Application of Panchagavya, a Cow-based Liquid Formulation, as a Lever for Sustainable and Enhanced Vegetable Crop Production: A Review
Swagat Ranjan Behera, Riya Pandey, Krisanu Golui, Swapnashree Sahoo, Riya Jakhwal, Riti Pal
International Journal of Environment and Climate Change · pp. 214–232 · Published 18 May 2024
10.9734/ijecc/2024/v14i54183Abstract
Panchagavya, a fermented liquid bio-formulation derived from cow-based products such as dung, urine, milk, curd and ghee, has recently gained importance in agricultural practices due to its reported effectiveness in enhancing vegetable crop production. Its formulation involves a fermentation process that harnesses the diverse microbial communities present in cow-derived substances, resulting in a potent nutrient-rich solution that is believed to possess plant growth-promoting properties. One of the primary mechanisms underlying its efficacy lies in the diverse array of microorganisms present in the formulation. These microorganisms, including beneficial bacteria, fungi and actinomycetes, play crucial roles in nutrient cycling, disease suppression and soil conditioning. Additionally, Panchagavya contains plant growth-promoting substances such as hormones, enzymes, vitamins and amino acids, which contribute to enhanced nutrient uptake, root development and overall plant vigour. Furthermore, application of Panchagavya has been shown to improve soil health by enhancing microbial activity, increasing organic matter content and improving soil properties. These soil improvements not only benefit the current crop but also have long-term positive implications for soil fertility and sustainability. This multifaceted approach to crop management offers a holistic solution to enhance crop productivity while reducing reliance on synthetic inputs. This review aims to comprehensively analyse the literature on the effects of Panchagavya on vegetable crops, highlighting its mechanisms of action and potential benefits for increased vegetable crop production.
Cited by 9
Suganthy Mariappan, Sowmiya Arumugam, Janaki Ponnusamy · Next-Generation Strategies for Crop Improvement · 2025
Soumik Samanta, Sujit Kumar Bhunia, Kaushik Maity · Discover Plants · 2025
Rajeshree Patel, Vishal M. Makwana · Biointerface Research in Applied Chemistry · 2026
Nisha Choudhary, Vidhi Mochi, Margi Patel · BioNanoScience · 2025
Sneha Kagale, A. V. Narayan · Compost Science & Utilization · 2025
Samuthirapandi Muniasamy, Marissa Angelina, Ponnirul Ponmanickam · Luminescence · 2025
Showing 6 of 9 known citations — external sources report more than can currently be individually listed.
Related research
- Evaluation of the Symbiotic Efficiency of Rhizobium Strains Applied to Bituminaria bituminosa (L.) Stirton — shares topic coverage
- Identifying Sustainable Biomedical Solid Waste Management Practices in the Context of Limited Resources in Selected Healthcare Facilities in Douala Cameroon — shares topic coverage
- Beneficial Role of Soil Microbiome in Enhancing Crop Productivity, Insight from Recent Study — shares topic coverage
- Genetic Engineering in Insect Management: New Frontiers in Pest Control — shares topic coverage
- Functional Characterization and In vitro Efficacy of Chickpea Rhizobacteria against Collar Rot and Dry Root Rot — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
9
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.