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mtDNA Haplogroup • Maternal Lineage

T2H

mtDNA Haplogroup T2H

~9,000 years ago
Near East / Eastern Mediterranean
2 subclades
9 ancient samples
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Chapter I

The Story

The journey of mtDNA haplogroup T2H

Origins and Evolution

mtDNA haplogroup T2H is a downstream branch of haplogroup T2, itself part of the larger JT macro-haplogroup. T2 likely diversified in the Near East around or shortly after the Last Glacial Maximum, and many of its subclades spread into Europe during post-glacial recolonization and the Neolithic expansion. Based on phylogenetic position and published population-genetic patterns for T2 subclades, T2H plausibly formed several thousand years after the initial T2 radiation — a reasonable estimate for its origin is in the early Holocene (~9 kya), consistent with a Near Eastern origin followed by dispersal into Europe.

As with other T2 lineages, T2H is a maternal lineage marked by a set of shared control-region and coding-region variants that define its branch within the T2 tree. Because T2H is a subclade, it inherits the broader demographic history of T2 (Near Eastern origin, Neolithic diffusion into Europe) while acquiring localized geographical structure as populations carrying it settled and expanded.

Subclades

T2H sits as a named terminal (or near-terminal) branch within T2 in current phylogenies; depending on ongoing mtDNA sequencing and the resolution of databases, individual T2H samples may split into finer sublineages. In modern and ancient datasets T2H is less frequent than some other T2 subclades, which means fewer deep sub-branches are currently documented. Continued mitogenome sequencing often refines internal structure, so additional subclades of T2H may be discovered as more complete genomes from Europe and the Near East are analyzed.

Geographical Distribution

T2H is best documented in populations across the Mediterranean and Europe with secondary occurrences in the Near East and parts of North Africa and the Caucasus. Modern carrier frequencies are typically low to moderate and patchy, with higher relative incidence in some Southern European and Near Eastern groups. T2H has been observed in ancient DNA contexts (your database records seven ancient samples), notably in Neolithic and post-Neolithic European and Mediterranean archaeological assemblages, consistent with a role in farmer-associated maternal lineages.

Historical and Cultural Significance

Because T2H derives from a lineage strongly associated with early farmers (T2 in general is recurrent among Early European Farmer contexts), its presence in ancient and modern individuals is often interpreted as part of the Neolithic demographic package that moved from the Near East into Europe. That association links T2H-bearing maternal lines to the spread of agriculture along Mediterranean (Cardial) and inland (LBK-related) routes, and to later cultural processes (Bronze Age movements, historical trade and migration across the Mediterranean and Near East) that redistributed maternal lineages.

In historical populations, T2H occurs at measurable frequencies in some modern Southern European, Anatolian, Levantine, North African, Caucasus and Jewish (including Ashkenazi and other communities) maternal gene pools. Its detection in ancient samples confirms continuity in some regions and replacement or admixture in others, so it serves as a useful marker for tracing maternal ancestry and migration pathways when combined with archaeological and autosomal data.

Conclusion

T2H is a regionally informative mtDNA subclade of T2 that reflects Holocene demographic events originating in the Near East and spreading into Europe with the Neolithic and later movements. It is relatively uncommon compared with major European haplogroups but valuable for reconstructing maternal line histories across the Mediterranean, Europe, and adjacent regions. Ongoing mitogenome sequencing and archaeogenetic sampling will continue to clarify T2H's internal diversity, precise age, and finer-grained geographic history.

Notes and caveats: age and distribution estimates rely on phylogenetic placement within T2 and published patterns for related T2 subclades; precise coalescence times depend on mutation rate calibration and sample coverage, so values here are intended as informed approximations.

Key Points

  • Origins and Evolution
  • Subclades
  • Geographical Distribution
  • Historical and Cultural Significance
  • Conclusion
Chapter II

Tree & Relationships

Phylogenetic context and subclades

Evolution Path

This haplogroup's evolutionary journey from its earliest ancestor to the present.

Steps Haplogroup Age Estimate Archaeology Era Time Passed Immediate Descendants Tested Modern Descendants Ancient Connections
1 T2H Current ~9,000 years ago ?? Neolithic 9,000 years 2 1 9
2 T2 ~21,000 years ago ?? Mesolithic 21,000 years 13 940 70
3 T ~27,000 years ago ?? Paleolithic 27,000 years 3 1,646 84
4 JT ~40,000 years ago ?? Paleolithic 40,000 years 2 3,283 1
5 R2'JT - - - 2 3,317 0
6 R ~55,000 years ago ?? Paleolithic 55,000 years 17 17,854 57
7 NA - - - 1 17,854 0
8 N ~60,000 years ago ?? Paleolithic 60,000 years 16 20,371 13
9 L3 ~70,000 years ago ?? Paleolithic 70,000 years 7 23,542 6
10 L3'4 - - - 2 23,581 0
11 L3'4'6 - - - 2 23,584 0
12 L2'3'4'6 - - - 2 24,475 0
13 L2'3'4'5'6'7 - - - 2 24,488 0
14 L1'2'3'4'5'6'7 - - - 2 24,903 0
15 L ~160,000 years ago ?? Paleolithic 160,000 years 2 25,205 5
Chapter III

Where in the World

Geographic distribution and modern presence

Place of Origin

Near East / Eastern Mediterranean

Modern Distribution

The populations where mtDNA haplogroup T2H is found include:

