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At Nutritec, we are aware of the current context of climate change and extreme agriculture, where water scarcity, salinity, and extreme temperatures influence every technical decision in the field.
In this scenario, the role of the technical advisor is crucial for maintaining crop resilience, yield, and the farmer’s profitability. At Nutritec, we develop biotechnological solutions designed to provide you with useful, effective tools adapted to the real conditions of climate change, based on plant physiology and validated in the field.
Our development method is structured in five stages, with a clear objective: to activate specific physiological processes, sustain them under stress, and guarantee consistent results under real-world growing conditions.
1. Targeted Activation of Physiological Processes
In extreme agricultural conditions, plants are not always able to activate the necessary physiological processes on their own at each stage of cultivation, especially when subjected to environmental stress or energy imbalances.
Therefore, at Nutritec, we always start with the physiological process we want to activate or regulate: nutritional efficiency, vegetative growth, tolerance to water or saline stress, flowering, fruit set, or energy metabolism management.
Based on this definition, we select synergistic combinations of dicarboxylic acids, supported when necessary by amino acids, capable of directly intervening in key metabolic pathways and generating precise and consistent physiological activation.
Optimizing these pathways promotes a better energy balance in the crop. When the plant has an energy surplus, it is able to more effectively sustain its physiological functions and activate natural defense mechanisms, resulting in more balanced and healthy crops.
2. Nutritional Support of the Activated Process
Physiological activation implies a high demand for energy and nutrients, especially under abiotic stress conditions.
Once the activation system is defined, supporting nutritional components—macro- and micronutrients, seaweed extracts, or other functional elements—are incorporated. Their role is to accompany and sustain the activated physiological process without generating internal imbalances.
This approach is particularly relevant in situations of water scarcity, salinity, thermal imbalances, or limitations in nutrient absorption, where the crop needs to maintain its metabolic activity with limited resources.
3. Formulation Designed for Actual Field Use
For physiological efficacy to translate into agronomic results, the formulation must be stable, compatible, and easy to apply.
At Nutritec, we design formulations that guarantee stability, solubility, and compatibility, ensuring reliable and consistent use under real-world crop management conditions, even in demanding scenarios.
4. Evaluation under extreme stress conditions
Before reaching the farmer, our solutions undergo trials under controlled and extreme conditions, designed to evaluate their performance under severe water deficit, high salinity, or extreme temperatures.
This step allows us to adjust the formulation and reinforce the robustness of the biotechnology system, ensuring that the tools respond when the crop faces extreme conditions.
5. Validation under real-world growing conditions
The Nutritec method is completed with validation under real-world growing conditions, through trials in different crops and climatic zones, in collaboration with technicians and farmers.
Only solutions that demonstrate efficacy, consistency, and real-world applicability become part of the Nutritec portfolio, contributing to healthier crops with greater self-defense capacity, more efficient management, and a reduced environmental impact, without compromising the farmer’s profitability.
