Research Articles
Vol. 13 No. sp5 (2026): Recent Advances in Agriculture
Evaluation of vesicular-arbuscular mycorrhiza and organic amendments for improving growth and yield of chilli (Capsicum annuum L. cv. Priyanka) in compacted clay soil
SRM College of Agricultural Sciences, SRM Institute of Science and Technology, Baburayanpettai, Chengalpattu 603 201, Tamil Nadu, India
SRM College of Agricultural Sciences, SRM Institute of Science and Technology, Baburayanpettai, Chengalpattu 603 201, Tamil Nadu, India
SRM College of Agricultural Sciences, SRM Institute of Science and Technology, Baburayanpettai, Chengalpattu 603 201, Tamil Nadu, India
Abstract
Clay soil with high bulk density is a major physical constraint that limits root growth, water infiltration, aeration and nutrient uptake, ultimately reducing crop productivity in the study area. This study evaluated the effectiveness of vermicompost, paddy husk, cocopeat and arbuscular mycorrhizal fungi (AMF) in reducing the bulk density of clay soil and improving soil physical properties under chilli (Capsicum annuum L.) cultivation. A pot experiment was conducted using different treatment combinations of these organic amendments and AMF. After the cropping period, soil bulk density, porosity, moisture retention, root colonisation and plant growth parameters were assessed. The combined application of vermicompost, cocopeat, paddy husk and AMF significantly reduced soil bulk density compared with the untreated control and increased soil porosity, water-holding capacity and root development. Enhanced AMF colonisation further improved nutrient uptake and promoted plant growth through better soil aggregation and root-soil interactions. Among the treatments, the integrated application of all three organic amendments with AMF produced the greatest improvement in soil physical properties and chilli growth. The results demonstrate that the synergistic use of vermicompost, paddy husk and mycorrhiza offer an effective and sustainable strategy for alleviating soil compaction, restoring soil health and enhancing crop productivity. This integrated approach has considerable potential for improving the management of compacted agricultural soils while reducing dependence on synthetic soil conditioners.
References
- 1. Hillel D. Introduction to environmental soil physics. Elsevier; 2003.
- 2. Umair M, Hassan MI, Zia H, Maqsood F, Khalil MH, Ghafoor I, et al. Soil physical properties and their influence on plant growth. In: Soils and sustainable agriculture: interplay of soil, plant, water and environmental systems for sustainable agriculture. Cham: Springer Nature Switzerland; 2025. p. 79–131.
- 3. Lal R. Enhancing crop yields in the developing countries through restoration of the soil organic carbon pool in agricultural lands. Land Degrad Dev. 2006;17(2):197–209. https://doi.org/10.1002/ldr.696.
- 4. Diacono M, Montemurro F. Long-term effects of organic amendments on soil fertility. In: Sustainable agriculture. Volume 2. Dordrecht: Springer Netherlands; 2011. p. 761–86. https://doi.org/10.1007/978-94-007-0394-0_34.
- 5. Christyraj JD, Mathews MG, Subramaniam R, Yesudhason BV, Chelladurai KS, Christyraj JR. Importance of vermicomposting and vermiremediation technology in the current era. In: Advances in bioremediation and phytoremediation for sustainable soil management: principles, monitoring and remediation. Cham: Springer International Publishing; 2022. p. 313–26. https://doi.org/10.1007/978-3-030-89984-4_20
- 6. Du C, Sun H, Zhao Y, Han Q, Song Z, Chen H, et al. Study on the improvement of soil physicochemical properties in solar greenhouses by carbonized rice hull and fermented rice hull and their effects on the growth and development of colored pepper. Horticulturae. 2026;12(3):324. https://doi.org/10.3390/horticulturae12030324.
- 7. Abad M, Noguera P, Bures S. National inventory of organic wastes for use as growing media for ornamental potted plant production: case study in Spain. Bioresour Technol. 2001;77(2):197–200. https://doi.org/10.1016/S0960-8524(00)00152-8
- 8. Rillig MC, Mummey DL. Mycorrhizas and soil structure. New Phytol. 2006;171(1):41–53. https://doi.org/10.1111/j.1469-8137.2006.01750.x.
