**Executive Summary**
The ICAR–Indian Institute of Oilseeds Research (ICAR-IIOR) has developed a patented biopolymer-based Smart Seed Coating Technology to enhance crop productivity and climate resilience. Demonstrated in field trials as of June 2026, the technology delivers yield increases between 12% and 37% across various crops, including groundnut and soybean. ICAR-IIOR is actively promoting partnerships with public and private seed systems to facilitate large-scale dissemination and adoption of this technology.
**Key Points / Main Content**
**Technological Specifications**
* **Composition:** Utilizes a biodegradable biopolymeric multifunctional protective layer.
* **Delivery System:** Acts as a carrier for beneficial microorganisms, nutrients, micronutrients, crop protection agents, and plant growth-promoting compounds.
* **Mechanism:** Delivers inputs directly at the seed-soil interface to create a protective microenvironment.
**Performance and Benefits**
* **Crop Establishment:** Promotes rapid germination, vigorous seedling growth, and enhanced root development.
* **Resilience:** Improves tolerance against biotic and abiotic stresses, including drought, erratic rainfall, and temperature extremes.
* **Yield Improvements:** Recorded nearly 30% yield increases in Groundnut and Soybean trials in Telangana; multi-location trials across other crops (maize, chickpea, cotton, etc.) showed gains of 12–37%.
**Versatility and Strategic Alignment**
* **Crop Range:** Customizable for cereals, millets, pulses, oilseeds, fibre crops, fodder, vegetables, spices, and horticultural crops.
* **Rainfed Agriculture:** Specifically designed to reduce production risks in rainfed areas, which are highly vulnerable to climatic uncertainties.
* **National Priorities:** Aligns with goals for sustainable agriculture, food security, and enhanced resource-use efficiency.
**Impact Analysis**
**Farmers**
**Impact**
Farmers, particularly those in rainfed regions, benefit from improved seedling emergence, higher yields (up to 37%), and increased profitability. The technology reduces risks associated with delayed monsoons, soil degradation, and pests.
**Action Required**
Adopt quality-enhanced "Smart Seeds" through available distribution networks to improve farm productivity and resilience.
**Public and Private Seed Systems (National Seed Corporation, State Corporations, Private Companies)**
**Impact**
These entities are identified as pivotal partners in the seed production and distribution value chain. The technology offers an opportunity to upgrade conventional seeds into high-value, climate-resilient products.
**Action Required**
Collaborate with ICAR-IIOR to integrate smart seed technologies into existing production, processing, and distribution networks.
**Farmer Producer Organizations (FPOs) and Seed Entrepreneurs**
**Impact**
These groups serve as essential links for large-scale dissemination, enabling the technology to reach farmers at scale.
**Action Required**
Participate in seed hubs and custom seed treatment centers to facilitate the local adoption and availability of treated seeds.
**ICAR-IIOR and Researchers**
**Impact**
Responsible for the ongoing advancement of next-generation seed enhancement technologies and environmentally sustainable formulations.
**Action Required**
Continue research into beneficial microbes and nutrient delivery systems to further strengthen India’s seed systems.
Key Entities Referenced
ICAR–Indian Institute of Oilseeds Research (ICAR-IIOR): The primary research institute under the Indian Council of Agricultural Research that developed and patented the biopolymer-based Smart Seed Coating Technology.
Smart Seed Coating Technology: An innovative, biopolymer-based seed enhancement system designed to improve crop establishment, yield, and climate resilience across various agricultural crops.
AICRP-Seed: The All India Coordinated Research Project on Seed, which conducted multi-location trials across India to validate the productivity gains of the technology.
Ministry of Agriculture & Farmers Welfare: The central government ministry overseeing the development and dissemination of these climate-resilient agricultural innovations.
National Seed Corporation: A key public sector body identified for collaboration to facilitate the large-scale dissemination and adoption of the smart seed technologies.
Ministry of Agriculture & Farmers Welfare
ICAR-IIOR's Smart Seed Coating Technology
Strengthens Climate-Resilient Agriculture
through Enhanced Seed Quality and Crop
Establishment
Smart Seed Technology Delivers Up to 30% Higher Yields in
Groundnut and Soybean
Biopolymer-Based Smart Seeds to Strengthen Rainfed
Agriculture and Improve Farmers’ Incomes
ICAR-IIOR Promotes Partnerships with Public and Private
Seed Systems for Large-Scale Adoption
प्रव तथ: 18 JUN 2026 1:25PM by PIB Delhi
In a significant step towards strengthening climate-resilient agriculture and improving farm productivity,
ICAR–Indian Institute of Oilseeds Research (ICAR-IIOR), Hyderabad, has developed and demonstrated
an innovative biopolymer-based Smart Seed Coating Technology designed to enhance seed quality, crop
establishment, and resilience against biotic and abiotic stresses across a wide range of agricultural crops.