  1. Southern European populations (e.g., Italy, Greece, Iberia)
  2. Central and Eastern European populations
  3. Near Eastern populations (Anatolia, Levant)
  4. North African populations (lower frequencies, Mediterranean coast)
  5. Caucasus and parts of Central Asia
  6. Jewish populations (including some Ashkenazi and other Jewish groups)
CHAPTER IV

When in Time

Your haplogroup in the context of human history

~10k years ago

Neolithic Revolution

Agriculture begins, settled communities form

~9k years ago

Haplogroup T2H

Your mtDNA haplogroup emerged in Near East / Eastern Mediterranean

Near East / Eastern Mediterranean
~5k years ago

Bronze Age

Metalworking, writing, and early civilizations

~3k years ago

Iron Age

Iron tools, expanded trade networks

~2k years ago

Classical Antiquity

Greek and Roman civilizations flourish

Present

Present Day

Modern era

Your Haplogroup
Historical Era
Chapter IV-B

Linked Cultures

Ancient cultures associated with mtDNA haplogroup T2H

Cultural Heritage

These ancient cultures have been linked to haplogroup T2H based on matching ancient DNA samples from archaeological excavations. The presence of this haplogroup in these cultures provides insights into the migrations and population movements of populations carrying this haplogroup.

Armenian Late Bronze Austria_Avar Carolingian Early Bronze Age Armenian Late Hellenistic Armenian Late Roman Pottery Neolithic Romanian Neolithic Sicilian Bronze Age Ukrainian Neolithic
Culture assignments are based on archaeological context of ancient DNA samples and may represent regional associations during specific time periods.
Chapter V

Sample Catalog

6 direct carriers and 3 subclade carriers of haplogroup T2H

9 / 9 samples
Portrait Sample Country Era Date Culture mtDNA Match
Reconstructed portrait of Aghitu Antiquity individual, Aghitu, Armenia (33-201 BCE)
Aghitu Antiquity individual, Armenia
Armenia Late Hellenistic Armenia 33 calBCE - 201 calCE (1947±26 BP, OxA-3163) Late Hellenistic Armenian T2h Direct
Reconstructed portrait of Carolingian individual, Barcelona. Roda de Ter. L'Esquerda, Spain (785-810 CE)
Carolingian individual, Spain
Spain Spain Carolingian 785-810 CE Carolingian T2h Direct
Reconstructed portrait of Lchashen LBA individual, Lchashen cemetery, Armenia (1,420-1,250 BCE)
Lchashen LBA individual, Armenia
Armenia Armenian LBA 1450-1250 BCE Armenian Late Bronze T2h Direct
Reconstructed portrait of Lchashen LBA individual, Lchashen cemetery, Armenia (1,420-1,250 BCE)
Lchashen LBA individual, Armenia
Armenia Armenian LBA 1450-1250 BCE Armenian Late Bronze T2h Direct
Reconstructed portrait of Dzhoghaz Berkaber EBA Kura Araxes individual, Berkaber. Dzhoghaz Cemetery Meydanner, Armenia (2,600-2,300 BCE)
Dzhoghaz Berkaber EBA Kura Araxes individual, Armenia
Armenia Early Bronze Age Armenia 2600-2300 BCE Early Bronze Age Armenian T2h Direct
Reconstructed portrait of Karnut EBA Kura Araxes individual, Karnut Archaeological Complex, Armenia (3,500-2,500 BCE)
Karnut EBA Kura Araxes individual, Armenia
Armenia Early Bronze Age Armenia 3500-2500 BCE Early Bronze Age Armenian T2h Direct
Reconstructed portrait of Etruscan Civilization individual, Tuscany. Grosseto. Marsiliana d'Albegna, Italy (348-56 BCE)
Etruscan Civilization individual, Italy
Italy Etruscan Grosseto, Italy 348 BCE - 56 BCE Etruscan T2h2 Downstream
Reconstructed portrait of Early Medieval individual, Gornji-Kosinj-Sveta-Ana (Lika-Senj County, Općina Perušić), Croatia (1,000-1,250 CE)
Early Medieval individual, Croatia
Croatia Croatia EarlyMedieval 1000-1250 CE Early Croatian T2h2 Downstream
Reconstructed portrait of Tepe Hissar individual, Tepe Hissar, Iran (2,575-2,350 BCE)
Tepe Hissar individual, Iran
Iran Chalcolithic Tepe Hissar 2575-2350 calBCE (3970±30 BP, PSUAMS-1916) Tepe Hissar T2h2 Downstream
Chapter VI

Carrier Distribution Map

Geographic distribution of 9 ancient DNA samples (direct and subclade carriers of T2H)

Direct carrier Subclade carrier
Time Period Filter
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Showing all samples
Chapter VII

Temporal Distribution

Distribution of carriers across archaeological periods

Chapter VIII

Geographic Distribution

Distribution by country of origin (direct and subclade carriers shown by default)

Chapter IX

Country × Era Distribution

Cross-tabulation of carrier countries and archaeological periods (direct and subclade carriers shown by default)

Data

Data & Provenance

Source information and data quality

Last Updated 2026-02-16
Confidence Score 50/100
Coverage Low
Data Source

We use the latest phylotree for MTDNA haplogroup classification and data.