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Reproduction
Plants are sessile organisms that have developed mechanisms to achieve their main objective:
to reproduce, that is, to produce fruits.
An efficient reproductive process is essential for a good production.
SUPER SET
Flowering marks the transition from
vegetative to reproductive phase of the
plant. This phase ends with the maturity of
fruits and, consequently of seeds. Later, if
each seed has appropriate conditions, will
become a new plant.
Reproduction
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Reproduction
The biological function of the flower
consists in harboring the sexual
reproductive processes developed
by plants to perpetuate the specie.
During pollination, the pollengrains are transported fromthe anther to the stigma, theygerminate, forming the pollentube that crosses through thestyle, penetrates the ovaryand fertilizes the ovum.
After fertilization, the flowerbecomes fruit in the processknown as fruit setting.
Fruit setting
Fruit setting
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Fruit development begins after fertilization for rapid growth of the ovary tissues. The first stage is characterized
by numerous cellular divisions. When cellular divisions decrease, the fruit continues to grow through cellular
expansion until its final size.
In this stage begins to accumulate starch, organic acids and other substances. Finally, the ripening is
characterized by the generation of a high variety of chemical and structural changes that determine the aroma,
color, texture and final biochemical composition of fruit.
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Fruit setting
We highlight four requirements to produce a good fruit setting:
➢ It is necessary a mature, well-formed and nourished floral buds to produce flowering
properly.
➢ A favourable temperature for a good germination, pollen tube growth and fertilization.
➢ An adequate supply of nutrients when the ovary begins development, because the initial
fruits development depends on the nutritional contribution.
➢ And a hormonal regulation control.
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Fruit setting
SUPER SET is a liquid natural inductor that
stimulates and strengthens flowering and fruit setting.
It is an hormones-free product
It is composed by Phosphorus, Potassium, Molybdenum,Boron and an exclusive tri-monomeric combination.
The product
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Hormones-free
Hormones
Gibberellins
Abscisic acid
EthyleneCytokinines
Auxins
One same hormone can act on many processes andmany different hormones can act on a singular process.
Plants have a series of mechanisms to regulate theirendogenous production and to maintain a coordinatedresponse to these stimulus.
Plants produce plant hormones, which are responsibleof a wide range of physiological processes, such as rootand stem growth, flowering, ripening of fruits or leaf fall.
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Hormones-free
Parthenocarpic fruits: obtained without pollination, byovary development (Bünger-Kibler and Bangerth 1982;Alabadí et al., 1996) hollow and less compact fruits.
Abscission of the fruit due to the important increase inthe number of fruits (Agustí et al., 2003) yieldreduction.
Reduced fruit setting capacity due to high competition(Agustí et al., 2003).
Malformations in fruit and vegetative organs, floweringinhibition and even reduction of the fruit quality andproductivity (Martineli et al., 2009).
Some negative effects of the exogenous application of hormones, for example: Gibberellins
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Because exogenous application of these
hormones can cause different negative
effects on plants, Artal Agronutrientes
has focused on developing a hormone-
free product.
Hormones-free
Functions
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- Stimulates floral induction.- Improves petals formation for a greater pollination.- Intensifies fruits organoleptic characteristics.
Phosphorus (P2O5)
- Establishes good initial growth of flowering.- Maintains a strong growth in the fruit setting.
Potassium (K2O)
- Promotes cell division and elongation.
- Promotes the strength of the cell wall.
-Stimulates flowering and fertilization.
- Involved in the transport of sugars increasing the quality of fruits.
- Minimizes fruit fall.
Boron (B)
- Participates in the metabolism of Nitrogen, which allows plants to grow.- Stimulates flowers fertility and fertilization.- Stimulates the correct development of the fruit setting and fruiting.
Molybdenum (Mo)
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The monomers that form our exclusive tri-monomeric
combination are secondary metabolites found in plants and
biosynthetically derived from certain primary metabolites.
It is known that many secondary metabolites are involved in several important functions for plant development and in the following physiological processes:
•Signaling in cell differentiation.
•Signalling in control of metabolism (eg, many plant hormones or phytohormones involved in different developmental processes such as flowering or fruit setting).
Functions
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The function of our tri-monomeric combination is very
important in plants because they participate in these signals
that integrate the metabolism, acting as natural hormone
precursors whose purpose to increase pollen grains
germination by lengthening and flexibilizing the pollen
tube, in this way, significantly improving flowering and fruit
setting.
Functions
Summary
* Contains an exclusive tri-monomeric combination: 5% Density:
pH (20ºC):
1,31 ± 0,02 * gr/cc
7,0 ± 0,5 *
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Guaranteed concentrationsElement
10.o% w/w=10.3% w/vPhosphorus Pentoxide (P2O5)
10.0% w/w=10.3% w/vPotassium Oxide (K2 O)
1.0% w/w=1.3% w/vBoron (B)
3.0% w/w=3.9% w/vMolybdenum (Mo)
Use and dose
NOTE: It is compatible with most fertilizers and agrochemical products known, although it is advisable toperform a test. Do not mix with mineral oils, or products of highly acidic or highly alkaline reaction.
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Moment of application
Dosage
Crop
Foliar applicationRoot application
Every 10-15 days since first leaves
develop150-250 cc /100L2-3 L/HaLeaf horticultural
Every 10-15 days since first leaves
develop200-300 cc /100L2-3 L/HaFruit horticultural
2-3 applications: pre-bloom,
post-bloom200-300 cc /100L3-5 L/Ha
Citrus and
subtropical crops
2-3 applications: pre-bloom,
post-bloom200-300 cc /100L3-5 L/Ha
Fruit trees, olive
trees and vines
1-2 applications100-200 cc /100L--Cereals and
ornamentals
Benefits of SUPER SET
SUPER SET
• Induces flowering
• Improves pollen quality
• Lengthens and flexibilizes the pollen tube
• Stimulates the fertilization of flower
• Stimulates the fruit setting
• Increases the fruiting
• Increases the yield