FutureAgri-2027

Sessions & Tracks

Explore the scientific program across crop science and agricultural technologies.

Crop Science & Plant Biology

Sessions on crop physiology, plant development, ecology, productivity, adaptation, improvement strategies, and emerging crop science trends.

  • Crop Physiology

    Physiological processes affecting crop growth, stress response, and yield formation.

  • Plant Growth & Development

    Developmental biology of plants across growth stages and production systems.

  • Plant Ecology

    Plant interactions with environments, communities, and agroecosystems.

  • Crop Productivity

    Approaches to improving crop performance, yield stability, and resource-use efficiency.

  • Plant Adaptation Mechanisms

    Mechanisms that enable plants to adapt to biotic and abiotic stresses.

  • Crop Improvement Strategies

    Scientific and agronomic strategies for enhancing crop traits and performance.

  • Emerging Trends in Crop Science

    New concepts, methods, and discoveries shaping crop science research.

Plant Breeding & Genetics

Sessions covering breeding methods, molecular tools, genomics, quantitative genetics, hybrids, and germplasm resources.

  • Conventional Plant Breeding

    Classical breeding approaches for crop improvement and trait selection.

  • Molecular Breeding

    Use of molecular tools to accelerate and refine breeding programs.

  • Marker-Assisted Selection

    Selection strategies using genetic markers linked to desirable traits.

  • Crop Genomics

    Genome-scale research supporting trait discovery and crop improvement.

  • Quantitative Genetics

    Genetic analysis of complex traits influenced by multiple genes and environments.

  • Hybrid Crop Development

    Development and evaluation of hybrids for yield, quality, and resilience.

  • Germplasm Conservation

    Conservation, characterization, and use of plant genetic resources.

Plant Biotechnology

Sessions on biotechnology, gene editing, tissue culture, genetic engineering, genomics, and synthetic biology for crops.

  • Agricultural Biotechnology

    Biotechnological tools and applications for agricultural innovation.

  • Gene Editing Technologies

    Modern gene editing approaches for targeted crop trait improvement.

  • CRISPR Applications in Agriculture

    CRISPR-based tools and applications in crop research and production.

  • Plant Tissue Culture

    In vitro plant propagation, regeneration, and transformation methods.

  • Genetic Engineering

    Engineering plant genomes for improved traits and agricultural performance.

  • Functional Genomics

    Linking genes and gene networks to crop traits and biological functions.

  • Synthetic Biology in Crops

    Design and engineering of biological systems for crop innovation.

Precision Agriculture

Sessions focused on precision crop management, geospatial tools, variable-rate technologies, irrigation, nutrients, pest control, and decision support.

  • Precision Crop Management

    Site-specific management practices for optimizing crop inputs and outcomes.

  • Variable Rate Technology

    Technologies for applying inputs at variable rates based on field variability.

  • GPS & GIS Applications

    Geospatial tools for mapping, monitoring, and managing agricultural systems.

  • Smart Irrigation Systems

    Sensor-driven and automated irrigation approaches for efficient water use.

  • Precision Nutrient Management

    Data-based nutrient planning and application for improved efficiency.

  • Precision Pest Management

    Targeted pest monitoring and control using precision agriculture tools.

  • Digital Decision Support Systems

    Digital platforms that support timely and informed farm management decisions.

Smart Farming & Digital Agriculture

Sessions on AI, IoT, robotics, drones, sensors, data analytics, and cloud-based farm management.

  • Artificial Intelligence in Agriculture

    AI methods for crop monitoring, prediction, automation, and decision support.

  • Internet of Things (IoT) for Farming

    Connected devices and systems for real-time agricultural monitoring.

  • Agricultural Robotics

    Robotic systems for planting, monitoring, weeding, harvesting, and field operations.

  • Drone Applications

    Unmanned aerial systems for imaging, spraying, mapping, and crop assessment.

  • Smart Sensors

    Sensor technologies for soil, crop, water, weather, and livestock monitoring.

  • Big Data in Agriculture

    Large-scale agricultural data collection, integration, analytics, and insights.

  • Cloud-Based Farm Management

    Cloud platforms for planning, monitoring, and managing farm operations.

