CHN_Shirenzigou_IA KAZ_Botai 0.161±0.023 KAZ_Wusun 0.490±0.023 NPL_Mebrak_2125BP 0.349±0.019 chisq 5.793 tail prob 0.926172 Full output CHN_Shirenzigou_IA KAZ_Botai 0.143±0.022 NPL_Mebrak_2125BP 0.295±0.019 Saka_Tian_Shan 0.562±0.024 chisq 6.796 tail prob 0.870794 Full output CHN_Shirenzigou_IA KAZ_Botai 0.185±0.023 NPL_Mebrak_2125BP 0.428±0.021 RUS_Sintashta_MLBA 0.270±0.026 TJK_Sarazm_En 0.117±0.027 chisq 11.351 tail prob 0.414345 Full output CHN_Shirenzigou_IA KAZ_Botai 0.032±0.027 KAZ_Zevakinskiy_LBA 0.567±0.025 NPL_Mebrak_2125BP 0.401±0.019 chisq 15.157 tail prob 0.232961 Full output CHN_Shirenzigou_IA NPL_Mebrak_2125BP 0.452±0.031 RUS_Afanasievo 0.435±0.025 RUS_Okunevo_BA 0.114±0.049 chisq 19.808 tail prob 0.0708003 Full output CHN_Shirenzigou_IA NPL_Mebrak_2125BP 0.409±0.031 RUS_Okunevo_BA 0.173±0.050 Yamnaya_RUS_Caucasus 0.418±0.026 chisq 20.453 tail prob 0.0589872 Full output CHN_Shirenzigou_IA NPL_Mebrak_2125BP 0.464±0.033 RUS_Okunevo_BA 0.104±0.053 Yamnaya_RUS_Samara 0.432±0.027 chisq 27.189 tail prob 0.0072566 Full outputBoth the Wusun and Saka are generally accepted to have been the speakers of Indo-Iranian languages. So it's possible that the Shirenzigou nomads were Indo-Iranian speakers too, or at least derived from such peoples. Surprisingly, NPL_Mebrak_2125BP was the key to obtaining the best statistical fits. This is a trio of samples, roughly contemporaneous with the Shirenzigou nomads, from a burial site high up in the Himalayas in what is now Nepal (see here). To be honest, I'm not quite sure why the Himalayan ancients work so well in my models. Perhaps they're just a really good proxy for an Iron Age population from the northern edge of the Tibetan Plateau? By the way, most of the Shirenzigou nomads made it into the latest Global25 datasheets (see here). They can be analyzed in a variety of ways described in this blog post: Getting the most out of the Global25. Below is a screen cap of me comparing the effectiveness of Afanasievo, Sintashta and Wusun samples as proxies for the steppe ancestry in the Shirenzigou nomads with an online tool freely available here. As expected, the algorithm picks Sintashta ahead of Afanasievo, and the Wusun ahead of both. See also... They mixed up Huns with Tocharians Some myths die hard The mystery of the Sintashta people
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Showing posts with label Huns. Show all posts
Showing posts with label Huns. Show all posts
Saturday, August 17, 2019
A surprising twist to the Shirenzigou nomads story
Remember those potentially Afanasievo-derived and Tocharian-related Shirenzigou nomads from the Ning et al. paper? Well, in my opinion, they're probably neither. The genotypes and other data for these Iron Age individuals from the eastern Tian Shan are available here.
Below are a few successful and not so successful qpAdm mixture models for them. Note that I tried to use a wide range of relevant "right pops", but also retain a lot of markers, specifically to be able to discriminate between different types of steppe and steppe-derived sources of gene flow (refer to the full output). Admittedly, the Shirenzigou nomads can be modeled with Afanasievo-related ancestry, but...
Labels:
Afanasievo,
ancient DNA,
Andronovo,
Central Asia,
Himalayas,
Huns,
Indo-European,
Nepal,
R1a-Z93,
R1b,
R1b-M269,
Saka,
Scythian,
Tarim Basin,
Tian Shan,
Tibet,
Tocharian,
Turkic,
Wusun,
Yamnaya
Sunday, July 28, 2019
They mixed up Huns with Tocharians
I don't yet have the genomes from the recent Ning et al. paper on the Iron Age nomads from the Shirenzigou site in the eastern Tian Shan. But I do have most of the previously published data featured in the paper, including the Damgaard et al. 2018 Hun and Saka samples from the western Tian Shan.
After reading the Ning et al. paper between the lines and running a few analyses of my own, it's clear to me that most of the supposedly Tocharian-related Shirenzigou individuals actually share a very close relationship with the Tian Shan Huns, and indeed may have been their ancestors.
