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Research data keyboard_double_arrow_right Dataset 2021figshare FCT | UIDB/00283/2020 (UIDB/00283/2020), FCT | UIDB/04004/2020 (UIDB/04004/2020), EC | LEPVORS (845479)Pfrengle, Saskia; Neukamm, Judith; Guellil, Meriam; Keller, Marcel; Molak, Martyna; Avanzi, Charlotte; Kushniarevich, Alena; Montes, Núria; Neumann, Gunnar U.; Reiter, Ella; Tukhbatova, Rezeda I.; Berezina, Nataliya Y.; Buzhilova, Alexandra P.; Korobov, Dmitry S.; Suppersberger Hamre, Stian; Matos, Vitor M. J.; Ferreira, Maria T.; González-Garrido, Laura; Wasterlain, Sofia N.; Lopes, Célia; Santos, Ana Luisa; Antunes-Ferreira, Nathalie; Duarte, Vitória; Silva, Ana Maria; Melo, Linda; Sarkic, Natasa; Saag, Lehti; Tambets, Kristiina; Busso, Philippe; Cole, Stewart T.; Avlasovich, Alexei; Roberts, Charlotte A.; Sheridan, Alison; Cessford, Craig; Robb, John; Krause, Johannes; Scheib, Christiana L.; Inskip, Sarah A.; Schuenemann, Verena J.;Additional file 3: Table S5. SNP distance matrix.
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Research data keyboard_double_arrow_right Dataset 2021figshare FCT | UIDB/00283/2020 (UIDB/00283/2020), FCT | UIDB/04004/2020 (UIDB/04004/2020), EC | LEPVORS (845479)Pfrengle, Saskia; Neukamm, Judith; Guellil, Meriam; Keller, Marcel; Molak, Martyna; Avanzi, Charlotte; Kushniarevich, Alena; Montes, Núria; Neumann, Gunnar U.; Reiter, Ella; Tukhbatova, Rezeda I.; Berezina, Nataliya Y.; Buzhilova, Alexandra P.; Korobov, Dmitry S.; Suppersberger Hamre, Stian; Matos, Vitor M. J.; Ferreira, Maria T.; González-Garrido, Laura; Wasterlain, Sofia N.; Lopes, Célia; Santos, Ana Luisa; Antunes-Ferreira, Nathalie; Duarte, Vitória; Silva, Ana Maria; Melo, Linda; Sarkic, Natasa; Saag, Lehti; Tambets, Kristiina; Busso, Philippe; Cole, Stewart T.; Avlasovich, Alexei; Roberts, Charlotte A.; Sheridan, Alison; Cessford, Craig; Robb, John; Krause, Johannes; Scheib, Christiana L.; Inskip, Sarah A.; Schuenemann, Verena J.;Additional file 2: Table S4. Result table of the SNP effect analysis.
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Research data keyboard_double_arrow_right Dataset 2020figshare WTRiaan F. Rifkin; Surendra Vikram; Jean-Baptiste Ramond; Rey-Iglesia, Alba; Brand, Tina B.; Porraz, Guillaume; Val, Aurore; Hall, Grant; Woodborne, Stephan; Bailly, Matthieu Le; Potgieter, Marnie; Underdown, Simon J.; Koopman, Jessica E.; Cowan, Don A.; Peer, Yves Van De; Willerslev, Eske; Hansen, Anders J.;Additional file 2: Table S1. Sequence reads for environmental- and subsistence-related taxa detected. Table S2. Information concerning 14C Accelerator Mass Spectrometry (AMS) dating. Table S3a. Processing protocol and results for isotope analyses. Table S3b. Results for isotope analyses (Merck standard). Table S3c. Results for isotope analyses (DL-Valine standard). Table S4. Abundance of bacterial taxonomic categories in the IM datasets. Table S5. Sequence read-length distribution for taxa identified in this study. Table S6. Significant KEGG pathways in the comparative IM datasets analysed. Table S7. Relative abundance of eighteen significant KEGG pathways in the IM cohorts. Table S8. Enrichment and depletion of KO metabolic gene categories in the comparative IM sample cohorts based on p-value (p=<0.05) designation. Table S9. Enrichment and depletion of KO metabolic gene categories in the comparative IM sample cohorts based on false discovery rate (FDR) corrected p-values (q=<0.05). Table S10. Enrichment and depletion of KO metabolic gene categories in the ancient and modern comparative IM sample cohort as calculated for the twenty-four authenticated ancient IM taxa. Table S11. Comparison of relative abundance of antibiotic resistance genes in the comparative IM cohorts. Table S12. Raw and filtered high-quality sequence read counts as related to the comparative IM datasets. Table S13. Information concerning the comparative NCBI genomes used during this study.
