PRIME AA MICRO
| FUNCTIONS: | Micronutrient correction – Nutrient uptake – Stress resistance – Crop recovery – Vegetative growth |
| FOR: | High-value horticulture, protected and open-field vegetables, fruit, vines and micronutrient-sensitive field crops |
| SOURCE: | Animal |
| APPEARANCE: | Honey Viscous Liquid |
| PACKAGING: | 20 L – 1000 L |
SPECIFICATION |
W/V |
|---|---|
| Total Amino Acids | 55% |
| Free Amino Acids | 20% |
| Organic Carbon | 39% |
| Total Nitrogen (N) | 9.5% |
| Iron (Fe) | 2500 ppm |
| Manganese (Mn) | 1200 ppm |
| Boron (B) | 600 ppm |
| Zinc (Zn) | 130 ppm |
| Molybdenum | 60 ppm |
| pH | 6.0 - 7.0 |
| Density | 1.26 |
Description
PRIME AA MICRO corrects several micronutrient shortfalls in one pass, supplying iron, manganese, boron, zinc and molybdenum together in a single foliar and fertigation feed. Produced from hydrolysed collagen through the Peptionics process, it carries each element complexed by free amino acids and short peptides that protect the micronutrients from tie-up and improve their uptake. At 55% total amino acids, with 20% present as free amino acids, it pairs an immediately usable biostimulant fraction with a complete micronutrient correction, while its organic, amino-acid-form nitrogen feeds the crop as it works. PRIME AA MICRO fits routine micronutrient maintenance and the correction of mixed deficiencies on high-value crops.
Key Benefits
- Corrects and prevents micronutrient deficiency. PRIME AA MICRO supplies a complete package of micronutrients in one feed: iron and manganese for chlorophyll and enzyme function, zinc for auxin and protein synthesis, boron for cell walls and reproductive tissue, and molybdenum for nitrogen metabolism, all delivered together in available form.
- Keeps micronutrients available and absorbed. Complexing each element with amino acids protects the cations from tie-up on the leaf surface and in the spray solution, so more of the applied micronutrient is absorbed and put to use rather than locked away.
- Supports nitrogen and carbon metabolism. The organic, amino-acid-form nitrogen and the peptides feed the enzymes of nitrogen assimilation and supply ready-made building blocks for proteins, so the crop spends less energy synthesising them from scratch.
- Eases abiotic stress. Free amino acids act as osmolytes and signalling molecules that help the crop hold performance and recover through heat, cold, salinity and water stress.
- Encourages root and shoot development. The hydrolysate stimulates root growth and lateral root density, building the architecture that underpins establishment, vigour and further nutrient capture.
How It Works
PRIME AA MICRO is built on a protein hydrolysate: collagen broken down into free amino acids and short peptides that the plant takes up and uses ready-made, sparing the energy of building them from scratch. Those same amino acids act as natural complexing agents. They bind nutrient cations such as iron, manganese and zinc and hold them in a soluble, protected form, so the nutrients resist tie-up on the leaf surface and in solution and stay available for absorption.
Once inside the plant, the amino acids and peptides feed nitrogen and carbon metabolism, supplying the building blocks for proteins and supporting the enzymes of nitrogen assimilation. They also act as osmolytes and signalling molecules that help the crop hold performance under stress, and they stimulate the root development that underpins further nutrient uptake. The free amino acid fraction is available immediately, while the bound peptides release more gradually, giving both a fast response and sustained activity.
When to Use PRIME AA MICRO
Apply where micronutrient demand is high or early deficiency symptoms appear, across the season.
- PRIME AA MICRO suits active vegetative growth, when rapid canopy and shoot development raises micronutrient demand.
- It fits the run-up to flowering and fruit set, when boron, zinc and molybdenum support reproductive development.
- Use it at the first visual signs of interveinal chlorosis or mixed micronutrient deficiency to correct the disorder quickly.
- It integrates into routine foliar and fertigation programs as season-long micronutrient maintenance on high-value crops.
Adverse growing conditions slow the plant’s own metabolism and root activity, which is precisely when supplied amino acids and readily available micronutrients matter most

