Dallas Grape
Top flavors
Terpenes
Dallas Grape effects are mostly calming.
Dallas Grape
Top flavors
Terpenes
Dallas Grape effects are mostly calming.
Dallas Grape is a modern hybrid-indica strain developed from a complex genetic lineage that includes Mexico Sativa, 7 of 9, and Mikado. This specific combination of genetics resulted in a cultivar that performs well in both indoor and outdoor environments, offering a high yield for cultivators who possess moderate experience. Flowering cycles for this strain conclude at 63 days, and its successful breeding has established it as a stable parent for other varieties, most notably in the creation of its offspring, Jolly Grape.
The chemical profile of Dallas Grape is defined by a diverse array of compounds, lead by the dominance of myrcene, followed by pinene, caryophyllene, and nerolidol. The supporting secondary and tertiary notes consist of beta-pinene, humulene, ocimene, limonene, linalool, and bisabolol. This specific sequence of terpenes contributes to the overall sensory experience, balancing earthy and woody undertones with lighter, nuanced aromatic qualities that define the strain's complex bouquet.
As a THC-dominant cultivar, Dallas Grape is characterized by effects that are primarily focused on inducing a state of relaxation, calm, and mental clarity. These properties make it a utilitarian choice for addressing pain, stress, and sleep-related concerns. The strain remains a functional option for users seeking focused relief without sacrificing the sedative qualities typically associated with its indica-hybrid composition.
Terpene Profile
Synergies (+) and conflicts (−) are relative to each other within this profile.
| Terpene | Share | Character | Likely role |
|---|---|---|---|
| myrcene | ~60% | earthy | relaxing · solo |
| pinene | ~28% | pine | focus · creative |
| caryophyllene | ~12% | spicy | relaxing · social |
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: naloxone-sensitive analgesia, potentiates barbiturate sleep; dominant sedating terpenoid; blocks hepatic carcinogenesis by aflatoxin.
Russo 2011: acetylcholinesterase inhibitor (IC50 0.44 mM) counteracting THC-induced short-term memory deficits; most widely encountered terpenoid in nature; anti-inflammatory via PGE-1.
~12%
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.
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 Dallas Grape.
Ancestry
Great-great-grandparents
Great-grandparents
Grandparents
Parents
Siblings
Share parents mexico sativa / 7 of 9 / mikado
Offspring — 1 strains bred from Dallas Grape
Composite Traits
Where to buy Dallas Grape
No verified dispensaries on file — find it on Leafly.
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What would Dallas Grape × ? 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 Dallas Grape →Similar strains
Same primary terpene with overlapping effects.
Frequently Asked Questions
Is Dallas Grape indica or sativa?
Dallas Grape is modeled here as a indica-dominant (primarily indica with sativa influence).
What terpene is dominant in Dallas Grape?
Myrcene is shown as the dominant terpene at approximately ~60%. Pinene follows as the secondary terpene.
Is Dallas Grape good for daytime use?
Dallas Grape 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.