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Research data keyboard_double_arrow_right Dataset 2019The Royal Society EC | ArchSci2020 (676154), UKRI | Deciphering dog domestica... (NE/K003259/1), UKRI | Deciphering dog domestica... (NE/K005243/1)Ameen, Carly; Feuerborn, Tatiana R.; Brown, Sarah K.; Linderholm, Anna; Ardern Hulme-Beaman; Lebrasseur, Ophélie; Mikkel-Holger S. Sinding; Lounsberry, Zachary T.; Lin, Audrey T.; Appelt, Martin; Bachmann, Lutz; Betts, Matthew; Britton, Kate; Darwent, John; Dietz, Rune; Fredholm, Merete; Gopalakrishnan, Shyam; Goriunova, Olga I.; Grønnow, Bjarne; Haile, James; Hallsson, Jón Hallsteinn; Harrison, Ramona; Heide-Jørgensen, Mads Peter; Knecht, Rick; Losey, Robert J.; Masson-MacLean, Edouard; McGovern, Thomas H.; McManus-Fry, Ellen; Meldgaard, Morten; Midtdal, Åslaug; Moss, Madonna L.; Nikitin, Iurii G.; Nomokonova, Tatiana; Pálsdóttir, Albína Hulda; Perri, Angela; Popov, Aleksandr N.; Rankin, Lisa; Reuther, Joshua D.; Sablin, Mikhail; Schmidt, Anne Lisbeth; Shirar, Scott; Smiarowski, Konrad; Sonne, Christian; Stiner, Mary C.; Mitya Vasyukov; West, Catherine F.; Ween, Gro Birgit; Wennerberg, Sanne Eline; Wiig, Øystein; Woollett, James; Dalén, Love; Hansen, Anders J.; Gilbert, Tom; Sacks, Benjamin; Frantz, Laurent; Larson, Greger; Dobney, Keith; Christyann M. Darwent; Allowen Evin;Domestic dogs have been central to life in the North American Arctic for millennia. The ancestors of the Inuit were the first to introduce the widespread usage of dog sledge transportation technology to the Americas, but whether the Inuit adopted local Paleo-Inuit dogs or introduced a new dog population to the region remains unknown. To test these hypotheses, we generated mitochondrial DNA and geometric morphometric data of skull and dental elements from a total of 922 North American Arctic dogs and wolves spanning over 4500 years. Our analyses revealed that dogs from Inuit sites dating from 2000 BP possess morphological and genetic signatures that distinguish them from earlier Paleo-Inuit dogs, and identified a novel mitochondrial clade in eastern Siberia and Alaska. The genetic legacy of these Inuit dogs survives today in modern Arctic sledge dogs despite phenotypic differences between archaeological and modern Arctic dogs. Together, our data reveal that Inuit dogs derive from a secondary pre-contact migration of dogs distinct from Paleo-Inuit dogs, and most likely aided the Inuit expansion across the North American Arctic beginning around 1000 BP.
