HIFIELD Gibrax SP(Gibberellic Acid 0.186% SP) / POWERFUL PLANT GROWTH REGULATOR(PGR)/BENEFITS,USES AND DOSAGE
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GIBBERELLIC ACID GA₃/ THE POWERFUL PLANT GROWTH REGULATOR(PGR)
Gibberellic acid (GA₃) is one of the most extensively studied and commercially important plant growth regulators (PGRs). It belongs to the gibberellin (GA) family, a group of naturally occurring diterpenoid plant hormones responsible for regulating numerous physiological and developmental processes. More than 130 different gibberellins have been identified in plants, fungi, and bacteria, but only a few—such as GA₁, GA₃, GA₄, and GA₇—are biologically active.
GA₃ was first isolated from the fungus Gibberella fujikuroi, the causal organism of the "Bakanae" (foolish seedling) disease in rice. Infected rice seedlings exhibit excessive elongation due to the overproduction of gibberellins.
MAJOR SITES OF SYNTHESIS INCLUDE
- Young leaves
- Shoot apical meristems
- Developing seeds
- Embryos
- Fruits
- Root tips
MECHANISM OF ACTION
GA₃ functions by regulating gene expression involved in cell expansion and developmental growth.
Signal Transduction
- GA₃ enters plant cells.
- It binds to the GID1 receptor.
- The GA–GID1 complex interacts with DELLA proteins, which normally suppress growth.
- DELLA proteins are tagged for degradation through the ubiquitin-proteasome pathway.
- Growth-promoting genes become active.
- Cell division, cell elongation, and enzyme synthesis increase.
This mechanism explains why GA₃ promotes rapid stem elongation and vigorous vegetative growth.
PHYSIOLOGICAL ROLES
1. Stem Elongation
GA₃ stimulates:
- Cell elongation
- Cell division
- Cell wall loosening
- Expansion of internodes
This leads to taller plants with increased shoot growth.
2. Seed Germination
One of the most important roles of GA₃ is breaking seed dormancy
3. Breaking Dormancy
GA₃ helps overcome:
- Seed dormancy
- Bud dormancy
- Tuber dormancy
It is widely used in horticulture for improving germination of difficult-to-sprout seeds.
4. Flowering
GA₃ promotes flowering in:
- Long-day plants
- Biennial crops
- Some ornamental species
It can substitute for cold treatment (vernalization) in certain plants.
5. Fruit Development
GA₃ promotes:
- Fruit enlargement
- Improved fruit shape
- Increased fruit weight
- Seedless fruit production (parthenocarpy)
6. Delaying Senescence
GA₃ delays:
- Leaf yellowing
- Fruit aging
- Chlorophyll degradation
This helps maintain post-harvest quality in some crops.
7. Enzyme Production
GA₃ induces several hydrolytic enzymes:
- α-Amylase
- Protease
- Lipase
- RNase
These enzymes mobilize stored food reserves during seed germination
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AGRICULTURAL BENEFITS
- Faster plant growth
- Uniform germination
- Better flowering
- Improved fruit setting
- Larger fruits
- Increased yield
- Better crop quality
- Reduced premature fruit drop
- Enhanced market value
| Crop | Purpose |
|---|---|
| Grapes | Berry enlargement |
| Rice | Seedling vigor |
| Sugarcane | Increased cane length |
| Tomato | Fruit set |
| Citrus | Reduce fruit drop |
| Apple | Fruit size |
| Pear | Fruit enlargement |
| Strawberry | Bigger fruits |
| Cotton | Seed germination |
| Tea | Shoot growth |
| Banana | Bunch development |
| Ornamental flowers | Longer stems and improved flowering |

RECOMMENDED DOSAGE (GENERAL GUIDELINE)
| Crop Stage | GA₃ Concentration |
|---|---|
| Seed treatment | 50–200 ppm |
| Vegetative stage | 20–50 ppm |
| Flowering | 20–40 ppm |
| Fruit enlargement | 20–80 ppm |
Note: The exact dose depends on the crop, variety, growth stage, and manufacturer recommendations.
CONCLUSION
Gibberellic Acid (GA₃) is one of the most effective plant growth regulators for promoting seed germination, stem elongation, flowering, fruit set, and fruit enlargement. When applied at the correct dose and growth stage, it improves crop vigor, yield, fruit quality, and overall productivity across a wide range of agricultural and horticultural crops. Proper timing and dosage are essential to maximize benefits while avoiding excessive vegetative growth.