- 9. Latifah O, Ahmed OH, Susilawati K, Majid NM. Compost maturity and nitrogen availability by co-composting of paddy husk and chicken manure amended with clinoptilolite zeolite. Waste Manag Res. 2015;33(4):322–31. https://doi.org/10.1177/0734242X15576771.
- 10. Islam SS, Anik RB, Hasan AK, Karim R, Khomphet T. Impacts of vermicompost and farmyard manure as organic fertilizer with biochar amendment on soil quality, growth and yield of sunflower. Indian J Agric Res. 2024;58(4). https://doi.org/10.18805/IJARe.AF-848.
- 11. Kranz CN, McLaughlin RA, Johnson A, Miller G, Heitman JL. The effects of compost incorporation on soil physical properties in urban soils: a concise review. J Environ Manage. 2020;261:110209. https://doi.org/10.1016/j.jenvman.2020.110209.
- 12. Grossman RB, Reinsch TG. Bulk density and linear extensibility. In: Methods of soil analysis: Part 4 physical methods. Madison: Soil Science Society of America; 2002. p. 201–28. https://doi.org/10.2136/sssabookser5.4.c9.
- 13. Philips JM, Hayman DS. Improved procedure for cleaning and staining parasitic and vesicular-arbuscular mycorrhizal fungi for rapid assessment of infection. Trans Br Mycol Soc. 1970;55:158–61.
- 14. Wahab A, Muhammad M, Munir A, Abdi G, Zaman W, Ayaz A, et al. Role of arbuscular mycorrhizal fungi in regulating growth, enhancing productivity and potentially influencing ecosystems under abiotic and biotic stresses. Plants. 2023;12(17):3102. https://doi.org/10.3390/plants12173102.
- 15. Sahu H, Kumar U, Mariappan S, Mishra AP, Kumar S. Impact of organic and inorganic farming on soil quality and crop productivity for agricultural fields: a comparative assessment. Environ Chall. 2024;15:100903. https://doi.org/10.1016/j.envc.2024.100903.
- 16. Narkhede HI, Deokar BK, Kardile DS, Handore AV, Surana AR. Cocopeat biofilters: a sustainable approach for water purification and nutrient management. Sep Purif Technol. 2025;353:128558. https://doi.org/10.1016/j.seppur.2024.128558.
- 17. Raju JT, Bhakar SR, Kothari M, Lakhawat SS, Joshi S, Mudgal VD. Influence of cocopeat and vermicompost on growth and yield of cucumber. Ecol Environ Conserv. 2023;29:189–95. https://doi.org/10.53550/EEC.2023.v29i01s.029.
- 18. Shakhidar MS, Akter N, Abdus SM. Effect of growing media on seed germination and seedling growth of chili (Capsicum annuum L.). SAARC J Agric. 2024;22(2):289–301. https://doi.org/10.3329/sja.v22i2.76665.
- 19. Sakr MA, Omar AE, Ene A, Hanfi MY. Effect of various proportions of rice husk powder on swelling soil from New Cairo City, Egypt. Appl Sci. 2022;12(3):1616. https://doi.org/10.3390/app12031616.
- 20. Yang Z, Luo Y, Chen H, Zhang Y, Wu S, Yang M, et al. Vermicompost addition improved soil aggregate stability, enzyme activity and soil available nutrients. J Soil Sci Plant Nutr. 2024;24(4):6760–74. https://doi.org/10.1007/s42729-024-02002-6.
- 21. Hermawan B, Muktamar Z, Setyowati N, Sujatmiko S. Changes in soil physical properties following applications of vermicompost superimposed with liquid organic fertilizer. J Trop Soils. 2024;29(2):107–13. https://doi.org/10.5400/jts.2024.v29i2.107-113.
- 22. Kumar A, Garhwal RS, Prakash R, Dhaliwal SS, Walia SS, Dubey SK, et al. Impact of crop residue recycling and chemical fertilizers on soil health and nutrients uptake under different cropping systems: a Scopus review. J Plant Nutr. 2026;49(1):125–52. https://doi.org/10.1080/01904167.2025.2527690.
