پژوهش‌های حبوبات ایران

پژوهش‌های حبوبات ایران

اثر کاربرد اسید هیومیک بر صفات ریخت‌شناختی، اجزای عملکرد و عملکرد دانه ارقام ماش (Vigna radiata L.)

نوع مقاله : مقاله پژوهشی

نویسندگان
گروه مهندسی تولید و ژنتیک گیاهی، دانشکده کشاورزی، دانشگاه لرستان، خرم آباد، ایران
چکیده
ماش (Vigna radiata L.) با ارزش غذایی بالا و توانایی تثبیت زیستی نیتروژن، گیاه زراعی مهمی محسوب می‌شود. به نظر می­رسد که ارقام مختلف ماش در پاسخ به سطوح متفاوت اسید هیومیک، واکنش متفاوتی نشان دهند. بر این اساس، آزمایشی به‌صورت فاکتوریل در قالب طرح بلوک­های کامل تصادفی با سه تکرار در سال 1403 در دانشکده کشاورزی دانشگاه لرستان در شهرستان خرم آباد برای بررسی واکنش ارقام ماش به کاربرد اسید هیومیک انجام شد. تیمارها شامل ارقام مختلف ماش: توده بومی اولیه ارتشی (C1)، توده بومی ثانویه ملک (C2) و عمرانی (C3) و سطوح اسید هیومیک شاهد صفر (آب خالص) (F1)، ۵۰ (F2) و ۱۰۰ (F3) میلی‌گرم در لیتر بودند. مقادیر مصرف اسید هیومیک در دو مرحله شاخه‌دهی و گل‌دهی استفاده شدند. نتایج نشان داد که اثر متقابل ارقام و اسید هیومیک بر صفات عملکرد زیستی، عملکرد دانه، شاخص برداشت و وزن خشک غلاف در سطح یک درصد معنی‌دار بود. بیشترین عملکرد زیستی معادل 2/3 تن در هکتار از توده بومی ثانویه ملک با 50 میلی‌گرم در لیتر اسید هیومیک حاصل شد. ولی از نظر عملکرد دانه رقم عمرانی همراه با کاربرد ۱۰۰ میلی‌گرم در لیتر اسید هیومیک بیشترین عملکرد دانه (4/2 تن در هکتار) را داشت. احتمالاً کاربرد اسید هیومیک با بهبود ساختار خاک و خاصیت کلات‌کنندگی، جذب نیتروژن و فسفر را توسط ریشه‌ها به حداکثر می‌رساند و باعث بهبود رشد و عملکرد ماش می­شود. به‌طورکلی، نتایج نشان داد که رقم عمرانی از نظر رشد و عملکرد برتری داشت و کاربرد ۱۰۰ میلی‌گرم در لیتر اسید هیومیک نیز موجب بهبود برخی صفات عملکردی آن شد. بنابراین، انتخاب رقم مناسب همراه با مصرف بهینه اسید هیومیک می‌تواند راهکاری مؤثر برای افزایش عملکرد ماش باشد.
کلیدواژه‌ها
موضوعات

عنوان مقاله English

Effect of Humic Acid Application on Morphological Traits, Yield Components, and Seed Yield of Mung Bean (Vigna radiata L.) Cultivars

نویسندگان English

Sajjad Rahimi
Khosro Azizi
Sajjad Rahimi-Moghadam
چکیده English

Introduction
Mung bean (Vigna radiata L.) is a valuable legume crop whose seeds contain approximately 22-25% protein, 51% carbohydrates, 10% moisture, 4% minerals (including magnesium, potassium, manganese, copper, and zinc), 3% vitamins (particularly B-complex vitamins) as well as dietary fiber and antioxidants. As a member of the Fabaceae (legume) family, mung bean serves as an important source of plant-based protein in the human diet. It is also one of the legume crops well adapted to the climatic conditions of Iran. Humic acid is recognized as an environmentally friendly organic fertilizer enhancing plant growth and improving soil fertility. Evaluating the quantitative and morphological traits of local mung bean populations facilitates the identification of genetically diverse cultivars with superior agronomic performance, thereby supporting crop improvement and sustainable agricultural production. Therefore, the current research was conducted to investigate the effects of foliar application of different concentrations of humic acid on the quantitative and morphological characteristics of mung bean cultivars.

Materials and Methods
The experiment was carried out at the research farm of Lorestan University, Khorramabad, Iran, using a factorial arrangement based on a randomized complete block design (RCBD) with three replications. The experimental factors consisted of three mung bean cultivars: Arteshi (primary landrace; C₁), Malek (secondary landrace; C₂), and Omrani (breeding cultivar; C₃), as well as three levels of humic acid: 0 mg.L⁻¹ (control, distilled water only; F₁), 50 mg.L⁻¹; F₂), and 100 mg.L⁻¹; F₃). Sowing was carried out during the summer growing season on July 11. All crop management practices, including weeding and other field operations, were performed manually. Humic acid treatments were applied as foliar sprays at two growth stages: branching and flowering. Leaf nitrogen content was determined using the Kjeldahl method. Statistical analyses were performed using SAS software (version 9.4), and treatment means were compared using the Least Significant Difference (LSD) test at the 5% probability level. Furthermore, the relationships among the traits were evaluated using simple Pearson’s correlation coefficients, and path analysis based on the correlation coefficients was performed to determine the direct and indirect effects of the traits associated with seed yield.