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Research data keyboard_double_arrow_right Dataset 2019The Royal Society UKRI | Animals, Lifeways and Lif... (AH/N504543/1), EC | WhereWolf (655732), EC | ArchSci2020 (676154)Ameen, Carly; Feuerborn, Tatiana R.; Brown, Sarah K.; Linderholm, Anna; Ardern Hulme-Beaman; Lebrasseur, Ophélie; Mikkel-Holger S. Sinding; Lounsberry, Zachary T.; Lin, Audrey T.; Appelt, Martin; Bachmann, Lutz; Betts, Matthew; Britton, Kate; Darwent, John; Dietz, Rune; Fredholm, Merete; Gopalakrishnan, Shyam; Goriunova, Olga I.; Grønnow, Bjarne; Haile, James; Hallsson, Jón Hallsteinn; Harrison, Ramona; Heide-Jørgensen, Mads Peter; Knecht, Rick; Losey, Robert J.; Masson-MacLean, Edouard; McGovern, Thomas H.; McManus-Fry, Ellen; Meldgaard, Morten; Midtdal, Åslaug; Moss, Madonna L.; Nikitin, Iurii G.; Nomokonova, Tatiana; Pálsdóttir, Albína Hulda; Perri, Angela; Popov, Aleksandr N.; Rankin, Lisa; Reuther, Joshua D.; Sablin, Mikhail; Schmidt, Anne Lisbeth; Shirar, Scott; Smiarowski, Konrad; Sonne, Christian; Stiner, Mary C.; Mitya Vasyukov; West, Catherine F.; Ween, Gro Birgit; Wennerberg, Sanne Eline; Wiig, Øystein; Woollett, James; Dalén, Love; Hansen, Anders J.; Gilbert, Tom; Sacks, Benjamin; Frantz, Laurent; Larson, Greger; Dobney, Keith; Christyann M. Darwent; Allowen Evin;Domestic dogs have been central to life in the North American Arctic for millennia. The ancestors of the Inuit were the first to introduce the widespread usage of dog sledge transportation technology to the Americas, but whether the Inuit adopted local Paleo-Inuit dogs or introduced a new dog population to the region remains unknown. To test these hypotheses, we generated mitochondrial DNA and geometric morphometric data of skull and dental elements from a total of 922 North American Arctic dogs and wolves spanning over 4500 years. Our analyses revealed that dogs from Inuit sites dating from 2000 BP possess morphological and genetic signatures that distinguish them from earlier Paleo-Inuit dogs, and identified a novel mitochondrial clade in eastern Siberia and Alaska. The genetic legacy of these Inuit dogs survives today in modern Arctic sledge dogs despite phenotypic differences between archaeological and modern Arctic dogs. Together, our data reveal that Inuit dogs derive from a secondary pre-contact migration of dogs distinct from Paleo-Inuit dogs, and most likely aided the Inuit expansion across the North American Arctic beginning around 1000 BP.
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Research data keyboard_double_arrow_right Dataset 2019The Royal Society UKRI | Animals, Lifeways and Lif... (AH/N504543/1), UKRI | Understanding Cultural Re... (AH/K006029/1), UKRI | Deciphering dog domestica... (NE/K005243/1)Ameen, Carly; Feuerborn, Tatiana R.; Brown, Sarah K.; Linderholm, Anna; Ardern Hulme-Beaman; Lebrasseur, Ophélie; Mikkel-Holger S. Sinding; Lounsberry, Zachary T.; Lin, Audrey T.; Appelt, Martin; Bachmann, Lutz; Betts, Matthew; Britton, Kate; Darwent, John; Dietz, Rune; Fredholm, Merete; Gopalakrishnan, Shyam; Goriunova, Olga I.; Grønnow, Bjarne; Haile, James; Hallsson, Jón Hallsteinn; Harrison, Ramona; Heide-Jørgensen, Mads Peter; Knecht, Rick; Losey, Robert J.; Masson-MacLean, Edouard; McGovern, Thomas H.; McManus-Fry, Ellen; Meldgaard, Morten; Midtdal, Åslaug; Moss, Madonna L.; Nikitin, Iurii G.; Nomokonova, Tatiana; Pálsdóttir, Albína Hulda; Perri, Angela; Popov, Aleksandr N.; Rankin, Lisa; Reuther, Joshua D.; Sablin, Mikhail; Schmidt, Anne Lisbeth; Shirar, Scott; Smiarowski, Konrad; Sonne, Christian; Stiner, Mary C.; Mitya Vasyukov; West, Catherine F.; Ween, Gro Birgit; Wennerberg, Sanne Eline; Wiig, Øystein; Woollett, James; Dalén, Love; Hansen, Anders