- 23. Castellini M, Bondì C, Giglio L, Iovino M. Impact of vermicompost addition on water availability of differently textured soils. Heliyon. 2024;10(15):e35699. https://doi.org/10.1016/j.heliyon.2024.e35699.
- 24. Chaudhary A, Poudyal S, Kaundal A. Role of arbuscular mycorrhizal fungi in maintaining sustainable agroecosystems. Appl Microbiol. 2025;5(1):6. https://doi.org/10.3390/applmicrobiol5010006.
- 25. de Goede SP, Hannula SE, Jansen B, Morriën E. Fungal-mediated soil aggregation as a mechanism for carbon stabilization. ISME J. 2025;19(1):wraf074. https://doi.org/10.1093/ismejo/wraf074.
- 26. Riaz M, Azhar MT, Kamran M, Aziz O, Wang X. Role of arbuscular mycorrhizal fungi in plant phosphorus acquisition for sustainable agriculture. In: Sustainable agriculture reviews 58: phosphorus use efficiency for sustainable agriculture. Cham: Springer International Publishing; 2022. p. 155–76. https://doi.org/10.1007/978-3-031-16155-1
- 27. Mikiciuk G, Sas-Paszt L, Mikiciuk M, Derkowska E, Trzciński P, Głuszek S, et al. Mycorrhizal frequency, physiological parameters and yield of strawberry plants inoculated with endomycorrhizal fungi and rhizosphere bacteria. Mycorrhiza. 2019;29(5):489–501. https://doi.org/10.1007/s00572-019-00905-2
- 28. Liao H, Zhao H, Chen Z, Peng S. Drought response of trees: differences across mycorrhizal type at the global scale. Oikos. 2025;2025(10):e11257. https://doi.org/10.1002/oik.11257
- 29. Herawati A, Syamsiyah J, Mujiyo M, Rochmadtulloh M, Susila AA, Romadhon MR. Mycorrhizae and a soil ameliorant on improving the characteristics of sandy soil. Sains Tanah J Soil Sci Agroclimatol. 2021;18(1):73–80. https://doi.org/10.20961/stjssa.v18i1.43697
- 30. Sangothari A, Radhamani S, Janaki P, Ravichandran V, Gnanachitra M, Thavaprakaash N. Evaluation of soil-applied arbuscular mycorrhiza along with foliar nutrition of nitrogen, iron and zinc on mycorrhizal colonization, physiological parameters, growth and yield of rice under aerobic condition. Indian J Agric Res. 2023;57(5):595–603.
- 31. Wangiyana W, Jaya IK, Suheri H. Application of mycorrhiza-based biofertilizer to increase yields of several varieties of small chili intercropped with peanut or shallot. IOP Conf Ser Earth Environ Sci. 2021;648(1):012178. https://doi.org/10.1088/1755-1315/648/1/012178
- 32. Ortas I. Under field conditions, mycorrhizal inoculum effectiveness depends on plant species and phosphorus nutrition. J Plant Nutr. 2019;42(18):2349–62. https://doi.org/10.1080/01904167.2019.1659336
- 33. Komeil DA, Draz IS, Badry HH. Silicon soil amendment and arbuscular mycorrhizae inoculation enhance eggplant defence against Rhizoctonia solani by promoting growth and mitigating root rot stress. Curr Microbiol. 2025;82(10):449. https://doi.org/10.1007/s00284-025-04428-2
- 34. Khoirunnisak A, Jannah H, Rayes ML, Prijono S. Organic matter application on subsoil improves soil organic matter, soil aggregate stability and porosity in coffee plantations. IOP Conf Ser Earth Environ Sci. 2025;1466(1):012004. https://doi.org/10.1088/1755-1315/1466/1/012004.
- 35. Liang SM, Zheng FL, Abd_Allah EF, Muthuramalingam P, Wu QS, Hashem A. Spatial changes of arbuscular mycorrhizal fungi in peach and their correlation with soil properties. Saudi J Biol Sci. 2021;28(11):6495–9. https://doi.org/10.1016/j.sjbs.2021.07.024
Downloads
Download data is not yet available.