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Y-DNA Haplogroup • Paternal Lineage

R1B1A1B1A1A2C1A6

Y-DNA Haplogroup R1B1A1B1A1A2C1A6

~14,000 years ago
West Eurasia
1 subclades
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Chapter I

The Story

The journey of Y-DNA haplogroup R1B1A1B1A1A2C1A6

Origins and Evolution

Y-DNA haplogroup R1b1a1b1a1a2c1a6 is a highly derived subclade within the broad R1b paternal lineage, one of the dominant Y-chromosome branches in western Eurasia. Because it sits deep within the R1b phylogeny and is described as a rare downstream branch, it likely traces back to a late Upper Paleolithic or early Holocene West Eurasian ancestor, with its present-day distribution reflecting survival of a low-frequency lineage rather than a single large expansion.

The most reasonable time depth for this branch is around 14 kya, consistent with the parent clade context and with the broader post-Last Glacial Maximum diversification of western Eurasian Y lineages. This makes it older than many Bronze Age-derived R1b expansions, but its current rarity suggests it did not participate in the major demographic sweeps that made other R1b subclades, especially within R1b-L51/P312 and R1b-Z2103, so successful in later prehistory.

Subclades

As an intermediate clade, R1b1a1b1a1a2c1a6 functions as a branching point connecting its parent lineage to more terminal descendants. Publicly available phylogenetic summaries for very rare clades like this often contain limited sampling, so the subclade structure may be incomplete or underrepresented in population datasets. Nevertheless, its position indicates that it belongs to a localized, low-frequency branch of R1b rather than one of the major continental expansions.

Geographical Distribution

The geographic pattern of R1b1a1b1a1a2c1a6 is best interpreted as patchy and discontinuous, with detections expected in multiple regions of western Eurasia at low frequency. Based on the parent clade context, it may be present among:

  • Irish and British populations, likely reflecting persistence through historical population turnover and later regional founder events
  • French, Iberian, and Low Countries populations, where multiple ancient R1b lineages were retained and reshuffled by prehistoric and historic migrations
  • Italian and Balkan populations, consistent with long-term continuity and movement across the Mediterranean and southeastern Europe
  • Caucasus and Anatolian populations, which often preserve deep West Eurasian paternal diversity
  • Levantine and North African populations, likely introduced through ancient and historic trans-Mediterranean contacts
  • Some Central Asian and steppe-related populations, potentially reflecting ancient gene flow or broader West Eurasian dispersals

At the regional level, this haplogroup should be expected to occur at low to very low frequency almost everywhere it appears, with the strongest inference being that it survives as a rare remnant lineage rather than as a major population marker.

Historical and Cultural Significance

Although R1b1a1b1a1a2c1a6 itself is too rare to be tightly tied to a single archaeological culture, its broader R1b background makes it relevant to several major prehistoric population processes in Eurasia. The deeper ancestral framework of R1b is often discussed in relation to post-glacial western Eurasian foragers, Neolithic contact zones, and later Bronze Age mobility.

Because this branch is so rare and deeply nested, it may have passed through one or more of the following demographic contexts:

  • Late Mesolithic / early Neolithic West Eurasian continuity, preserving an older paternal line in peripheral or refugial populations
  • Bronze Age mobility networks, especially where low-frequency lineages could move with small groups, elite lineages, or interregional contacts
  • Historic-era migration and admixture, which can disperse rare paternal lines across wide areas without making them common anywhere

Its significance is therefore more phylogenetic and demographic than culture-defining: it helps reconstruct the hidden branching structure of R1b and illustrates how ancient male lineages can persist at very low frequencies over millennia.

Conclusion

R1b1a1b1a1a2c1a6 is best understood as a rare, ancient West Eurasian R1b subclade with a deep but localized history. Its present distribution likely reflects a combination of persistence, founder effects, and sporadic dispersal, making it valuable for tracing fine-scale paternal ancestry within western Eurasia.

