NUBIOTEK® HYPER Mg
Inductor of Photosynthesis and Respiration. Biosynchronizer of Coordination. BNF Glucocatalyser.
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Presentations
NUBIOTEK® HYPER Mg is available in 20L, 5L and 1L presentations.
Benefits provided by NUBIOTEK® HYPER Mg
Ideal Uses
In the case of deficiencies of the Magnesium element in its crop, if interveinal chlorosis is presented (produced by deficiencies), apply NUBIOTEK® HYPER Mg in a range of doses between 0.75 to 1.0 L/Ha, the more severe the chlorosis, the lower the dose to be applied while the problem is resolved, this to avoid metabolic blockages.
Benefits for the plant
It participates in the processes of photosynthesis, synthesis of carbohydrates and proteins, as well as in the breaking of carbohydrates into pyruvic acid (plant respiration).It drives metabolic pathways to synthesize the chlorophyll molecule, in addition to stabilizing the cell and cell walls. It also triggers and harmonizes the correct growth of meristems. It has a fundamental impact on the accumulation of starch in potatoes and/or sugars in all crops, as well as oil in oilseeds. It has BioNanoFemtoTecnological characteristics specially designed for the plant to translocate and assimilate it at all times, mainly in the stages of plant growth, where the relationship with Nitrogen is essential to avoid Magnesium deficiencies. In conditions of low light or prolonged cloudiness, the application of NUBIOTEK® HYPER Mg is essential so that the photosynthesis process is not affected, since it activates the plant's internal mechanisms so that the photosynthetic rate rises, achieving an excellent growth and development for a high hyperproduction.
Science Driven Lightbourn® - Agrological Vision / Agrology
There is a direct relationship between light intensity, carbohydrate status and respiration between the chloroplast and the mitochondria. The HYPER Mg plays the role of bio trigger of the metabolic routes that start with GLUCOSE-1-PHOSPHATE, passing among other metabolites by RIBULOSE 1-5 BIPHOSPHATE and reaching the MALIC ENZYME and PYRUVATE DEHYDROGENASE. That is, from the chloroplast to the mitochondria and vice versa.
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