
California Octane TRIPLOID 3 seeds
California Octane Triploid is an innovative hybrid strain that combines modern triploid breeding with massive yields.
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Manufacturer Information
The I-369 × Dream Queen × Papaya genetics produce extremely dense, resin-coated buds with a potent, gassy profile and subtle tropical-creamy undertones – developed for maximum performance and stability.
Genetics & Characteristics
- Type: Triploid, feminised, photoperiod
- Genetics: I-369 × Dream Queen × Papaya
- Genotype: 50% Indica / 50% Sativa
- Yield: Very high (above-average production)
- Resin production: Very high
- Special feature: Triploid technology (non-GMO)
Effect
A powerful, clear hybrid effect:
- Strongly cerebral and energising
- Mood-lifting
- Clear and focused
- Long-lasting
Ideal for productive days, creative work and intense sessions.
Aroma & Taste
An intense gas profile with an exotic twist:
- Dominant diesel/fuel scent
- Subtle guava notes
- Creamy sweetness in the background
- Loud, complex and penetrating
A classic ‘Gas × Tropical Cream’ terpene profile.
Special features
- Triploid genetics for greater stability
- Larger, denser buds
- Reduced seed formation
- +10–20% higher yield possible
- Highly resistant to stress, pests and drought
A true farmer’s strain for maximum efficiency.
Indoor cultivation
- Flowering time: approx. 60 days
- Yield: very high
- Structure: robust, heavily branched
- Very stable development
Ideal for controlled setups focused on maximum production.
Outdoor cultivation
- Harvest: 1–10 October
- Yield: extremely high
- Very robust and adaptable
- Perfect for large plants and various climates
Particularly strong in outdoor and farm cultivation.
Growth & structure
- Densely stacked buds
- Strong, sturdy branches
- Extreme trichome layer
- Uniform, vigorous growth
Optimised for yield, stability and quality.
Conclusion
California Octane Triploid is a high-performance strain of the new generation: extremely high-yielding, resilient and with an intense gas terpene profile. Perfect for growers seeking maximum efficiency and modern genetics.