Ancient natural farming: Way forward to sustainability in modern agricultural practices
DOI:
https://doi.org/10.26832/24566632.2025.1003020Keywords:
Farming components, Modern farming, Panchagavya, Vedic Natural farmingAbstract
The modern agricultural system is directly associated to the food security to provide food materials to all on the planet earth. In this, the precision agriculture, hydroponics, aquaponics and vertical farming are most prevalent methods of modern agricultural system. It is directly dependent on the use of chemical fertilizers, pesticides, high yield varieties (HYVs), and modern machineries. The excess use of chemical fertilizers and pesticides contaminated and deteriorated the soil and cultivated agricultural crops. Thus, its consequences are soil, water, air pollution, reduction in the soil fertility and loss in the biological diversity, health issues due to the consumption of contaminated food items. The essential components for the sustainability in the agriculture are, fertile land, nutrients input, pest and pathogen repellents, irrigation water sources etc. Therefore, in most of the countries the farmers are looking for the natural farming (Rishi Kheti or Zero budget farming) and organic farming in place of modern agricultural system. The natural farming and organic farming is mostly dependent on the locally available resources such as panchagavya (cow milk, yogurt and ghee, cow manure, cow urine), plans based formulations, green manuring, crop rotation, mulching etc., that are beneficial for maintaining of soil health, water conservation, climate resilience and the produce are also free from contaminants and thus, beneficial for the human consumption and health. In this paper, we have discussed the essential components of ancient natural farming, organic farming and modern farming and have tried to made a comparative analysis of these farming systems.
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Aithal, P. K. (2022). Vedic Literature and Agriculture. National Journal of Hindi & Sanskrit Research, 1(45), 130-133. https://sanskritarticle.com/wp-content/uploads/36-45-Dr.Prasanna.Kumar_.pdf
Al-Huqail, A.A., Kumar, P., Eid, E.M., Adelodun, B., Abou Fayssal, S., Singh, J., Arya, A.K., Goala, M., Kumar, V., & Širić, I. (2022). Risk assessment of heavy metals contamination in soil and two rice (Oryza sativa L.) varieties irrigated with paper mill effluent. Agriculture, 12, 1864. https://doi.org/10.3390/agriculture12111864
Banerjee, D.S., Balkrishna, A., Arya, V., Ghosh, S., & Sing, S.K., (2022). Reuse of sewage sludge as organic agricultural products: an efficient technology-based initiative. Authorea. https://doi.org/10.22541/au.164899210.06660033/v1
Buta, M., Hubeny, J., Zieli´nski, W., Harnisz, M., & Korzeniewska, E. (2021). Sewage sludge in agriculture – the effects of selected chemical pollutants and emerging genetic resistance determinants on the quality of soil and crops – a review. Ecotoxicology and Environmental Safety, 214, 112070. https://doi.org/10.1016/j.ecoenv.2021.112070
Chopra, A. K., Srivastava, S., Kumar, V., & Pathak, C. (2013). Agro-potentiality of distillery effluent on soil and agronomical characteristics of Abelmoschus esculentus L. (Okra). Environmental Monitoring and Assessment, 185, 6635-6644. https://doi.org/10.1007/s10661-012-3052-8
Chopra, A. K., Payum, T., Srivastava, S., & Kumar, V. (2017). Effects of integrated nutrient management on agronomical attributes of tomato (Lycopersicon esculentum L.) under field conditions. Archives of Agriculture and Environmental Science, 2(2), 86-91. https://journals.aesacademy.org/index.php/aaes/article/view/02-02-05
Economic Survey (2023-24). Agriculture sector has registered an average annual growth rate of 4.18 per cent over the last five years. https://pib.gov.in/PressReleasePage.aspx?PRID=2034943#:~:text=Economic%20Survey%20says%20that%20the,country's%20GDP%20at%20current%20prices
Gamage, A., Gangahagedara, R., Gamage, J., Jayasinghe, N., Kodikara, N., Suraweera, P., & Merah, O. (2023). Role of organic farming for achieving sustainability in agriculture. Farming System, 1(1), 100005. https://doi.org/10.1016/j.farsys.2023.100005
Iberdrola (2025). Organic farming: Organic farming, what is it and why is it good for the planet? Accessed from: https://www.iberdrola.com/sustainability/organic-farming
IndoFarm, (2022). Four popular modern farming methods. Accessed from: https://www.indofarm.in/4-popular-modern-farming-methods/
Jones, M. B. (2017). Agriculture and Religion in Ancient India. PhD dissertation of The University of Texas at Austin. https://repositories.lib.utexas.edu/server/api/core/bitstreams/76a148f6-c432-4128-953f-0596d4856d01/content
Kumar, V., & Chopra, A. K. (2012). Effects of paper mill effluent irrigation on agronomical characteristics of Vigna radiata (L.) in two different seasons. Communications in Soil Science and Plant Analysis, 43(16), 2142-2166. https://doi.org/10.1080/00103624.2012.697236
Kumar, V., & Chopra, A.K. (2013). Reduction of weeds and improvement of soil quality and yield of wheat by tillage in Northern Great Plains of Ganga River in India. International Journal of Agricultural Science Research, 2(8): 249-257.
