+1 7178835943 [email protected]
Hybrid Event (In-person or Virtual participation)

International Conference on Crop Physiology and Stress Adaptation Mechanisms · Registering as Listener

ICCPSAM
📅 10 – 11 May 2027 📍 Edinburgh, UK 👥 Standard / Physical Participation
Listener Registration From
$185
Registration Benefits:
Official invitation letterIssued automatically after registration
🎖 Certificate & digital materialsGet certificate, slides and resource materials
🌐 Supporting global researchConnect with researchers across 30+ countries

Select registration mode

Prices are shown before tax and bank charges — no surprises at checkout.

All sessions Networking Certificate Invitation letter Conference kit

Your details

We only need what's required to register and email your confirmation. Everything else is optional.

Coupon Code (If Any)

Have a code? Apply it here — the discount updates the total immediately.

🏷

For Support Please Contact

VISAMASTERCARDNET BANKINGUPI

Payments encrypted & processed securely. Refundable up to 14 days before the event.

Registration summary

ConferenceInternational Conference on Crop Physiology and Stress Adaptation Mechanisms
ModeStandard / Physical
ParticipationListener
Registration fee$185.00
Bank charges (5.8%)$10.73
Total payable $195.73

Includes all bank processing charges — the amount above is exactly what will be charged.

Need help?

Contact our registration team:

📞 +91 93445 35349

Benefits of Registering as Listener

👥Access to Conference Sessions
🔗Networking Opportunities
🎖Certificate of Participation
Invitation Letter Support
📚Conference Kit / Materials
🎤Access to Keynote Sessions
• Conference Session Tracks •
SDG

SDG-Aligned Research Themes

Conference tracks support global knowledge exchange, innovation, and sustainable development priorities across diverse disciplines.

SDG 2 SDG 6 SDG 9 SDG 12

This track focuses on the physiological mechanisms plants employ to cope with various abiotic stresses, including drought and heat. Research presented will explore stress signaling pathways and their implications for crop resilience.

This session will delve into the identification and application of molecular stress markers that facilitate the understanding of plant adaptation mechanisms. Contributions will highlight advancements in genetic tools for enhancing crop performance under stress conditions.

This track examines the impact of environmental stresses on photosynthetic efficiency in crops. Presentations will cover innovative strategies to enhance photosynthetic performance and improve overall plant productivity.

This session will address the critical role of water-use efficiency in sustainable agriculture. Research will focus on physiological traits and management practices that optimize water utilization in crop systems.

This track highlights the latest advancements in phenotyping technologies that enable the assessment of physiological traits linked to stress adaptation. Discussions will include the integration of high-throughput phenotyping with molecular breeding approaches.

This session will explore adaptive management strategies aimed at enhancing the resilience of crops to climate variability. Presentations will focus on practical applications and case studies demonstrating successful adaptation practices.

This track will present models that simulate crop responses to abiotic stresses, providing insights into stress physiology. Contributions will emphasize the role of modeling in predicting crop performance under changing environmental conditions.

This session will focus on methodologies for analyzing plant growth under various stress conditions. Research will highlight the relationship between growth metrics and physiological responses to environmental challenges.

This track will explore innovative breeding and agronomic practices aimed at enhancing drought tolerance in crops. Presentations will discuss the genetic and physiological bases of drought resistance and its practical implications.

This session will investigate the physiological and molecular responses of crops to heat stress. Contributions will focus on understanding the mechanisms of heat tolerance and strategies for mitigating its effects on crop yield.

This track will cover the development and evaluation of climate-resilient crop varieties tailored to withstand abiotic stresses. Research will highlight breeding techniques and field trials that assess the performance of these varieties in diverse environments.

COPYRIGHT © 2026 ISAR. ALL RIGHTS RESERVED