U, Greeshma. and Thomas, Usha C and P, Shalini Pillai, and Gayathri, G. and M. M., Safeer, (2024) Fodder Grasses and Irrigation Strategies: A Pathway to Fodder Sustainability in India. International Journal of Environment and Climate Change, 14 (11). pp. 911-919. ISSN 2581-8627
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Abstract
Indian agriculture heavily depends on the livestock sector, which significantly influences the financial system. Fodder, derived from crop residues, cultivated feed, and grazing lands, is a cost-effective nutrient source essential for sustaining the dairy industry. However, India faces severe fodder shortages—63.5% for green fodder and 23.5% for dry residues—exacerbated by rising livestock populations and declining fodder cultivation areas. Low livestock productivity, driven by inadequate feeding and healthcare, compounds the challenge. To meet growing fodder demands, many Indian dairy farmers have turned to cultivating perennial grasses, such as hybrid Napier grass, which provides year-round fodder. Strategic irrigation practices can play a vital role in mitigating water use, improving water-use efficiency, and reducing costs. This article examines the current challenges in fodder production, emphasizing the importance of optimizing irrigation practices to enhance water use efficiency. It explores various irrigation methods, including drip and sprinkler systems, and discusses their impact on fodder crop productivity. The need for high-quality fodder seeds, improved management practices, and innovative irrigation scheduling techniques is highlighted as essential for bridging the gap between fodder demand and supply. Addressing these challenges is vital for improving livestock productivity, supporting small and marginal farmers, and ensuring food security in India.
Item Type: | Article |
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Subjects: | Open Digi Academic > Geological Science |
Depositing User: | Unnamed user with email support@opendigiacademic.com |
Date Deposited: | 02 Dec 2024 07:39 |
Last Modified: | 25 Mar 2025 06:01 |
URI: | http://papers.sendtopublish.com/id/eprint/1607 |