Certain situations limit the plant’s ability to assimilate nutrients. These include adverse climatic conditions, soils with restrictive chemical characteristics, or antagonisms between mineral elements. In such cases, root nutrition alone is not sufficient to meet the plant’s requirements.

Amino-Power technology delivers readily available amino acids and peptides directly to the plant. These compounds support plant metabolism and development. They remain effective even when the soil is unable to correct nutritional imbalances.

The KORI biostimulant range (Marketing Authorization No. 1220389), developed from Amino-Power technology, is based on a very broad pool of free amino acids, all from the L-series, the form naturally recognized and assimilated by plants.

These amino acids are combined with peptides to enhance the overall effectiveness of the formulation and act rapidly on key metabolic functions. This synergy supports vegetative growth, organ development, and plant physiological balance, even under limiting conditions.

Peptides, made up of short chains of amino acids, play an essential role in activating certain metabolic systems. They act as true biological catalysts, facilitating internal plant processes.

This targeted action results in improved quality parameters, particularly the organoleptic characteristics of crops, such as taste, aroma, and final harvest quality.

Amino-Power technology works effectively when soil nutrition is no longer sufficient. It supports plants facing climatic constraints, mineral element lock-up, or nutritional imbalances. It supports plant metabolism and strengthens their ability to adapt.

By providing directly usable compounds, the KORI range helps plants maintain their growth dynamics and fully express their potential, even under complex conditions.

By combining free amino acids and peptides, Amino-Power technology provides an effective tool to stimulate growth, secure crop quality, and support crops throughout their development cycle.

A precise and efficient approach to supporting plants when the soil alone can no longer meet their needs.