As agriculture faces increasing challenges from climate change, erratic rainfall, drought, temperature
extremes, soil degradation, emerging pests and diseases, and declining resource-use efficiency, ensuring
superior seed performance has become more critical than ever. Seed is the primary carrier of agricultural
technology and serves as the foundation of crop productivity. Even under optimal management conditions,
poor seed establishment can significantly limit yield realization. Strengthening seed performance during
the early stages of crop growth therefore offers one of the most cost-effective and scalable approaches to
improving agricultural productivity.
The Smart Seed Coating Technology (Indian Patent) developed by ICAR-IIOR utilizes biodegradable
biopolymeric materials to create a multifunctional protective layer around seeds. The coating acts as a
carrier system for beneficial microorganisms, nutrients, micronutrients, crop protection agents, and plant
growth-promoting compounds, delivering them directly at the seed-soil interface. This protective
microenvironment promotes rapid germination, vigorous seedling growth, enhanced root development,
and improved tolerance to environmental stresses during the critical crop establishment phase.
Field demonstrations conducted under farmer field conditions have shown substantial improvements in
crop establishment, plant vigor, and productivity. In Groundnut and Soybean, demonstrations conducted in
Telangana recorded yield improvements of nearly 30 percent compared to conventional farmer practices,
highlighting the potential of the technology to enhance productivity and profitability. Similar seedenhancement approaches have demonstrated positive impacts across multiple crops under diverse agro-
climatic conditions. Multi-location AICRP-Seed trials across soybean, maize, groundnut, chickpea, cotton,
mustard, and pigeon pea demonstrated consistent improvements in seedling vigour, crop establishment,
and yield, with productivity gains ranging from 12–37% over untreated controls, highlighting the
potential of biopolymer-based multilayer seed treatments as a scalable Smart Seed technology for diverse
cropping systems.
The technology is particularly relevant for rainfed agriculture, which accounts for a major share of India's
cultivated area and is highly vulnerable to climatic uncertainties. Delayed monsoons, intermittent
droughts, moisture stress, poor soil conditions, and pest and disease pressures frequently affect seedling
emergence and crop establishment, ultimately reducing yields. By improving seed performance and
protecting emerging seedlings during the most vulnerable stages of growth, smart seed technologies can
significantly enhance crop resilience and reduce production risks.
Unlike conventional seed treatments that serve a single purpose, the ICAR-IIOR platform functions as a
comprehensive seed enhancement system capable of integrating multiple beneficial inputs into a single
application. The technology can be customized for cereals, millets, pulses, oilseeds, fibre crops, fodder
crops, vegetables, spices, and horticultural crops, making it a versatile solution for diverse farming
systems across the country.
The innovation aligns closely with national priorities on sustainable agriculture, climate resilience,
improved seed systems, and enhanced resource-use efficiency. Wider adoption of advanced seed
enhancement technologies can contribute significantly to increasing agricultural productivity, reducing
input losses, improving nutrient and biological use efficiency, and supporting the country's efforts towards
food, nutritional, and economic security.
ICAR-IIOR scientists emphasized that future agricultural growth will increasingly depend on technologies
that improve the efficiency and effectiveness of every input used by farmers. Smart Seeds represent an
important step in this direction by delivering protection, nutrition, and biological support precisely where
they are needed, at the earliest stage of crop growth. Such technologies can help farmers achieve better
crop establishment, improved stress tolerance, higher yields, and greater profitability while minimizing
environmental impacts.
To maximize the benefits of this innovation, ICAR-IIOR is promoting partnerships with public and private
seed systems for large-scale dissemination and adoption. State Seed Development Corporations, National
Seed Corporation, Cooperative seed federations, Farmer Producer Organizations (FPOs), seed processing
units, seed hubs, custom seed treatment centres, seed entrepreneurs, and private seed companies can play a
pivotal role in integrating smart seed technologies into seed production and distribution networks. Such
collaborations will help ensure that quality-enhanced seeds reach farmers at scale and contribute to
sustainable agricultural growth.
ICAR-IIOR continues to advance research on next-generation seed enhancement technologies involving
biopolymers, beneficial microbes, nutrient delivery systems, and environmentally sustainable formulations
aimed at transforming conventional seeds into climate-resilient Smart Seeds. The widespread adoption of
such technologies can strengthen India's seed systems, improve agricultural productivity, enhance
resilience to climate change, and ultimately contribute to improved livelihoods for millions of farmers
across the country.
****
RC/MS
(रलीज़ आईडी: 2274497) आगंतुक पटल : 973
इस वज्ञ को इन भाषाओ ंम पढ़: Urdu , ही , Bengali