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Анатолий Клёсов - ДНК-генеалогия от А до Т

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Balanovsky, О., Dibirova, К., Dybo, A., Mudrak, О., Frolova, S., Pocheshkhova, Е., Haber, М., Platt, D., Schurr, T., Haak, W., Kuznetsova, M., Radzhabov, M., Balaganskaya, O., Romanov, A., Zakharova, T., Hernanz S.D.F., Zalloua, R, Koshel, S., Ruhlen, M., Renfrew. C., Wells, R.S., Tyler-Smith, C., Balanovska, E. (2011) Parallel evolution of genes and languages in the Caucasus region. Mol Biol Evol. 28, 2905–2920.

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Клёсов, А.А., Килин, В.В. (2015) Калькулятор Килина-Клёсова для расчета времен до общих предков (TMRCA): новое издание. Вестник Академии ДНК-генеалогии, т. 8, № 3, стр. 321–375.

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Клёсов, А.А., Саидов, Х.С. (2015) Евреи и пуштуны Афганистана. Концептуал, М., стр. 415–419.

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https://www.familytreedna.com/public/JewishDNAProject/default. aspx?section=yresults

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Haak, W., Balanovsky, О., Sanchez, J.J. et al. (2010) Ancient DNA from European early Neolithic farmers reveals their Near Eastern affinities. PLOS Biology, 8 (11) el000536. doi: 10.1371/journal.pbio.1000536.

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Клёсов, A.A. (2012) Гаплогруппы и гаплотипы Кавказа. Вестник Академии ДНК-генеалогии, том 5, № 9,1005–1036.

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Klyosov, А. А. (2012) Ancient history of the Arbins, bearers of haplogroup R1b, from Central Asia to Europe, 16000 to 1500 years before present. Adv. Anthropology, 2, No. 2, 87-105.

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Lacan, М., Keyser, С., Ricaut, F.-X. et al. (2011) Ancient DNA reveals male diffusion through the Neolithic Mediterranean route. Proc. Natl. Acad. Sei. US, 108,9788–9791.

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Lacan, M., Keyser, C., Ricaut, F.-X. et al. (2011) Ancient DNA suggests the leading role played by men in the Neolithic dissemination. Proc. Natl. Acad. Sei. US, 108, 18255-18259.

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Ermini, L., Olivieri, С., Rizzi, Е. et al. (2008) Complete mitochondrial genome sequence of the Tyrolean Iceman. Curr. Biol. 18, 1687–1693; Fu, O., Mittnik, A., Johnson, P.L.F. et al. (2013) A revised timescale for human evolution based on ancient mitochondrial genomes. Curr. Biol. 23, 1–7; Kean, W.F., Tocchio, S., Kean, M., Rainsford, K.D. (2013) The musculoskeletal abnormalities of the Similaun Iceman («ÖTZI»): clues to chronic pain and possible treatments. Inflammopharmacology, 21, 11–20; P ± 1ntener, A.G., Moss, S. (2010) Otzi, the Iceman and his leather clothes. Chimia (Aurau) 64, 315–320; Olivieri, C., Ermini, L., Rizzi, E. et al. (2010) Characterization of nucleotide misincorporation patterns in the iceman’s mitochondrial DNA. PLOS One, 5(1): e8629. doi: 10.1371/joutnal.pone.0008629; Rollo, F., Ermini, L., Luciani, S. et al. (2006) Fine characterization of the Iceman’s mtDNA haplogroup. Am. J. Phys. Anthropol. 130,557–564.

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https://www.familytreedna.com/public/KBalkarDNA/default. aspx?section=yresults

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Lacan, М., Keyser, С., Ricaut, F.-X., Brucato, N., Tarrus, J., Bosch, A., Guilaine, J., Crubezy, E., Ludes, B. (2011) Ancient DNA suggests the leading role played by men in the Neolithic dissemilation. Proc. Natl. Acad. Sei. US, 108(45), 18255-18259.

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https://www.familytreedna.com/public/Ossetian/default. aspx?section=yresults

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http://www.yfull. com/tree/H

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Sengupta, S., Zhivotovsky, L.A., King, R., Mehdi, S.O., Edmonds, C.A., Chow, C.-E.T.,Lin,A.A., Mitra, M., Sil, S.K., Ramesh, A., Rani, M.V.U.,Thakur,C.M., Cavalli-Sforza, L.L., Majumder, P.P., and Underhill, P.A. (2006) Polarity and temporality of high-resolution Y-chromosome distributions in India identify both indigenous and exogenous expansions and reveal minor genetic influence of Central Asian Pastoralis. Amer. J. Human Genet. 78, 202–221.