J.; Gilbert, Tom; Sacks, Benjamin; Frantz, Laurent; Larson, Greger; Dobney, Keith; Christyann M. Darwent; Allowen Evin;Domestic dogs have been central to life in the North American Arctic for millennia. The ancestors of the Inuit were the first to introduce the widespread usage of dog sledge transportation technology to the Americas, but whether the Inuit adopted local Paleo-Inuit dogs or introduced a new dog population to the region remains unknown. To test these hypotheses, we generated mitochondrial DNA and geometric morphometric data of skull and dental elements from a total of 922 North American Arctic dogs and wolves spanning over 4500 years. Our analyses revealed that dogs from Inuit sites dating from 2000 BP possess morphological and genetic signatures that distinguish them from earlier Paleo-Inuit dogs, and identified a novel mitochondrial clade in eastern Siberia and Alaska. The genetic legacy of these Inuit dogs survives today in modern Arctic sledge dogs despite phenotypic differences between archaeological and modern Arctic dogs. Together, our data reveal that Inuit dogs derive from a secondary pre-contact migration of dogs distinct from Paleo-Inuit dogs, and most likely aided the Inuit expansion across the North American Arctic beginning around 1000 BP.
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Research data keyboard_double_arrow_right Dataset 2019The Royal Society UKRI | Animals, Lifeways and Lif... (AH/N504543/1), EC | ArchSci2020 (676154), UKRI | Deciphering dog domestica... (NE/K003259/1)Ameen, Carly; Feuerborn, Tatiana R.; Brown, Sarah K.; Linderholm, Anna; Ardern Hulme-Beaman; Lebrasseur, Ophélie; Mikkel-Holger S. Sinding; Lounsberry, Zachary T.; Lin, Audrey T.; Appelt, Martin; Bachmann, Lutz; Betts, Matthew; Britton, Kate; Darwent, John; Dietz, Rune; Fredholm, Merete; Gopalakrishnan, Shyam; Goriunova, Olga I.; Grønnow, Bjarne; Haile, James; Hallsson, Jón Hallsteinn; Harrison, Ramona; Heide-Jørgensen, Mads Peter; Knecht, Rick; Losey, Robert J.; Masson-MacLean, Edouard; McGovern, Thomas H.; McManus-Fry, Ellen; Meldgaard, Morten; Midtdal, Åslaug; Moss, Madonna L.; Nikitin, Iurii G.; Nomokonova, Tatiana; Pálsdóttir, Albína Hulda; Perri, Angela; Popov, Aleksandr N.; Rankin, Lisa; Reuther, Joshua D.; Sablin, Mikhail; Schmidt, Anne Lisbeth; Shirar, Scott; Smiarowski, Konrad; Sonne, Christian; Stiner, Mary C.; Mitya Vasyukov; West, Catherine F.; Ween, Gro Birgit; Wennerberg, Sanne Eline; Wiig, Øystein; Woollett, James; Dalén, Love; Hansen, Anders J.; Gilbert, Tom; Sacks, Benjamin; Frantz, Laurent; Larson, Greger; Dobney, Keith; Christyann M. Darwent; Allowen Evin;Domestic dogs have been central to life in the North American Arctic for millennia. The ancestors of the Inuit were the first to introduce the widespread usage of dog sledge transportation technology to the Americas, but whether the Inuit adopted local Paleo-Inuit dogs or introduced a new dog population to the region remains unknown. To test these hypotheses, we generated mitochondrial DNA and geometric morphometric data of skull and dental elements from a total of 922 North American Arctic dogs and wolves spanning over 4500 years. Our analyses revealed that dogs from Inuit sites dating from 2000 BP possess morphological and genetic signatures that distinguish them from earlier Paleo-Inuit dogs, and identified a novel mitochondrial clade in eastern Siberia and Alaska. The genetic legacy of these Inuit dogs survives today in modern Arctic sledge dogs despite phenotypic differences between archaeological and modern Arctic dogs. Together, our data reveal that Inuit dogs derive from a secondary pre-contact migration of dogs distinct from Paleo-Inuit dogs, and most likely aided the Inuit expansion across the North American Arctic beginning around 1000 BP.