Kumar, V. (2015). A review on efficacy of biopesticides to control the agricultural insect’s pest. International Journal of Agricultural Science Research, 4(9), 168-179. https://academeresearchjournals.org/print.php?id=561182ea5512a
Kumar, V., & A. K. Chopra (2016). Influence of summer tillage on soil characteristics, weeds diversity and crop yield of certain vegetable crops grown in Tarai region of Ganga River, India. International Journal of Agricultural Science Research, 5(3), 040-050. https://www.academeresearchjournals.org/download.php?id=383525713724979670.pdf&type=application/pdf&op=1=
Kumar, V. (2016). Use of integrated nutrient management to enhance soil fertility and crop yield of hybrid cultivar of brinjal (Solanum melongena L.) under field conditions. Advances in Plants & Agriculture Research, 4(2), 00130. http://medcraveonline.com/APAR/APAR-04-00130.php
Kumar, V., Chopra, A.K., & Kumar, A. (2017). A review on sewage sludge (Biosolids) a resource for sustainable agriculture. Archives of Agriculture and Environmental Science, 2(4), 340-347. https://www.aesacademy.org/journal/volume2/issue4/AAES-02-04-017.pdf
Kumar, V., & Kumar, P. (2019). Pesticides in Agriculture and Environment: Impacts on Human Health. In: Contaminants in Agriculture and Environment: Health Risks and Remediation, Volume 1, Kumar, V., Kumar, R., Singh, J. and Kumar, P. (eds.), Agro Environ Media, Haridwar, India, pp. 76-95, https://doi.org/10.26832/AESA-2019-CAE-0160- 07
NITI Ayog (2019-20). Natural Farming. https://naturalfarming.niti.gov.in/
NMNFMKP (2019) Natural Farming: A Sustainable Way of Farming! National Mission On Natural Farming Management and Knowledge Portal. https://naturalfarming.dac.gov.in/
Parmar, D., Verma, P., Sharma, M.K. and Solanki, A. (2023). Vedic agriculture. The Pharma Innovation Journal, 12(5), 4254-4258. https://www.thepharmajournal.com/archives/2023/vol12issue5/PartAX/12-5-561-638.pdf
Raju, G.S.K., Nawabpet, P., & Kumar, A. (2022). Panchagavya as soil conditioner: Ancient traditional knowledge for sustainable agriculture. Journal of Experimental Agriculture International, 44(11),181-86. https://doi.org/10.9734/jeai/2022/v44i112065
Rani, S., Shweta, Gandhi, R., Rana, A., & Kumar, V. (2024). A review on co-composting of biosolids and its use in crops cultivation for agriculture sustainability. Archives of Agriculture and Environmental Science, 9(4), 840-846. https://doi.org/10.26832/24566632.2024.0904029
Rigby, H., Clarke, B. O., Pritchard, D. L., Meehan, B., Beshah, F., Smith, S. R., & Porter, N. A. (2016). A critical review of nitrogen mineralization in biosolids-amended soil, the associated fertilizer value for crop production and potential for emissions to the environment. Science of the Total Environment, 541, 1310–1338. http://dx.doi.org/10.1016/j.scitotenv.2015.08.089
Roy, M. (2009). Agriculture in the Vedic period. Indian Journal of History of Science, 44(4), 497-520. https://cahc.jainuniversity.ac.in/assets/ijhs/Vol44_4_2_MRoy.pdf
Širić, I., Eid, E. M., Taher, M. A., El-Morsy, M. H. E., Osman, H. E. M., Kumar, P., Adelodun, B., Abou Fayssal, S., Mioč, B., Andabaka, Ž., Goala, M., Kumari, S., Bachheti, A., Choi, K. S., & Kumar, V. (2022). Combined use of spent mushroom substrate biochar and PGPR improves growth, yield, and biochemical response of cauliflower (Brassica oleracea var. botrytis): A preliminary study on greenhouse cultivation. Horticulturae, 8, 830. https://doi.org/10.3390/horticulturae8090830
Širić, I., AL-Huqail, A. A., Kumar, P., Goala, M., Abou Fayssal, S., Adelodun, B., Ajibade, F. O., Alrumman, S. A., Alamri, S. A. M., Taher, M. A., Singh, J.., Kumar, V., & Eid, E.M. (2023). Sustainable management of sewage sludge using Dhaincha (Sesbania bispinosa (Jacq.) W. Wight) cultivation: Studies on heavy metal uptake and characterization of fibers. Agronomy, 13, 1066. https://doi.org/10.3390/agronomy13041066
Sharma, G. (2023). Awareness Module on Natural Farming for Krishi Sakhis: National Centre for Organic & Natural Farming, Ghaziabad, India. https://www.jaivikkheti.in/DMS/Awareness_Module_for_Krishi_Sakhis.pdf
Skowrońska, M., Bielińska, E. J., Szymański, K., Antonkiewicz, B. F. J., & Kołodziej, B. (2020). An integrated assessment of the long-term impact of municipal sewage sludge on the chemical and biological properties of soil. Catena, 189, 104484. https://doi.org/10.1016/j.catena.2020.104484
Srivastava, S., Chopra, A.K., Kumar, V., & Sehgal, D. (2015). Agro Fertigational response of sugar mill effluent and synthetic fertilizer (DAP) on the agronomy of crop Vigna unguiculata L. Walp in two seasons. Research Journal of Agricultural and Environmental Science, 2(3), 5-17. https://worldveg.tind.io/record/55029?ln=en
Srivastava, S., Chopra, A. K., Sharma, P., & Kumar, V. (2017). Amendment of sugar mill wastewater irrigation on soil biohydrological properties and yield of Vigna unguiculata L. Walp in two seasons. Communication in Soil Science and Plant Analysis, 48(5), 511-523. https://doi.org/10.1080/00103624.2016.1254788
Urbaniak, M., Wyrwicka, A., Tołoczko, W., Serwecińska, L., & Zieliński, M. (2017). The effect of sewage sludge application on soil properties and willow (Salix sp.) cultivation. Science of the Total Environment, 586, 66–75. http://dx.doi.org/10.1016/j.scitotenv.2017.02.012
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