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Kivisild, Т, Rootsi, S., Metspalu, М., Mastana, S., Kaldma, К., Parik, J., Metspalu, E., Adojaan, M., Tolk, H.-V., Stepanov, V., et al. (2003) The genetic heritage of the earliest settlers persists both in Indian tribal and caste populations. Hum. Genet. 72, 313–332; Клёсов, A.A., Тюняев, A.A. (2010) Происхождение человека, Белые Альвы, стр. 315–316.

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Cordaux, R., Bentley, G., Aunger, G., Sirajuddin, S.M., Stoneking, M. (2004) Y-STR haplotypes from eight South Indian groups based on five loci. Forensic Sei. 49, 1–2; Клёсов, A.A., Тюняев, A.A. (2010) Происхождение человека, Белые Альвы, стр. 316–317.

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Клёсов, А.А., Тюняев, А.А. (2010) Происхождение человека, Белые Альвы, стр. 317–319.

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Клёсов, А.А., Тюняев, А.А. (2010) Происхождение человека, Белые Альвы, стр. 319–320.

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Mathieson, I., Lazaridis, I., Rohland, N., Mallick, S., Patterson, N., Roodenberg, S.A., Harney, E., Stewardson, K., Fernandes, D., Novak, M., Sirak, K., Gamba, C., Jones, E.R., Llamas, В., Dryomov, S., Pickreil, J., Arsuaga, J.L., de Castro, J.M.B., Carboneil, E., Gerritsen, F., Khokhlov, A., Kuznetsov, P., Lozano, M., Meller, Н., Mochalov, О., Moiseyev, V., Guerra, M.A.R., Roodenberg, J., Verges, J.M., Krause, J., Cooper, A., Alt, K.W., Brown, D., Anthony, D., Lalueza-Fox, C.L., Haak, W., Pinhasi, R., Reich, D. (2015) Genome-wide patterns of selection in 230 ancient Eurasians. Nature 528,499–503.

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Lazaridis, I., Patterson, N., Mittnik, A., Renaud, G., Mallick, S., Kirsanow, K., Sudmant, P.H., Schraiber, J.G., Castellano, S., Lipson, M., Berger, B., Economou, C., Bollongino, R., Fu, O., Bos, K.I., Nordenfeit, S., Li, H., de Filippo, C., Pr ± 1fer, K., Sawyer, S., Posth, C., Haak, W., et al. (2014) Ancient human genomes suggest three ancestral populations for present-day Europeans. Nature 513(7518) 409–413.

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Allentoft, M.E., Sikora, M., Sjögren, K.G., Rasmussen, S., Rasmussen, M., Stenderup, J., Damgaard, P.B., Schroeder, H., Ahlström, T., Vinner, L., Malaspinas, A.S., Margaryan, A., Higham, T., Chivall, D., Lynnerup, N., Harvig,L,Baron, J.,DellaCasa,P.,D^browski,P.,Duffy,P.R.,Ebel,A.V.,Epimakhov,A., Frei, К., Furmanek, M., Gralak, T.,et. al. (2015) Population genomics of Bronze Age Eurasia. Nature 522(7555), 167-72. doi:10.1038/naturel4507.

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Gamba, C., Jones, E.R., Teasdale, M.D., McLaughlin, R.L., Gonzalez-Fortes, G., Mattiangeli, V., Domboroczki, L., Kovari, L, Pap, L, Anders, A., Whittle, A. Dani, J., Raczky, P., Higham, T.F.G., Hofreiter, M., Bradley, D.G., Pinhasi, R. (2014) Genome flux and stasis in a five millennium transect of European prehistory. Nature Communs, DOI: 10.1038/ncomms6257

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Gamba, C., Jones, E.R., Teasdale, M.D., McLaughlin, R.L., Gonzalez-Fortes, G., Mattiangeli, V., Domboroczki, L., Kovari, L, Pap, L, Anders, A., Whittle, A. Dani, J., Raczky, P., Higham, T.F.G., Hofreiter, M., Bradley, D.G., Pinhasi, R. (2014) Genome flux and stasis in a five millennium transect of European prehistory. Nature Communs, DOI: 10.1038/ncomms6257

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http://www.yfull.com/tree/Il/

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Волков, В.Г., Каримов, А.А., Юсупов, Ю.М. (2015) Геногеография башкир рода Кыргыз гаплогруппы II. БЭИП «Суюн», 2, № 10, 972–977.

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http://www.eupedia.com/europe/european_y-dna_haplogroups.shtml

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https://www.familytreedna.com/public/yDNA_Il/default. aspx?section=yresults

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Клёсов, А.А. (2013) Необычные гаплотипы группы II в Башкирии и Киргизии. Вестник Академии ДНК-генеалогии, том 6, № 3, 529–531.