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 R1B1A1B1A1A2C1A6 Current ~14,000 years ago ?? Mesolithic 14,000 years 1 0 0
2 R1B1A1B1A1A2C1A ~14,000 years ago ?? Mesolithic 14,000 years 6 331 9
3 R1B1A1B1A1A2C1 ~14,000 years ago ?? Mesolithic 14,000 years 2 581 0
4 R1B1A1B1A1A2C ~14,000 years ago ?? Mesolithic 14,000 years 1 582 111
5 R1B1A1B1A1A2 ~14,000 years ago ?? Mesolithic 14,000 years 6 916 0
6 R1B1A1B1A1A ~14,000 years ago ?? Mesolithic 14,000 years 4 1,254 70
7 R1B1A1B1A1 ~14,000 years ago ?? Mesolithic 14,000 years 1 1,292 0
8 R1B1A1B1A ~14,000 years ago ?? Mesolithic 14,000 years 2 1,295 15
9 R1B1A1B1 ~18,000 years ago ?? Mesolithic 18,000 years 2 1,529 0
10 R1B1A1B ~18,000 years ago ?? Mesolithic 18,000 years 2 1,655 31
11 R1B1A1 ~18,000 years ago ?? Mesolithic 18,000 years 2 1,657 0
12 R1B1A ~18,000 years ago ?? Mesolithic 18,000 years 2 3,825 39
13 R1B1 ~18,000 years ago ?? Mesolithic 18,000 years 2 3,967 0
14 R1b ~20,000 years ago ?? Mesolithic 20,000 years 2 4,036 126
Chapter III

Where in the World

Geographic distribution and modern presence

Place of Origin

West Eurasia

Modern Distribution

The populations where Y-DNA haplogroup R1b1a1b1a1a2c1a6 is found include:

  1. Irish and British populations
  2. French, Iberian, and Low Countries populations
  3. Italian and Balkan populations
  4. Caucasus and Anatolian populations
  5. Levantine and North African populations
  6. Some Central Asian and steppe-related populations

Regional Presence

Western Europe High
Northern Europe Moderate
Southern Europe Low
North Africa Low
North America (diaspora) Moderate
Eastern Europe Low
Western Asia Low
North Africa Low
Central Asia Low
CHAPTER IV

When in Time

Your haplogroup in the context of human history

~20k years ago

Last Glacial Maximum

Peak of the last ice age, populations isolated

~14k years ago

Haplogroup R1B1A1B1A1A2C1A6

Your Y-DNA haplogroup emerged in West Eurasia

West Eurasia
~10k years ago

Neolithic Revolution

Agriculture begins, settled communities form

~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 Y-DNA haplogroup R1B1A1B1A1A2C1A6

Cultural Heritage

These ancient cultures have been linked to haplogroup R1B1A1B1A1A2C1A6 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.

Anglo-Saxon Bell Beaker British Iron Age British Late Bronze Age British Neolithic England_BellBeaker-ohighEEF Late Iron Age British Middle Iron Age British Northumbrian Bronze Age Scottish Bronze Age
Culture assignments are based on archaeological context of ancient DNA samples and may represent regional associations during specific time periods.
Chapter V

Sample Catalog

1 direct carrier and 3 subclade carriers of haplogroup R1B1A1B1A1A2C1A6

4 / 4 samples
Portrait Sample Country Era Date Culture Y-DNA Match
Reconstructed portrait of England MIA individual, England. Somerset. Christon. Dibbles Farm, United Kingdom (387-199 BCE)
England MIA individual, United Kingdom
United Kingdom England MIA 387-199 calBCE (2227±30 BP, SUERC-94989) Middle Iron Age British R1b1a1b1a1a2c1a6 Direct
Reconstructed portrait of England LIA individual, England. Gloucestershire. Bishop's Cleeve. Cleevelands, United Kingdom (50-200 CE)
England LIA individual, United Kingdom
United Kingdom England LIA 50-200 CE British Late Iron Age R1b1a1b1a1a2c1a6a1 Downstream
Reconstructed portrait of England LIA individual, England. Somerset. Worlebury, United Kingdom (197-44 BCE)
England LIA individual, United Kingdom
United Kingdom England LIA 197-44 calBCE (2103±27 BP, SUERC-94960) British Late Iron Age R1b1a1b1a1a2c1a6a1 Downstream
Reconstructed portrait of England LIA MIA individual, England. Cornwall. Newquay. Trethellan Farm, United Kingdom (300 BCE-100 CE)
England LIA MIA individual, United Kingdom
United Kingdom Middle to Late Iron Age England 300 BCE - 100 CE Late Iron Age British R1b1a1b1a1a2c1a6a Downstream
Chapter VI

Carrier Distribution Map

Geographic distribution of 4 ancient DNA samples (direct and subclade carriers of R1B1A1B1A1A2C1A6)

Direct carrier Subclade carrier
Time Period Filter
All Time Periods
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 2026-06-17
Confidence Score 50/100
Coverage Low
Data Source

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