Results and Discussion
The analysis of variance indicated that cultivar had a significant effect (P < 0.01) on most of the evaluated traits, including the number of pods per plant, number of seeds per pod, 1000-seed weight, pod length, plant height, height of the first branch above the soil surface, and biological yield. Furthermore, the interaction between cultivar and humic acid treatment was significant (p < 0.01) for some of the studied traits such as pod dry weight, biological yield, seed yield, and harvest index. The highest biological yield (3.2 t.ha⁻¹) was recorded in the Malek cultivar (secondary landrace) treated with 50 mg.L⁻¹ humic acid. In contrast, the highest seed yield (2.4 t.ha⁻¹) was obtained from the Omrani cultivar (breeding cultivar) treated with 100 mg.L⁻¹ humic acid. Analysis of the main effects also indicated that the Omrani cultivar outperformed the other cultivars in terms of yield components. In addition, foliar application of 100 mg.L⁻¹ humic acid increased leaf nitrogen content, 1000-seed weight, and the number of branches per plant. Overall, humic acid application exerted different effects on the evaluated mung bean cultivars, particularly with respect to the number of branches per plant, 1000-seed weight, and other traits probably through improving soil structure and its chelating properties, thereby enhancing nitrogen and phosphorus uptake.

Conclusions
The results demonstrated that genetic differences among mung bean cultivars significantly influenced growth, yield, and most of the measured traits. The response to humic acid was also cultivar-dependent, with significant improvements observed in several quantitative traits. Among the evaluated cultivars, the breeding cultivar (Omrani) showed superior performance in seed yield, 1000-seed weight, and plant height. Overall, the combined use of an appropriate cultivar and the optimum humic acid concentration enhanced plant growth and productivity. Therefore, foliar application of 100 mg.L⁻¹ humic acid is recommended for the Omrani cultivar to maximize yield, whereas 50 mg.L⁻¹ is more suitable for the local landraces.

Acknowledgements
The authors would like to express their sincere gratitude to Lorestan University for its financial support and provision of laboratory facilities for conducting this research as part of the requirements for the completion of the Master’s thesis.

کلیدواژه‌ها English

Landrace
Leaf nitrogen percentage
Organic fertilizers
Plant nutrition

Authors retain the copyright. This is an open access article distributed under Creative Commons Attribution 4.0 International License (CC BY 4.0)

