur. ISBN: 81-7754-116-1, pp: 373.
El-Awadi, M. E., A. M. El-Bassiony, Z. F. Fawzy. and M. A. El-Nemr. 2011. Response of Snap Bean (Phaseolus vulgaris L) plants to nitrogen fertilizer and foliar application with methionine and tryptophan. J. Nature and Sci. 9(5): 87-94.
FAOSTAT. 2017. Green Bean World Statistics. Major food and agricultural commodities producers Countries by commodity. Available online: www.faostat.fao.org (accessed on 23 October 2017).
Fatahe, R. 2006. Study the effects of integrated application of micronutrient (zinc Nano chelate) on mungbean yield. 18th Cong. Soil Sci. pp: 18-21.
Grujcic, D., T. H. Hansen, S. Husted, M. Drinic. and B. R. Singh. 2018. Effect of nitrogen and zinc fertilization on zinc and iron bioavailability and chemical speciation in maize silage. J. Trace Elements in Medicine and Biol. 49: 269-275.
Ghasempour, R. and M. Ashori. 2014. Impact of various planting spaces and different levels of nitrogen fertilizer on yield and yield components of green beans (cultivated) under the weather of Guilan (Province). Indian J. Fundamental and Appl. Life Sci. 4(4): 2950-2956.
Grzebisz, W., M. Wronska, J. B. Diatta. and P. Dullin. 1999. Effect of zinc foliar application at an early stage of maize growth on patterns of nutrients and dry matter accumulation by the canopy. I: Zinc uptake patterns and its redistribution among maize organs. J. Elementology. 13: 17-28.
Gupta, U. C., W. U. Kening. and L. Siyuan. 2008. Micronutrients in soils, crops, and livestock. Earth Sci. Front. 15(5): 110-125.
Harssine, M. G., H. Habibe. and G. H. Talaiy. 2014. Study the effects of iron Nano chelate fertilizers foliar application on yield and its components of wheat. J. Agric. Adv. 3(4): 95-102.
Jalilshesh-Bahre, M. and M. Movahedi Dhnavi. 2012. Effect of zinc and iron application on soybean seed vigor grown under drought stress. E. J. Crop Prod. 5: 19-35. (Abstract in English)
Jamshidi, M., A. R. Danesh Shahraki. and S. M. Hashemi Jozei. 2016. The effect of foliar spray of manganese and zinc elements on grain yield and yield components of red bean seeds under drought stress conditions. Iranian J. Cereal Res. 7(2): 167-174. (Abstract in English)
Keeney, D. R. and D. W. Nelson. 1982. Nitrogen in organic forms. pp. 643-698. In: A. L. Page, R. H. Miller and D. R. Keeney (Eds.), Method of soil analysis. Part II. USA.
Marschner, H. 1993. Zinc in soil and plant, Robon, A. D. (Ed.), Zinc in soil and plants, Drodrcht, the Netherlands. Kluwer Academic Pub. pp: 55-77.
Mabhot, P. 2017. Effect of different level of Nano-chelate zinc on quantitative traits and seed yield of cowpea. 5th National Conf. Iranian Soc. Plant. Physiol. Cong. Zanjan University. Zanjan. Iran. (Abstract in English)
Moallim, A. H. and H. R. Eshqizade. 2007. Application of bio-fertilizers: advantages and limitations. 2th Natl. Cong. Ecol. Agri. (Abstract in English)
Noulas, C., M. Tziouvalekas. and T. Karyotis. 2018. Zinc in soils, water and food crops. J. Trace Elements in Medicine and Biol. 49: 252-260.
Oliver, M. A. and P. J. Gregory. 2015. Soil, food security and human health: A review [Article]. Europ. J. Soil Sci. 66(2): 257-276.
Poblaciones, M. J. and Z. Rengel. 2016. Soil and foliar zinc biofortification in field pea (Pisum sativum L.): Grain accumulation and bioavailability in raw and cooked grains. Food Chem. 212: 427-433.
Sabet, H. and F. Mortazaeinezhad. 2018. Yield, growth and Fe uptake of cumin (Cuminum cyminum L.) affected by Fe-nano, Fe-chelated and Fe-siderophore fertilization in the calcareous soils. J. Trace Elements in Medicine and Biol. 50: 154-160.
Sarbandi, H. and H. Madani. 2014. Response yield and yield component of Chickpea to foliar application of micronutrients. Tech. J. Eng. Appl. Sci. 4(1): 18-22.
Sawan, Z. M., S. A. Hafez. and A. E. Basyony. 2001. Effect of phosphorus fertilization and foliar application of chelated zinc and calcium on seed, protein and oil yields and oil properties of cotton. J. Agri. Sci. 136(2): 191-198.
Shirkhani, A. and S. Nasrolahzadeh. 2016. Vermi compost and Azotobacter as an ecological pathway to decrease chemical fertilizers in the maize, Zea mays. Bio-Sci. Bio-Tech. Res. Comm. 9(3): 382-390.
Shojaei, H. and H. Makarian. 2015. The effect foliar application zinc yield and yield component of Mungbean the drought stress. Iranian J. Field Crops Res. 12(4): 727-737. (Abstract in English)
Soleymani, A. and M. H. Shahrajabian. 2016. The effects of Fe, Mn and Zn foliar application on yield, ash and protein percentage of forage sorghum in climatic condition of Esfahan. Intl. J. Biol. 4(3): 92-97.
Staggenborg, S. A., K. C. Dhuyvetter. and W. B. Gordon. 2008. Seed sorghum and corn comparisons: Yield, economics, and environmental responses. Agron. J. 100: 1600-1604.
Ranjbar, G. A. and M. A. Bahmaniar. 2007. Effects of soil and foliar application of Zn fertilizer on yield and growth characteristics of Bread Wheat (Triticum aestivum L.) cultivars. Asian J. Plant Sci. 6: 1000-1005.
Thalooth, A. T., N. M. Badr. and M. H. Mohamed. 2005. Effect of foliar spraying with Zn and different levels of Phosphatic fertilizer on growth and yield of sunflower plants grown under saline condition. Egyptian J. Agron. 27: 11-22.
Thalooth, A., M. Tawfik. and M. A. Magda Mohamed. 2009. Comparative study on the effect of foliar application of zinc, potassium and magnesium on growth, yield and some chemical constituents of mung bean plants grown under water stress conditions. World J. Agri. Sci. 2(1): 37-46.
Ullah, G., E. A. Khan, I. U. Awan, M. A. Khan, A. A. Khakwani, M. S. Baloch, Q. Ullah Khan, M. S. Jilani, K. Wasim, S.Javeria. and Gh. Jilani. 2013. Wheat response to application methods and levels of nitrogen fertilizer: I. phenology, growth indices and protein content. Pak. J. Nutrition. 12(4): 365-370.
Wilson, J. W. 1981. Analysis of growth, photosynthesis and light interception for single plants and stands. Annals Bot. 48(3): 507-512.