For instance, Ning et al. found that a large part of the ancestry of the Shirenzigou ancients could be modeled with the Tian Shan Huns, which was an anachronistic approach because the former are older than the latter. They also found that Ulchi-related ancestry was a key part of the genetic structure of eight out of the ten Shirenzigou individuals, and this likewise appears to be an important part of the genetic structure of the Tian Shan Huns.
Note the strong statistical fits in the Global25/nMonte and qpAdm mixture models below, respectively, which characterize these Huns as a two-way mixture between the Ulchi and the earlier Tian Shan Saka. And keep in mind that the Saka also harbor significant Ulchi-related ancestry.
Hun_Tian_Shan Saka_Tian_Shan,92 Ulchi,8 distance%=1.2553 Hun_Tian_Shan Saka_Tian_Shan 0.928±0.009 Ulchi 0.072±0.009 chisq 4.409 tail prob 0.992464 Full outputMoreover, the Shirenzigou males belong to Y-haplogroups Q1a and R1b (two instances of each), and they share the latter with one of the Tian Shan Huns. Judging by the data from the relevant BAM files, it's also possible that the Shirenzigou males share a very rare subclade of R1b with the Hun, defined by the PH155 mutation (see here). The Y-haplogroup assignments for the other Tian Shan Huns end at R and R1, but that's almost certainly due to missing data. On the other hand, two Tian Shan Sakas belong to Y-haplogroup R1a but none to R1b, which fits with the pattern from currently available ancient DNA that R1a was more common than R1b in Saka-related groups, such as the Scythians and Sarmatians (see here). This is all very interesting, because the Huns replaced the Saka in the western Tian Shan, and, considering their R1b and excess Ulchi-related ancestry, very likely moved into the region from the direction of Shirenzigou. Indeed, in my opinion a strong argument can now be made that the Iron Age population from the Shirenzigou region took part in the formation of the Hunnic confederacy. So where does that leave the theory presented by Ning et al. that the Shirenzigou ancients may have been closely related, and perhaps even ancestral, to the Tocharians, simply because they packed a lot of Yamnaya-related and possibly proto-Tocharian Afanasievo ancestry, and were living close to the Tarim Basin, where Tocharian languages were subsequently first attested? I'm not sure, but I now find it difficult to reconcile this theory with the fact that they were closely related, and probably ancestral, to the Tian Shan Huns. As far as I'm aware, Huns cannot be linked to Tocharians in any meaningful way. Of course it's possible that different Afanasievo-derived groups were living in the Tarim Basin and surrounds, and, as some merged with new populations pushing into the region from the east and adopted non-Indo-European languages, others retained their Tocharian speech and eventually split into communities speaking Tocharian A, B and apparently also C (see here). But this has to be demonstrated directly with ancient DNA from archeological sites where Tocharian languages were attested. Till then, I'll keep thinking that Ning et al. wrote a paper about Tocharians that really should've been a paper about Huns. Here's a famous wall painting of Tocharian princes from the cave of the sixteen sword-bearers in the Tarim Basin, dated to 432–538 AD. They don't look like guys with a lot of Ulchi-related admixture to me, but I might be wrong. Feel free to let me know what you think in the comments below. Update 08/17/2019: The Shirenzigou nomads are now in my dataset. Below are a few successful and not so successful qpAdm mixture models for them. Note that I tried to use a wide range of relevant "right pops", but also retain a lot of markers, specifically to be able to discriminate between different types of steppe and steppe-derived sources of gene flow (refer to the full output). Admittedly, the Shirenzigou nomads can be modeled with Afanasievo-related ancestry, but...
