GMO x Animal Cookies
29%
THC
0.1%
CBD
Top flavors
Terpenes
GMO x Animal Cookies effects are mostly energizing.
GMO x Animal Cookies potency is higher THC than average.
GMO x Animal Cookies
29%
THC
0.1%
CBD
Top flavors
Terpenes
GMO x Animal Cookies effects are mostly energizing.
GMO x Animal Cookies potency is higher THC than average.
The hybrid-indica GMO x Animal Cookies is a modern cultivar created through the deliberate crossbreeding of its namesake parents, GMO and Animal Cookies. Developed for consistent performance, this strain is well-suited for cultivation in both indoor and outdoor environments. Growers can expect a moderate level of difficulty when managing this plant, which reaches maturity over a 68-day flowering cycle and is capable of producing a high yield.
The chemical expression of this strain is defined by a complex terpene profile dominated by limonene, followed by caryophyllene, myrcene, and humulene. Its secondary and tertiary aromatic notes are further rounded out by the presence of bisabolol, linalool, beta-pinene, pinene, and terpinolene. This specific arrangement of compounds produces a distinct sensory profile, anchoring the plant's olfactory and gustatory appeal in the interaction of these nine constituents.
With a THC-dominant profile testing at approximately 29 percent and a minimal 0.1 percent CBD content, GMO x Animal Cookies offers potent effects characterized by a state of being relaxed yet focused. These properties make the strain a functional choice for addressing pain, stress, and sleep concerns. At this stage of its development, there are no notable offspring recorded for this specific lineage.
Terpene Profile
Synergies (+) and conflicts (−) are relative to each other within this profile.
| Terpene | Share | Character | Likely role |
|---|---|---|---|
| limonene | ~60% | citrus | social · creative |
| caryophyllene | ~28% | spicy | relaxing · social |
| myrcene | ~12% | earthy | relaxing · solo |
Research notes below describe isolated terpene mechanisms and early findings. They do not guarantee effects from this strain and are not medical advice.
Russo 2011: increases serotonin in prefrontal cortex + dopamine in hippocampus via 5-HT1A; Johns Hopkins 2024: significantly reduced anxiety vs THC alone.
~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.
Russo 2011: naloxone-sensitive analgesia, potentiates barbiturate sleep; dominant sedating terpenoid; blocks hepatic carcinogenesis by aflatoxin.
Effects
Reported effects — derived from terpene chemistry and cannabinoid profile.
Genetic Profile
Indica-dominant
Primarily indica with sativa influence. Relaxing body with some cerebral lift.
THC-Dominant
High THC, trace CBD. Psychoactive. Full CB1 agonism — euphoria, appetite, analgesia.
Genealogy
Parentage, ancestry, and genetic relatives of GMO x Animal Cookies.
Ancestry
Great-great-grandparents
Great-grandparents
Grandparents
Siblings
Share parents gmo / animal cookies
Composite Traits
Where to buy GMO x Animal Cookies
No verified dispensaries on file — find it on Leafly.
Dispensary Locator
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What would GMO x Animal Cookies × ? 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 GMO x Animal Cookies →Similar strains
Same primary terpene with overlapping effects.
Frequently Asked Questions
Is GMO x Animal Cookies indica or sativa?
GMO x Animal Cookies is modeled here as a indica-dominant (primarily indica with sativa influence).
What terpene is dominant in GMO x Animal Cookies?
Limonene is shown as the dominant terpene at approximately ~60%. Caryophyllene follows as the secondary terpene.
Is GMO x Animal Cookies good for daytime use?
GMO x Animal Cookies 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.