AJ's Sour Diesel x TGA Vortex
AJ's Sour Diesel x TGA Vortex
Also known as: AJ's Sour Diesel x Vortex, DDV-ASDV
Overview
AJ's Sour Diesel x TGA Vortex is a hybrid cannabis strain developed by Duke Diamonds Vault, combining two legendary parent genetics to create a unique flowering experience. This strain crosses the famous AJ's Sour Diesel cut (a phenotype of the classic Sour Diesel known for its pungent diesel aroma and energetic effects) with TGA Vortex, an 80/20 sativa-dominant strain bred by TGA Genetics from Apollo 13 and Space Queen. The resulting hybrid represents a marriage of East Coast diesel genetics with West Coast breeding innovation. Duke Diamonds Vault, operated by Duke Diamond from Virginia, is known for preserving heirloom genetics and creating crosses that maintain the integrity of classic strains while introducing new characteristics. This particular cross produces fairly uniform plants structurally, but with notable variation in terpene expression ranging from tropical fruit profiles to more funky, chemical diesel notes. The strain maintains the energetic qualities of both parents while offering a complex aromatic profile that can shift between sweet pineapple-mango notes and more pungent body odor or chemical funk expressions.
Effects
Reported Medical Uses
- Users report help with depression
- May assist with chronic stress
- Often used for creative blocks
- May help with fatigue
This is not medical advice. Consult a healthcare professional.
Possible Negative Effects
Growing Information
AJ's Sour Diesel x TGA Vortex has a flowering cycle of 60-70 days and shows fairly uniform structural characteristics with a 1:1 stretch ratio. The strain can be cultivated both indoors and outdoors, though it requires extra calcium supplementation during flowering to maintain optimal health. Plants are described as 'very frosty' with high resin production. Only available as regular (non-feminized) seeds from Duke Diamonds Vault. The strain is considered moderately challenging to grow, requiring attention to nutrient levels particularly calcium during the flowering phase.