At Vijayam Biocytes, research and development form the cornerstone of our operations. Our dedicated team of scientists and agricultural experts continuously work on developing innovative solutions that address the evolving challenges in modern agriculture.

Research Focus Areas

Amino Acid Research

Extensive research on amino acid extraction from natural sources, studying their role as essential building blocks for proteins and their contribution to various physiological and biochemical processes in plants.

NATCA Development

Advanced research on N-Acetyl Thiazolidine-4-Carboxylic Acid derived from L-Cysteine, focusing on its effectiveness as a plant growth regulator and its application in modulating various plant processes.

Plant Physiology Studies

In-depth studies on how our products enhance chlorophyll synthesis, improve stress resistance, promote flowering and fruit formation, and support overall plant health.

Soil Microflora Enhancement

Research on promoting beneficial soil micro-organisms, improving soil structure, and creating optimal conditions for sustainable crop production.

Product Formulation

Development of innovative combination products that leverage synergistic effects of amino acids and NATCA for enhanced crop performance and yield.

Field Trials

Comprehensive field testing across various crops and climatic conditions to validate product efficacy and optimize application protocols.

Manufacturing Innovation

Amino Acid Production

State-of-the-art facilities for amino acid extraction through comprehensive procedures involving hydrolysis, filtration, pH adjustments, purification, de-colourization, process control, quality control, and packaging.

Capacity: 600 KL Liquid / 300 MT Powder per Annum

NATCA Manufacturing

Advanced production process involving reaction of L-Cysteine with formaldehyde, alkalization, acetylation, pH adjustment, centrifugation, washing, drying, and packaging for commercial application.

Capacity: 50 MT per Annum

Research-Backed Benefits

Maintain and improve protein synthesis to make plants healthy

Control stress before and after shock with fast recovery

Enhance photosynthesis making plants lush green

Support stomatal regulation for positive metabolic balance

Support pollination and fruit formation

Improve soil micro flora

Enhance plant's hydric balance and strengthen cell walls

Increase resistance to unfavorable climatic conditions

Support biomass production and yield

Support disease suppression