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mtDNA Haplogroup • Maternal Lineage

H49

mtDNA Haplogroup H49

~6,000 years ago
Western Europe (Iberian/Atlantic fringe)
1 subclades
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Chapter I

The Story

The journey of mtDNA haplogroup H49

Origins and Evolution

Haplogroup H49 is a downstream lineage of mtDNA haplogroup H4, itself a western-European branch of the broadly distributed haplogroup H. Given the phylogenetic position of H49 beneath H4 and the estimated age of H4 in the early Holocene, H49 most plausibly originated in the Iberian/Atlantic fringe during the Neolithic period (approximately 6 kya) as a localized diversification of maternal lineages associated with post‑Last Glacial Maximum recolonization and later Neolithic demographic processes.

The limited number of observed H49 sequences and its restricted geographic pattern suggest H49 is a low-frequency, regionally restricted clade. Its emergence is consistent with the pattern of many H subclades that expanded locally after the Last Glacial Maximum and were later reshaped by Neolithic farmer movements and Bronze Age maritime contacts along the Atlantic façade.

Subclades (if applicable)

At present H49 is known as a terminal or near-terminal branch in reference datasets and published trees; there are few or no well-documented deep internal subclades. That scarcity likely reflects low absolute frequency and limited sampling rather than an absence of recent diversification. As more whole-mitochondrial genomes are sequenced from Atlantic Europe and Iberia, further internal structure within H49 may be resolved.

Geographical Distribution

Modern distributions: H49 is detected at very low frequencies across parts of the western European Atlantic zone, with the highest representation in Iberia (Spain, Portugal, and Basque regions) and sporadic occurrences in adjacent French Atlantic regions, the British Isles, and southern Atlantic Italy/Sardinia. Very low-frequency occurrences in North Africa and the Near East are plausible as the result of historical contact and gene flow along Mediterranean and Atlantic trade routes.

Ancient DNA: Given its position inside H4, H49 is likely to appear in Neolithic and Bronze Age contexts that reflect local maternal pools along Atlantic Europe; however, it is far less common than major H subclades (e.g., H1, H3) in published aDNA series. Sparse ancient hits are consistent with a low-frequency, regionally persistent lineage.

Historical and Cultural Significance

H49 should be interpreted as a marker of localized maternal continuity in the Atlantic and Iberian regions rather than as a signature of a large-scale migration. Its presence in modern and (occasionally) ancient samples aligns with demographic scenarios that include:

  • retention of postglacial maternal diversity in refugial and recolonized areas of Iberia;
  • incorporation into Neolithic farmer communities and subsequent coastal interactions;
  • modest movement with Bronze Age and later Atlantic cultural phenomena (e.g., maritime exchange networks, Bell Beaker-associated mobility) without evidence for continent-wide replacement.

Because of its rarity, H49 is rarely diagnostic for broad prehistoric cultural attributions on its own, but when combined with archaeological context and genome-wide data it can contribute to fine-scale reconstructions of maternal lineage continuity in Atlantic Europe.

Conclusion

H49 is a rare, regional mtDNA lineage nested within H4, most plausibly originating in the Iberian/Atlantic area during the Neolithic (~6 kya). It exemplifies the many low-frequency maternal clades that document localized demographic histories in western Europe. Broader sampling and additional whole-mitogenome sequences from Atlantic Europe and adjacent regions will clarify its internal structure, precise age, and past population dynamics.

Key Points

  • Origins and Evolution
  • Subclades (if applicable)
  • 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 H49 Current ~6,000 years ago ?? Chalcolithic 6,000 years 1 6 0
2 H ~25,000 years ago ?? Paleolithic 25,000 years 78 7,089 991
3 HV ~30,000 years ago ?? Paleolithic 30,000 years 14 8,468 228
4 R0 ~15,000 years ago ?? Mesolithic 15,000 years 2 8,603 4
5 R ~55,000 years ago ?? Paleolithic 55,000 years 17 17,854 57
6 NA - - - 1 17,854 0
7 N ~60,000 years ago ?? Paleolithic 60,000 years 16 20,371 13
8 L3 ~70,000 years ago ?? Paleolithic 70,000 years 7 23,542 6
9 L3'4 - - - 2 23,581 0
10 L3'4'6 - - - 2 23,584 0
11 L2'3'4'6 - - - 2 24,475 0
12 L2'3'4'5'6'7 - - - 2 24,488 0
13 L1'2'3'4'5'6'7 - - - 2 24,903 0
14 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

Western Europe (Iberian/Atlantic fringe)

Modern Distribution

The populations where MTDNA haplogroup H49 is found include:

  1. Iberian populations (Spain, Portugal, including Basque-speaking groups)
  2. Western Europeans (Atlantic France, Brittany)
  3. British Isles populations (England, Scotland, Ireland) at low frequency
  4. Southern Europe (coastal Italy, Sardinia) at very low frequency
  5. North African populations (Maghreb) at trace levels
  6. Near Eastern populations (Anatolia/Levant) at very low frequencies
CHAPTER IV

When in Time

Your haplogroup in the context of human history

~10k years ago

Neolithic Revolution

Agriculture begins, settled communities form

~6k years ago

Haplogroup H49

Your mtDNA haplogroup emerged in Western Europe (Iberian/Atlantic fringe)

Western Europe (Iberian/Atlantic fringe)
~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 H49

Cultural Heritage

These ancient cultures have been linked to haplogroup H49 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.

1984 Austria_Avar Avar Faroese Funnel Beaker Hallstatt Culture Late Bronze Age Armenian Late Iron Age British Lech Valley Bronze Age Natufian Płońsk Culture Poland_BA_Trzciniec Roman Provincial
Culture assignments are based on archaeological context of ancient DNA samples and may represent regional associations during specific time periods.
Chapter V

Sample Catalog

9 direct carriers and 3 subclade carriers of haplogroup H49

12 / 12 samples
Portrait Sample Country Era Date Culture mtDNA Match
Reconstructed portrait of Late Antiquity Imperial Roman individual, Viminacium-Pirivoj (Braničevo District, Požarevac Municipality, Kostolac), Serbia (1-400 CE)
Late Antiquity Imperial Roman individual, Serbia
Serbia Serbia Roman 1-400 CE Roman Provincial H49 Direct
Reconstructed portrait of England LIA MIA individual, England. Sussex. Brighton. Bevendean, United Kingdom (361-106 BCE)
England LIA MIA individual, United Kingdom
United Kingdom Middle to Late Iron Age England 361-106 calBCE (2173±31 BP, SUERC-76361) Late Iron Age British H49 Direct
Reconstructed portrait of Early Middle Avar individual, Rákóczifalva-Bagi-földek (Jász-Nagykun-Szolnok Coiunty, Szolnok), Hungary (580-720 CE)
Early Middle Avar individual, Hungary
Hungary Early Middle Avar Period 550-750 CE Avar H49 Direct
Reconstructed portrait of EIA individual, Zagorje ob Savi, Slovenia (742-400 BCE)
EIA individual, Slovenia
Slovenia Slovenia EIA 742-400 calBCE (2412±29 BP, SUERC-69421) Hallstatt Culture H49 Direct
Reconstructed portrait of IA individual, Płońsk (Masovian Province, Płońsk), Poland (1,000-1,200 CE)
IA individual, Poland
Poland Iron Age Płońsk Culture 1000-1200 CE Płońsk Culture H49 Direct
Reconstructed portrait of BA Trzciniec individual, Żerniki Górne-1 (Świętokrzyskie Province, Busko County, Busko-Zdrój), Poland (1,466-1,266 BCE)
BA Trzciniec individual, Poland
Poland Poland BA Trzciniec 1448-1272 calBCE (3110±35, Poz-92374) Poland_BA_Trzciniec H49 Direct
Reconstructed portrait of Kleinaitingen Gewerbegebiet Nord EBA individual, Kleinaitingen - Gewerbegebiet Nord, Germany (1,742-1,544 BCE)
Kleinaitingen Gewerbegebiet Nord EBA individual, Germany
Germany Early Bronze Age Lech Valley, Germany 1742-1544 calBCE (3370±27 BP, MAMS-21592) Lech Valley Bronze Age H49 Direct
Reconstructed portrait of BA Trzciniec individual, Słonowice -5G (Świętokrzyskie Province, Kazimierza County, Kazimierza Wielka), Poland (1,840-1,596 BCE)
BA Trzciniec individual, Poland
Poland Poland BA Trzciniec 1873-1622 calBCE (3420±30, Poz-101477) Poland_BA_Trzciniec H49 Direct
Reconstructed portrait of N MN TRB individual, Hindby mosse (Skåne län, Malmö), Sweden (3,336-2,932 BCE)
N MN TRB individual, Sweden
Sweden Swedish Funnel Beaker Culture 3336-2932 calBCE (4447±37 BP, UBA-35703) Funnel Beaker H49 Direct
Reconstructed portrait of England Roman individual, Winterbourne Kingston (England, Dorset), United Kingdom (352-564 CE)
England Roman individual, United Kingdom
United Kingdom Roman England 364-545 calCE (1630±35 BP, UBA-29855) Romano-British H49a2 Downstream
Chapter VI

Carrier Distribution Map

Geographic distribution of 12 ancient DNA samples (direct and subclade carriers of H49)

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

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