Soil Science & Fertility Management

Sessions exploring soil health, microbiology, nutrient cycling, fertility, carbon sequestration, soil management, and restoration.

  • Soil Health Assessment

    Methods and indicators for evaluating soil physical, chemical, and biological health.

  • Soil Microbiology

    Soil microbial communities and their roles in nutrient cycling and plant growth.

  • Nutrient Cycling

    Processes controlling nutrient availability, movement, and transformation in soils.

  • Soil Fertility Management

    Strategies for maintaining and improving soil fertility for sustainable production.

  • Carbon Sequestration

    Soil carbon storage practices and their climate and productivity benefits.

  • Sustainable Soil Management

    Management practices that protect soil resources and long-term productivity.

  • Soil Restoration Technologies

    Technologies and practices for restoring degraded or contaminated soils.

Water Management & Irrigation

Sessions on smart irrigation, water conservation, scheduling, harvesting, water quality, and climate-resilient irrigation systems.

  • Smart Irrigation Technologies

    Automated and sensor-based irrigation systems for efficient water delivery.

  • Water Conservation

    Practices and technologies to reduce agricultural water use and losses.

  • Precision Irrigation

    Site-specific irrigation planning and delivery based on crop and soil needs.

  • Irrigation Scheduling

    Timing and quantity decisions for efficient irrigation management.

  • Rainwater Harvesting

    Collection, storage, and use of rainwater for agricultural production.

  • Water Quality Management

    Monitoring and managing water quality for safe and productive agriculture.

  • Climate-Resilient Irrigation Systems

    Irrigation strategies designed for drought, variability, and climate change impacts.

Climate-Smart Agriculture

Sessions covering adaptation, resilient crops, carbon farming, agroecology, risk assessment, and green agricultural practices.

  • Climate Adaptation Strategies

    Approaches that help agricultural systems adapt to climate variability and change.

  • Climate-Resilient Crops

    Crop traits and systems designed for heat, drought, flood, and stress resilience.

  • Carbon Farming

    Agricultural practices that reduce emissions and enhance carbon storage.

  • Sustainable Farming Systems

    Integrated farming approaches that balance productivity, resilience, and sustainability.

  • Agroecology

    Ecological principles applied to sustainable agricultural systems and landscapes.

  • Environmental Risk Assessment

    Assessment of climate and environmental risks affecting agricultural production.

  • Green Agricultural Practices

    Low-impact practices that reduce environmental footprints and support sustainability.

Plant Pathology & Crop Protection

Sessions on plant diseases, diagnostics, disease management, immunity, biological control, emerging threats, and surveillance.

  • Plant Diseases

    Biology, epidemiology, and impacts of diseases affecting agricultural crops.

  • Disease Diagnostics

    Tools and methods for accurate detection and identification of plant diseases.

  • Integrated Disease Management

    Combining cultural, biological, chemical, and genetic methods for disease control.

  • Plant Immunity

    Plant defense mechanisms and resistance pathways against pathogens.

  • Biological Disease Control

    Use of beneficial organisms and natural products for disease suppression.

  • Emerging Crop Diseases

    New and re-emerging diseases affecting crop productivity and trade.

  • Disease Surveillance

    Monitoring systems for early detection, mapping, and response to disease outbreaks.

Entomology & Integrated Pest Management

Sessions focused on agricultural insects, beneficial species, biological control, IPM, pest monitoring, resistance, and sustainable protection.

  • Agricultural Entomology

    Insect biology, ecology, and impacts in agricultural production systems.

  • Beneficial Insects

    Pollinators, predators, parasitoids, and other insects that support agriculture.

  • Biological Pest Control

    Use of natural enemies and biological agents to manage pest populations.

  • Integrated Pest Management (IPM)

    Integrated strategies to manage pests economically and sustainably.

  • Precision Pest Monitoring

    Digital, sensor, and field-based methods for tracking pest populations.

  • Pest Resistance Management

    Strategies to delay and manage resistance to pesticides and control tools.

  • Sustainable Crop Protection

    Environmentally responsible methods for protecting crops from pest damage.

