ASHauto
AutoflowerModernTHC-Dominantevening

Auto Super Hash

Top flavors

earthyspicycitrus
CalmingEnergizing

Auto Super Hash effects are mostly calming.

Auto Super Hash is a modern, auto-flowering variety derived from Ruderalis genetics. Engineered for accessibility, this strain is categorized as easy to grow and performs well in both indoor and outdoor environments. Growers can expect a lifecycle characterized by a fifty-eight-day flowering period, though the resulting yield is characteristically low. The genetic influence of this cultivar is confirmed through its role as the parent of the notable offspring known as Super Hash.

The sensory profile of Auto Super Hash is defined by a complex arrangement of terpenes, led by a dominant foundation of myrcene, caryophyllene, and limonene. Secondary and tertiary notes include pinene, terpinolene, linalool, beta-pinene, humulene, and nerolidol, with trace amounts of ocimene, bisabolol, guaiol, camphene, caryophyllene-oxide, and p-cymene. This diverse chemical composition informs the plant's aromatic and flavor profile, reflecting the specific hierarchy of these aromatic compounds.

As a THC-dominant cultivar, Auto Super Hash is utilized primarily for its ability to induce feelings of relaxation, happiness, and an uplifted mood. These therapeutic characteristics make it a functional choice for those managing stress, physical pain, or persistent sleep difficulties. By combining these specific effects with an autoflowering growth habit, the strain serves as a practical option for cultivators seeking a streamlined experience without compromising on the requested cannabinoid profile.

Terpene Profile

Synergies (+) and conflicts (−) are relative to each other within this profile.

myrcene ~60%caryophyllene ~28%limonene ~12%
TerpeneShare
myrcene~60%
caryophyllene~28%
limonene~12%

Research notes below describe isolated terpene mechanisms and early findings. They do not guarantee effects from this strain and are not medical advice.

~60%

earthy

●●●○

Russo 2011: naloxone-sensitive analgesia, potentiates barbiturate sleep; dominant sedating terpenoid; blocks hepatic carcinogenesis by aflatoxin.

~28%

spicy

●●○○

Russo 2011: only terpene that is a selective full CB2 agonist (100 nM); Gertsch et al. 2008: acts as dietary cannabinoid; unique anti-inflammatory and gastric cytoprotective properties.

~12%

citrus

●●○○

Russo 2011: increases serotonin in prefrontal cortex + dopamine in hippocampus via 5-HT1A; Johns Hopkins 2024: significantly reduced anxiety vs THC alone.

Effects

Reported effects — derived from terpene chemistry and cannabinoid profile.

Genetic Profile

Autoflower

Photoperiod-independent. Flowers based on age, not light cycle. Compact and fast.

THC-Dominant

High THC, trace CBD. Psychoactive. Full CB1 agonism — euphoria, appetite, analgesia.

Genealogy

Parentage, ancestry, and genetic relatives of Auto Super Hash.

Ancestry

Auto Super HashFull tree →

Offspring — 1 strains bred from Auto Super Hash

View full lineage tree →

Composite Traits

Use caution if

daytime-productivitymorning-useevening-wind-down

Where to buy Auto Super Hash

No verified dispensaries on file — find it on Leafly.

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What would Auto Super Hash × ? produce?

Predict the terpene profile, effects, and growing traits of a cross. Our gene weaver engine votes on dominant traits from both parents.

Build a cross with Auto Super Hash

Similar strains

Same primary terpene with overlapping effects.

Frequently Asked Questions

Is Auto Super Hash indica or sativa?

Auto Super Hash is modeled here as a autoflower (photoperiod-independent).

What terpene is dominant in Auto Super Hash?

Myrcene is shown as the dominant terpene at approximately ~60%. Caryophyllene follows as the secondary terpene.

Is Auto Super Hash good for daytime use?

Auto Super Hash is versatile and works across different times of day depending on dose and individual response.

How accurate is this data?

See the "Data confidence" card in the sidebar. Terpene profiles and effects are chemistry-informed estimates — individual responses depend on phenotype, source, and personal chemistry.