Abdollahi, A., Hamzehei, J., Alivardi, A., & Nemati, A. (2024). Effect of humic acid on crop production and land use efficiency in intercropping of wheat and lentils under rainfed conditions. Crop Production, 17(3), 43-64. (In Persian). https://doi.org/10.22069/ejcp.2024.22269.2621
Abead, H. M., Hammadi, H. J., & Salama, M. A. (2018). Effect of humic acid foliar in the growth, yield and quality of several genotypes four of (Vicia faba L.). Anbar Journal of Agricultural Sciences. 16, 52-61.
Al-Zubaidi, N. A. J., & Al-Shammari, A. F. A. (2023). The effect of biofertilization and organic fertilization and the interaction between them on the yield characteristics and components of the mung bean plant (Vigna radiata L.). Journal of Global Innovations in Agricultural Sciences, 11, 397-402. https://doi.org/10.22194/JGIAS/11.1099
Amerian, M., Nakh Zari Moghaddam, A., Biabani, A., & Mollashahi, M. (2021). Investigation of morphological traits, yield and yield components of mung bean under nitrogen and megafol fertilizer. Crop Production, 14(1), 185-198. (In Persian). https://doi.org/10.22069/EJCP.2021.18776.2397
Azimbakloo, N., Modarres-Sanavy, S. A. M., & Heidarzadeh, A. (2026). Effects of humic acid and amino acid foliar application on biochemical traits, and grain weight of mung bean (Vigna radiata L.) under water deficit stress conditions. Iranian Journal of Field Crop Science. In Press. (In Persian). https://doi.org/10.22059/ijfcs.2026.406081.655169
Dabalo, B., Afeta, T., Shumi, D., & Neguse, R. (2024). Adaptability study of improved mung bean (Vigna radiata) varieties in moisture stress areas of Guji zone, Southern Ethiopia. Journal of Plant Sciences, 12(1), 16-20. https://doi.org/10.11648/j.jps.20241201.13
Daneshvar Hakimi Maibodi, N., Kafi, M., Nikbakht, A., & Rejali, F. (2015). Effect of foliar applications of humic acid on growth, visual quality, nutrients content and root parameters of perennial ryegrass (Lolium perenne L.). Journal of Plant Nutrition38(2), 224-236. https://doi.org/10.1080/01904167.2014.939759
Skandarnejad, S., Gholipoor, M., & Makarian, M. (2017). Study of effect of different water shortage levels on biochemical traits and yield of mung bean (Vigna radiate L.). Environmental Stresses in Crop Sciences, 10(2), 193-201. (In Persian). https://doi.org/10.22077/escs.1396.576
Fatemi Devin, R., Hosseini, S., Hosain Moghadam, B., & Motesharezadeh, B. (2021). Effect of organic and bio-fertilizers and additive and replacement intercropping systems on corn (Zea maize L.) and bean (Phaseolus vulgaris L.) yields. Iranian Journal of Field Crop Science, 51(4), 133-145. (In Persian). https://doi.org/10.22059/ijfcs.2020.286433.654634
Fazeli, S. B., Rahnama, A., & Hassibi, P. (2022). Effect of waterlogging stress on yield and yield components and photosynthetic characteristics of two mung bean cultivars in Ahvaz conditions. Plant Productions, 45(1), 95-108. https://doi.org/10.22055/ppd.2020.30538.1805
Haghshenas, A., Azizi, K., Bakhtiari, N., & Heidari, S. (2025). Evaluation of photosynthetic pigments, yield and yield components of mung bean (Vigna radiata L) in response to humic acid application and irrigation interruption. Crop Science Research in Arid Regions, 7(1), 217-233. (In Persian). https://doi.org/10.22034/csrar.2023.379755.1310.
Hosseini Nik, M. H., Shokoehfar, A., & Payandeh, K. )2022(. The effect of combining humic acid and potassium nanochelate fertilizer on yield, yield components and protein percentage of cowpea (Vigna unguiculata L.). Iranian Journal of Pulses Research, 13(2), 50-61. (In Persian). https://doi.org/10.22067/ijpr.v13i2.2202-1022
Huang, Z., Li, Y., Fan, M., Qian, H., & Wang, L. (2024). Recent advances in mung bean protein: From structure, function to application. International Journal of Biological Macromolecules, 273(2), 133210. https://doi.org/10.1016/j.ijbiomac.2024.133210
Huzien, G. A. M., Ibrahim, M. M., Khalifa, Y. A. M., & Mahdy, A. Y. (2022). Response of two soybean (Glycine max L.) cultivars to different levels of humic acid and mineral fertilization. Archives of Agriculture Sciences Journal, 5(3), 1-12. https://doi.org/10.21608/aasj.2022.266402.
Kahraman, A. (2017). Effect of humic acid doses on yield and quality parameters of cowpea [Vigna unguiculata (L.) Walp] cultivars. Legume Research-An International Journal, 40(1), 155-159. https://doi.org/10.18805/lr.v0iOF.3763
Kumari, S., Kumar, R., Chouhan, S., & Chaudhary, P. L. (2023). Influence of various organic amendments on growth and yield attributes of mung bean (Vigna radiata L.). International Journal of Plant & Soil Science, 35(12), 124-130. https://doi.org/10.9734/IJPSS/2023/v35i122975
Naeemi, M., Avarseji, Z., & Ahangar, L. (2025). Investigating the effect of organic biostimulants and different levels of chemical fertilizers on the growth, yield components and yield of faba bean (Vicia faba L.). Iranian Journal of Pulses Research, 16(2), 215-226. (In Persian). https://doi.org/10.22067/ijpr.2025.91464.1102
Rezapourian Ghahfarkhi, F., Galeshi, S., Zeinali, E., & Torabi, B. (2020). The effect of inoculation with growth-promoting bacteria, mycorrhizae and phosphorus levels on yield and yield components of mung bean (Vigna radiata L.). Iranian Journal of Pulses Research, 11(1), 134-151. (In Persian). https://doi.org/10.22067/ijpr.v11i1.73888
Sabra, D. M., Badr, E. A., Magda, H. M., & Amin, G. A. (2026). Foliar application of humic acid improves growth, yield, and nutritional quality of mung bean (Vigna radiata L.) genotypes under newly reclaimed soil conditions. Scientific Reports, 16(1), 12726. https://doi.org/10.1038/s41598-026-47151-z
Sadeghi Kochsafhani, P., Mirkalaei, S. A. M., Moballeghi, M., Samdeliri, M., & Akbarpour, M. (2024). The effect of biological and organic fertilizers on the quantitative and qualitative production of mung bean under water deficit stress. Iranian Journal of Soil and Water Research, 55(8), 1345-1358. (In Persian). https://doi.org/10.22059/ijswr.2024.373798.669678
Suhag, M. (2016). Potential of biofertilizers to replace chemical fertilizers. International Advanced Research Journal in Science, Engineering and Technology, 3(5), 163-167.
Vavilapalli, S., Celine, V. A., Duggi, S., Padakipatil, S., & Magadum, S. (2013). Genetic variability and heritability studies in bush cowpea (Vigna unguiculata (L.) Walp.). Legume Genomics and Genetics, 4(4), 27-31.
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  • تاریخ دریافت 26 خرداد 1405
  • تاریخ بازنگری 27 مرداد 1405
  • تاریخ پذیرش 01 شهریور 1405
  • تاریخ اولین انتشار 01 شهریور 1405