CHN_Shirenzigou_IA KAZ_Botai 0.161±0.023 KAZ_Wusun 0.490±0.023 NPL_Mebrak_2125BP 0.349±0.019 chisq 5.793 tail prob 0.926172 Full output CHN_Shirenzigou_IA KAZ_Botai 0.143±0.022 NPL_Mebrak_2125BP 0.295±0.019 Saka_Tian_Shan 0.562±0.024 chisq 6.796 tail prob 0.870794 Full output CHN_Shirenzigou_IA KAZ_Botai 0.185±0.023 NPL_Mebrak_2125BP 0.428±0.021 RUS_Sintashta_MLBA 0.270±0.026 TJK_Sarazm_En 0.117±0.027 chisq 11.351 tail prob 0.414345 Full output CHN_Shirenzigou_IA KAZ_Botai 0.032±0.027 KAZ_Zevakinskiy_LBA 0.567±0.025 NPL_Mebrak_2125BP 0.401±0.019 chisq 15.157 tail prob 0.232961 Full output CHN_Shirenzigou_IA NPL_Mebrak_2125BP 0.452±0.031 RUS_Afanasievo 0.435±0.025 RUS_Okunevo_BA 0.114±0.049 chisq 19.808 tail prob 0.0708003 Full output CHN_Shirenzigou_IA NPL_Mebrak_2125BP 0.409±0.031 RUS_Okunevo_BA 0.173±0.050 Yamnaya_RUS_Caucasus 0.418±0.026 chisq 20.453 tail prob 0.0589872 Full output CHN_Shirenzigou_IA NPL_Mebrak_2125BP 0.464±0.033 RUS_Okunevo_BA 0.104±0.053 Yamnaya_RUS_Samara 0.432±0.027 chisq 27.189 tail prob 0.0072566 Full outputBoth the Wusun and Saka are generally accepted to have been the speakers of Indo-Iranian languages. So it's possible that the Shirenzigou nomads were Indo-Iranian speakers too, or at least derived from such peoples. Surprisingly, NPL_Mebrak_2125BP was the key to obtaining the best statistical fits. This is a trio of samples, roughly contemporaneous with the Shirenzigou nomads, from a burial site high up in the Himalayas in what is now Nepal (see here). To be honest, I'm not quite sure why the Himalayan ancients work so well in my models. Perhaps they're just a really good proxy for an Iron Age population from the northern part of the Tibetan Plateau? By the way, most of the Shirenzigou nomads made it into the latest Global25 datasheets (see here). See also... Almost everything you ever wanted to know about the Xiaohe-Gumugou cemeteries The mystery of the Sintashta people Late PIE ground zero now obvious; location of PIE homeland still uncertain, but...
Labels:
Afanasievo,
ancient DNA,
Andronovo,
Central Asia,
Hunnic,
Huns,
Indo-European,
Indo-Iranian,
Pontic-Caspian steppe,
R1a,
R1a-Z93,
R1b,
R1b-M269,
Saka,
Scythian,
Tarim Basin,
Tian Shan,
Tocharian,
Turkic,
Yamnaya
Monday, July 15, 2019
Asiatic East Germanics
Around a third of the ancient individuals in my dataset associated with East Germanic-speaking cultures show obvious ancestry from Central and/or West Asia.
This shouldn't be too surprising, considering, for instance, the well documented contacts between East Germanic tribes and the Avars, Huns, Sarmatians and other nomadic groups that streamed into Europe from the Asian steppes during the Migration Period. It's a topic that I've raised before at this blog (see here).
But the curious thing is that very little, if any, of this ancestry has percolated down to present-day Europeans.
The easiest way to show this is with a Principal Component Analysis (PCA) based on my Global25 data. The relevant PCA datasheet can be downloaded here. Basic details about the ancient samples in the analysis are available here.
Some of the Northeastern European populations, particularly the Uralic speakers, appear to be attracted to the Hunnic cluster. However, this is mostly an artifact of pre-Migration Period east to west population expansions in the far north of Europe, probably including those of the Proto-Uralians (see here).
So how is it that, despite ruling over vast areas of Europe for hundreds of years, the East Germanics appear not to have contributed significantly to the present-day European gene pool? My theory is that, much like the Avars and Huns, they were militarily and demographically overwhelmed by the ascending groups around them, such as the Slavs, and they simply went extinct.
To wrap things up, here's a basic qpAdm mixture model designed to test for Hunnic-related ancestry in a few Eastern and Northern European populations of interest. Note the significant slice of this type of ancestry in the likely early Goths of the Chernyakhiv culture. Is it real? Feel free to share your thoughts in the comments below.
UKR_Chernyakhiv DEU_MA 0.863±0.038 Hun_Tian_Shan 0.137±0.038 chisq 12.525 tail prob 0.325466 Full output Swedish Baltic_EST_IA 0.126±0.078 DEU_MA 0.849±0.073 Hun_Tian_Shan 0.025±0.020 chisq 8.338 tail prob 0.595877 Full output Ukrainian Baltic_EST_IA 0.121±0.064 DEU_MA 0.857±0.060 Hun_Tian_Shan 0.022±0.017 chisq 11.458 tail prob 0.322956 Full output Estonian Baltic_EST_IA 0.597±0.069 DEU_MA 0.373±0.064 Hun_Tian_Shan 0.030±0.017 chisq 15.739 tail prob 0.107361 Full outputSee also... Conan the Barbarian probably belonged to Y-haplogroup R1a More on the association between Uralic expansions and Y-haplogroup N Uralic-specific genome-wide ancestry did make a signifcant impact in the East Baltic
Labels:
ancient DNA,
Central Asia,
Chernyakhiv culture,
Chernyakhov culture,
East Germanic,
Eastern Europe,
Gepids,
Germanic,
Goths,
Huns,
I1,
Middle Ages,
Northern Europe,
Ostrogoths,
R1b-U106,
Sarmatian,
Slavic,
Visigoths
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