Horticulture & Protected Cultivation

Sessions on fruit, vegetables, floriculture, greenhouse systems, vertical farming, controlled environments, and urban horticulture.

  • Fruit Crop Science

    Production, physiology, management, and quality of fruit crops.

  • Vegetable Production

    Sustainable and intensive systems for vegetable crop production.

  • Floriculture

    Cultivation, breeding, and management of ornamental and flowering plants.

  • Greenhouse Technologies

    Greenhouse design, climate control, automation, and production systems.

  • Vertical Farming

    Layered indoor production systems using controlled environments and efficient inputs.

  • Controlled Environment Agriculture

    Technologies and practices for producing crops in controlled environments.

  • Urban Horticulture

    Horticultural systems for cities, peri-urban areas, and community production.

Agricultural Engineering & Mechanization

Sessions covering farm machinery, automation, robotics, autonomous equipment, smart harvesting, infrastructure, and mechanized production.

  • Farm Machinery

    Design, selection, operation, and optimization of agricultural machinery.

  • Agricultural Automation

    Automated systems for improving efficiency, precision, and labor productivity.

  • Robotics in Agriculture

    Robotic technologies for field, greenhouse, livestock, and post-harvest operations.

  • Autonomous Farm Equipment

    Self-guided equipment and vehicles for agricultural operations.

  • Smart Harvesting Systems

    Technologies for automated, selective, and efficient harvesting.

  • Farm Infrastructure

    Infrastructure planning and systems that support modern agricultural production.

  • Mechanized Crop Production

    Mechanization strategies across planting, crop care, harvesting, and handling.

Sustainable Agriculture & Organic Farming

Sessions on organic, regenerative, conservation, circular, and agroforestry systems, sustainable production, and biodiversity conservation.

  • Organic Agriculture

    Principles, practices, certification issues, and innovations in organic farming.

  • Regenerative Agriculture

    Farming approaches that restore soil health, biodiversity, and ecosystem function.

  • Conservation Agriculture

    Reduced disturbance, soil cover, and crop rotation practices for sustainability.

  • Circular Agriculture

    Resource-efficient systems that reduce waste and recycle nutrients and biomass.

  • Agroforestry

    Integration of trees with crops and livestock for resilient farming systems.

  • Sustainable Crop Production

    Production practices that balance yield, profitability, and environmental stewardship.

  • Biodiversity Conservation

    Protecting and enhancing biodiversity within agricultural landscapes.

Food Security & Agricultural Policy

Sessions on global food security, economics, supply chains, rural development, policy, trade, and sustainable development goals.

  • Global Food Security

    Strategies to improve food availability, access, utilization, and stability worldwide.

  • Agricultural Economics

    Economic analysis of agricultural production, markets, finance, and policy.

  • Food Supply Chains

    Systems and strategies for resilient, efficient, and transparent food supply chains.

  • Rural Development

    Policies and programs supporting rural livelihoods, infrastructure, and communities.

  • Agricultural Policy

    Policy frameworks influencing production, sustainability, markets, and innovation.

  • International Agricultural Trade

    Trade flows, regulations, competitiveness, and food system implications.

  • Sustainable Development Goals (SDGs)

    Agricultural contributions to the SDGs, including hunger, poverty, and climate action.

Seed Science & Technology

Sessions on seed biology, quality, production, storage, certification, health, and innovation.

  • Seed Biology

    Biological processes involved in seed development, dormancy, germination, and vigor.

  • Seed Quality

    Assessment and improvement of seed purity, viability, vigor, and performance.

  • Seed Production

    Systems and practices for producing high-quality seed at scale.

  • Seed Storage Technologies

    Storage methods that maintain seed viability and genetic integrity.

  • Seed Certification

    Standards and processes for certifying seed quality and identity.

  • Seed Health

    Detection and management of seed-borne pathogens and quality risks.

  • Seed Innovations

    Emerging technologies in seed treatment, enhancement, testing, and delivery.

Post-Harvest Technology & Food Processing

Sessions on post-harvest handling, storage, preservation, cold chains, value addition, quality assurance, and supply chains.

  • Post-Harvest Management

    Handling and management practices that reduce losses after harvest.