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Klyosov, А.А., Tomezolli, G.T. (2013) DNA genealogy and linguistics. Ancient Europe. Advances in Anthropology, 3,101–111.

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http://www.yfull.com/tree/I2/

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Lacan, М., Keyser, С., Ricaut, F.-X., Brucato, N., Duranthon, F., Guilainec, J., Crubezy, E., Ludes, B. (2011) Ancient DNA reveals male diffusion through the Neolithic Mediterranean route. Proc. Natl. Acad. Sei. US, 108, 9788–9791.

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Клёсов, А.А. (2012) Динарская (восточно-европейская) и «островные» ветви гаплогруппы I2а. Вестник Академии ДНК-генеалогии, том 5, № 11,1304–1317.

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http://www.yfull.com/tree/I2/

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https://www.familytreedna.com/public/HaplogroupIYDNA/default. aspx?section=yresults

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http://www.yfull. com/tree/I2/

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https://www.familytreedna.com/public/HaplogroupIYDNA/default. aspx?section=yresults

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https://www.familytreedna.com/public/I2aHapGroup/default. aspx?section=yresults

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http://www.isogg.org/tree/ISOGG_HapgrpJ.html

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Szecsenyi-Nagy, А. (2015) Molecular genetic investigation of the Neolithic population history in the western Carpathian Basin. Diss. Doktor der Naturwissenschaften am Fachbereich Biologie, Gutenberg-Universität, Mainz, Germany, 356 pp.

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Jones, E.R., Gonzalez-Fortes, G., Connell, S., Siska, V., Eriksson, A., Martiniano, R., McLaughlin, R.L., Llorente, M.G., Cassidy, L.M., Gamba, C., Meshveliani, T., Bar-Yosef, O., Muller, W., Belfer-Cohen, A., Matskevich, Z., Jakeli, N., Higham, T.F.G., Currat, M., Lordkipanidze, D., Hofreiter, M., Manica, A., Pinhasi, R., Bradley, D.G. (2015) Upper Palaeolithic genomes reveal deep roots of modern Eurasians. Nature Communs, DOI: 10.1038/ncomms9912

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Gamba, C., Jones, E.R., Teasdale, M.D., McLaughlin, R.L., Gonzalez-Fortes, G., Mattiangeli, V., Domboroczki, L., Kovari, I., Pap, I., Anders, A., Whittle, A. Dani, J., Raczky, P., Higham, T.F.G., Hofreiter, M., Bradley, D.G., Pinhasi, R. (2014) Genome flux and stasis in a five millennium transect of European prehistory. Nature Communs, DOI: 10.1038/ncomms6257

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Hammer, M.F., Behar, D.M., Karafet, Т.М., Mendez, F.L., Hallmark, В., Erez,T., Zhivotovsky, L. A., Rosset, S., Skorecki, K. (2009) Extended Y chromosome haplotypes resolve multiple and unique lineages of the Jewish priesthood. Hum. Genet. 126,707–717.

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Hammer, M.F., Behar, D.M., Karafet, T.M., Mendez, F.L., Hallmark, В., Erez,T., Zhivotovsky, L. A., Rosset, S., Skorecki, K. (2009) Extended Y chromosome haplotypes resolve multiple and unique lineages of the Jewish priesthood. Hum. Genet. 126,707–717.

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Nagle, N., Ballantyne, K.N., van Oven, M., Tyler-Smith, C., Xue, Y., Taylor, D., Wilcox, S., Wilcox, L., Turkalov, R., van Oorschot, R.A., McAllister, R, Williams, L., Kayser, M., Mitchell, R.J. (2015) Antiquity and diversity of aboriginal Australian Y-chromosomes. Am. J. Phys. Anthropol. doi: 10.1002/ajpa.22886, October 30, 2015

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Fu, О., Li, Н., Moorjani, R, Jay, F., Slepchenko, S.M., Bondarev, A.A., Johnson, P.L., Aximu-Petri, A., Pr ± 1fer, К., de Filippo., C, Meyer, M., Zwyns, N., Salazar-Garcia, D.C., Kuzmin, Y.V., Keates, S.G., Kosintsev, P.A., Razhev, D.I., Richards, M.P., Peristov, N.V., Lachmann, M., Douka, K., Higham, T.F., Slatkin, M., Hublin, J.J., Reich, D., Kelso, J., Viola, T.B., Pääbo, S. (2014) Genome sequence of a 45,000-year-old modern human from western Siberia. Nature. 2014 Oct 23;514(7523):445-9.

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