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mtDNA Haplogroup • Maternal Lineage

H6A1B

mtDNA Haplogroup H6A1B

~5,000 years ago
Near East / West Asia (Anatolia / Caucasus corridor)
3 subclades
41 ancient samples
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Chapter I

The Story

The journey of mtDNA haplogroup H6A1B

Origins and Evolution

mtDNA haplogroup H6A1B is a downstream subclade of H6A1, itself nested within the broader haplogroup H6A/H6 branch of macro-haplogroup H. Based on the phylogenetic position of H6A1B beneath H6A1 (a lineage estimated to have arisen in the Near East/West Asia during the early Holocene, ~9 kya), H6A1B is expected to have a younger time depth, plausibly originating in the mid- to late-Holocene (roughly 4–7 kya). The subclade is defined by additional coding-region and/or control-region mutations that distinguish it from its parent H6A1 and sister lineages.

Ancient DNA and modern population surveys indicate that many H6/H6A sublineages expanded from Near Eastern refugia following the Last Glacial Maximum and into the Neolithic as farming populations spread into Anatolia, the Caucasus and Europe. H6A1B appears to represent a localized offshoot of that broader Near Eastern maternal variation, carried forward by both Neolithic farmer communities and by later regional demographic processes.

Subclades

As a specific downstream branch of H6A1, H6A1B may include one or more minor internal sublineages in high-resolution mitogenome studies; however, it is generally less diverse and less frequent than its parent H6A1. Where whole mitogenomes are available, H6A1B is identified by a distinct set of mutations downstream of the H6A1 diagnostic markers. High-resolution sequencing (complete mtDNA) is required to resolve finer substructure within H6A1B and to identify geographically restricted subclades.

Geographical Distribution

Modern and ancient samples place H6A1B largely in the Near East/Anatolia and adjacent regions: Anatolia and the Caucasus show the highest representation, with lower frequencies in southern Europe (especially the Balkans, Greece and parts of Italy) and occasional detection in North Africa and Central Asia. The pattern is consistent with a Near Eastern origin followed by localized diffusion into neighboring regions through Neolithic farmer migrations, subsequent Bronze Age/Chalcolithic movements, and later historical gene flow.

Historical and Cultural Significance

Although H6A1B is not a high-frequency haplogroup, its presence is informative for reconstructing maternal ancestry in contexts tied to Anatolian and Caucasus-derived farmer lineages. Where observed in ancient DNA, H6A1B-type mitogenomes can signal continuity or contact with Near Eastern demographic sources during the Neolithic and later periods. In modern populations, the haplogroup is sometimes seen in communities with historical connections to Anatolia, the Caucasus, the Balkans and Near Eastern diasporas, and therefore it can contribute to fine-scale maternal ancestry inference.

H6A1B may appear in archaeological contexts associated with early farming communities in Anatolia and the Balkans, and occasionally in later Chalcolithic and Bronze Age remains where regional population movements redistributed Near Eastern maternal lineages.

Conclusion

H6A1B is a geographically and temporally localized maternal lineage derived from the Near Eastern H6A1 branch. It illustrates how subclades of haplogroup H, while often low in frequency, preserve signals of post-glacial and Neolithic dispersals from West Asia into Anatolia, the Caucasus and parts of Europe. Continued recovery of complete mitogenomes from both modern and ancient samples will refine its phylogeny, age estimate and fine-scale geographic patterning.

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 H6A1B Current ~5,000 years ago ?? Bronze Age 5,000 years 3 123 41
2 H6A1 ~9,000 years ago ?? Neolithic 9,000 years 2 242 0
3 H6A ~11,000 years ago ?? Neolithic 11,000 years 2 258 17
4 H6 ~20,000 years ago ?? Mesolithic 20,000 years 3 307 4
5 H ~25,000 years ago ?? Paleolithic 25,000 years 78 7,089 991
6 HV ~30,000 years ago ?? Paleolithic 30,000 years 14 8,468 228
7 R0 ~15,000 years ago ?? Mesolithic 15,000 years 2 8,603 4
8 R ~55,000 years ago ?? Paleolithic 55,000 years 17 17,854 57
9 NA - - - 1 17,854 0
10 N ~60,000 years ago ?? Paleolithic 60,000 years 16 20,371 13
11 L3 ~70,000 years ago ?? Paleolithic 70,000 years 7 23,542 6
12 L3'4 - - - 2 23,581 0
13 L3'4'6 - - - 2 23,584 0
14 L2'3'4'6 - - - 2 24,475 0
15 L2'3'4'5'6'7 - - - 2 24,488 0
16 L1'2'3'4'5'6'7 - - - 2 24,903 0
17 L ~160,000 years ago ?? Paleolithic 160,000 years 2 25,205 5

Siblings (1)

Other branches from the same parent haplogroup

Chapter III

Where in the World

Geographic distribution and modern presence

Place of Origin

Near East / West Asia (Anatolia / Caucasus corridor)

Modern Distribution

The populations where MTDNA haplogroup H6A1B is found include:

  1. Anatolian and Near Eastern populations (Turkey, Levant)
  2. Caucasus populations (Armenia, Georgia, Azerbaijan)
  3. Southern European populations (Greece, Italy, Balkans at low to moderate frequency)
  4. Balkan and Eastern European groups (Balkans, parts of the Black Sea littoral and Ukraine at low frequency)
  5. North African populations (Maghreb, at low frequency)
  6. Some Central Asian and Caucasus-adjacent communities (sporadic occurrences)
  7. Diasporic and Jewish communities (observed at low frequency in some datasets)
CHAPTER IV

When in Time

Your haplogroup in the context of human history

~10k years ago

Neolithic Revolution

Agriculture begins, settled communities form

~5k years ago

Bronze Age

Metalworking, writing, and early civilizations

~5k years ago

Haplogroup H6A1B

Your mtDNA haplogroup emerged in Near East / West Asia (Anatolia / Caucasus corridor)

Near East / West Asia (Anatolia / Caucasus corridor)
~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 H6A1B

Cultural Heritage

These ancient cultures have been linked to haplogroup H6A1B 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.

Afanasievo Bulgaria_GoljamataMogila_EBA_Yamnaya Kazakhstan_KumsayKyrykOba_EBA_Yamnaya Okunevo Culture Russia_Altai_Afanasievo Russia_Khakassia_EBA_Afanasievo-oOkunevo Unetice Yamnaya Culture
Culture assignments are based on archaeological context of ancient DNA samples and may represent regional associations during specific time periods.
Chapter V

Sample Catalog

21 direct carriers and 20 subclade carriers of haplogroup H6A1B

41 / 41 samples
Portrait Sample Country Era Date Culture mtDNA Match
Reconstructed portrait of England Early Medieval Saxon individual, England. North Yorkshire. Vale of Pickering. West Heslerton, United Kingdom (400-600 CE)
England Early Medieval Saxon individual, United Kingdom
United Kingdom England EarlyMedieval Saxon 400-600 CE Anglo-Saxon H6a1b Direct
Reconstructed portrait of Scythian individual, Medwin. Group I. mound 22/1, Ukraine (778-520 BCE)
Scythian individual, Ukraine
Ukraine Iron Age Western Scythian Culture, Ukraine 778 BCE - 520 BCE Western Scythian H6a1b Direct
Reconstructed portrait of Scythian individual, Medwin. Group I. mound 22/1, Ukraine (778-520 BCE)
Scythian individual, Ukraine
Ukraine The Scythian Culture 778 BCE - 520 BCE H6a1b Direct
Reconstructed portrait of EIA Tasmola individual, Central Kazakhstan. Nurken Village. Taldy II. mound 8, Kazakhstan (789-549 BCE)
EIA Tasmola individual, Kazakhstan
Kazakhstan Early Iron Age Tasmola Culture, Kazakhstan 789-549 calBCE (2529±23 BP) Tasmola Culture H6a1b Direct
Reconstructed portrait of LN Viking individual, Frösön (Jämtlands län, Östersund), Sweden (950-1,150 CE)
LN Viking individual, Sweden
Sweden Northern Swedish Viking Culture 950-1150 CE Norse Viking H6a1b Direct
Reconstructed portrait of Early Medieval Slav individual, Santok (Lubusz Province, Gorzów Wielkopolski, Santok), Poland (1,222-1,287 CE)
Early Medieval Slav individual, Poland
Poland Iron Age Santok Culture 1222-1287 calCE Santok Culture H6a1b Direct
Reconstructed portrait of Turkic Nomadic individual, Tian Shan. Central Steppe, Kyrgyzstan (1,670-1,950 CE)
Turkic Nomadic individual, Kyrgyzstan
Kyrgyzstan Modern Nomad, Kyrgyzstan 1670 CE - 1950 CE Kyrgyz Nomadic H6a1b Direct
Reconstructed portrait of Steppe Central Nomad His individual, Tian Shan. Central Steppe, Kyrgyzstan (1,670-1,950 CE)
Steppe Central Nomad His individual, Kyrgyzstan
Kyrgyzstan Historical Steppe Nomads 1670 CE - 1950 CE H6a1b Direct
Reconstructed portrait of Chelyabinsk BA individual, Nepluyevsky Barrow Necropolis (Chelyabinsk Oblast, Kartaly district, Nepluyevka), Russia (1,880-1,622 BCE)
Chelyabinsk BA individual, Russia
Russia Srubnaya-Alakul Culture 1880-1622 calBCE Srubnaya-Alakul H6a1b Direct
Reconstructed portrait of MLBA individual, Hatay Province. Tell Atchana/Alalakh, Turkey (1,881-1,698 BCE)
MLBA individual, Turkey
Turkey Middle to Late Bronze Age Turkey 1881-1698 calBCE (3473±23 BP, MAMS-33678) Anatolian Bronze Age H6a1b Direct
Chapter VI

Carrier Distribution Map

Geographic distribution of 41 ancient DNA samples (direct and subclade carriers of H6A1B)

Direct carrier Subclade carrier
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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.