  • Storage Technologies

    Storage systems for preserving agricultural produce quality and shelf life.

  • Food Preservation

    Methods for extending food safety, quality, and usability after harvest.

  • Cold Chain Management

    Temperature-controlled logistics for perishable agricultural and food products.

  • Value Addition

    Processing and product development that increase market value and usability.

  • Food Quality Assurance

    Quality and safety systems for food processing and agricultural products.

  • Agricultural Supply Chains

    Post-harvest logistics, market linkages, traceability, and distribution systems.

Agricultural Microbiology & Biofertilizers

Sessions on microbial ecology, biofertilizers, plant growth-promoting microorganisms, biostimulants, rhizosphere biology, and microbial biotechnology.

  • Soil Microbial Ecology

    Microbial communities in soils and their roles in ecosystem and crop functions.

  • Biofertilizers

    Microbial products and formulations that improve nutrient availability and crop growth.

  • Plant Growth-Promoting Microorganisms

    Beneficial microbes that enhance plant growth, stress tolerance, and productivity.

  • Biostimulants

    Biological and natural inputs that stimulate plant growth and resilience.

  • Rhizosphere Biology

    Interactions among roots, microbes, and soil in the rhizosphere.

  • Sustainable Nutrient Management

    Microbial and integrated approaches for efficient and sustainable nutrient use.

  • Microbial Biotechnology

    Biotechnological use of microbes for agricultural productivity and sustainability.

Livestock Integration & Sustainable Farming Systems

Sessions on crop–livestock integration, sustainable animal agriculture, forage, mixed farming, circular bioeconomy, nutrition, and resource efficiency.

  • Integrated Crop–Livestock Systems

    Systems combining crops and livestock to improve productivity and resource cycling.

  • Sustainable Animal Agriculture

    Animal production approaches that support environmental and economic sustainability.

  • Forage Production

    Production and management of forage crops for livestock systems.

  • Mixed Farming Systems

    Diversified farming systems integrating crops, animals, and other enterprises.

  • Circular Bioeconomy

    Use of biomass, by-products, and waste streams in circular agricultural systems.

  • Livestock Nutrition

    Nutrition strategies supporting animal health, productivity, and efficiency.

  • Resource-Efficient Farming

    Integrated practices that optimize land, water, nutrients, energy, and feed resources.

Emerging Agricultural Technologies

Sessions focused on AI, machine learning, blockchain, remote sensing, satellite monitoring, digital platforms, and future AgriTech innovation.

  • Artificial Intelligence Applications

    Applied AI solutions for prediction, automation, monitoring, and farm decisions.

  • Machine Learning in Agriculture

    Machine learning models for agricultural data analysis and decision-making.

  • Blockchain for Agriculture

    Blockchain applications for traceability, transparency, finance, and supply chains.

  • Remote Sensing

    Use of airborne and satellite data to monitor crops, soils, and landscapes.

  • Satellite-Based Crop Monitoring

    Satellite tools for observing crop condition, growth, stress, and yield indicators.

  • Digital Agriculture Platforms

    Integrated platforms for farm data, analytics, services, and decision support.

  • Future AgriTech Innovations

    Next-generation technologies shaping the future of agriculture and food systems.

Future Agriculture & Global Innovation

Sessions exploring Agriculture 5.0, smart farming ecosystems, carbon-neutral agriculture, resilient food systems, future technologies, agribusiness innovation, and Vision 2050.

  • Agriculture 5.0

    Human-centered, intelligent, and sustainable agricultural systems for the next era.

  • Smart Farming Ecosystems

    Connected ecosystems combining technologies, services, producers, and markets.

  • Carbon-Neutral Agriculture

    Pathways and practices for reducing agricultural emissions toward net-zero goals.

  • Resilient Food Systems

    Food systems designed to withstand climate, economic, and social disruptions.

  • Future Farming Technologies

    Emerging tools and systems that may transform future agricultural production.

  • Innovation in Agribusiness

    Business models, partnerships, and technologies driving agricultural innovation.

  • Vision 2050 for Global Agriculture

    Long-term scenarios and strategies for sustainable global agriculture by 2050.