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Research data keyboard_double_arrow_right Dataset 2019The Royal Society UKRI | Animals, Lifeways and Lif... (AH/N504543/1), EC | WhereWolf (655732), UKRI | Understanding Cultural Re... (AH/K006029/1)Ameen, Carly; Feuerborn, Tatiana R.; Brown, Sarah K.; Linderholm, Anna; Ardern Hulme-Beaman; Lebrasseur, Ophélie; Mikkel-Holger S. Sinding; Lounsberry, Zachary T.; Lin, Audrey T.; Appelt, Martin; Bachmann, Lutz; Betts, Matthew; Britton, Kate; Darwent, John; Dietz, Rune; Fredholm, Merete; Gopalakrishnan, Shyam; Goriunova, Olga I.; Grønnow, Bjarne; Haile, James; Hallsson, Jón Hallsteinn; Harrison, Ramona; Heide-Jørgensen, Mads Peter; Knecht, Rick; Losey, Robert J.; Masson-MacLean, Edouard; McGovern, Thomas H.; McManus-Fry, Ellen; Meldgaard, Morten; Midtdal, Åslaug; Moss, Madonna L.; Nikitin, Iurii G.; Nomokonova, Tatiana; Pálsdóttir, Albína Hulda; Perri, Angela; Popov, Aleksandr N.; Rankin, Lisa; Reuther, Joshua D.; Sablin, Mikhail; Schmidt, Anne Lisbeth; Shirar, Scott; Smiarowski, Konrad; Sonne, Christian; Stiner, Mary C.; Mitya Vasyukov; West, Catherine F.; Ween, Gro Birgit; Wennerberg, Sanne Eline; Wiig, Øystein; Woollett, James; Dalén, Love; Hansen, Anders J.; Gilbert, Tom; Sacks, Benjamin; Frantz, Laurent; Larson, Greger; Dobney, Keith; Christyann M. Darwent; Allowen Evin;Domestic dogs have been central to life in the North American Arctic for millennia. The ancestors of the Inuit were the first to introduce the widespread usage of dog sledge transportation technology to the Americas, but whether the Inuit adopted local Paleo-Inuit dogs or introduced a new dog population to the region remains unknown. To test these hypotheses, we generated mitochondrial DNA and geometric morphometric data of skull and dental elements from a total of 922 North American Arctic dogs and wolves spanning over 4500 years. Our analyses revealed that dogs from Inuit sites dating from 2000 BP possess morphological and genetic signatures that distinguish them from earlier Paleo-Inuit dogs, and identified a novel mitochondrial clade in eastern Siberia and Alaska. The genetic legacy of these Inuit dogs survives today in modern Arctic sledge dogs despite phenotypic differences between archaeological and modern Arctic dogs. Together, our data reveal that Inuit dogs derive from a secondary pre-contact migration of dogs distinct from Paleo-Inuit dogs, and most likely aided the Inuit expansion across the North American Arctic beginning around 1000 BP.
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Research data keyboard_double_arrow_right Dataset 2019The Royal Society UKRI | Animals, Lifeways and Lif... (AH/N504543/1), EC | WhereWolf (655732), NSF | Genetic Analysis of Indig... (1304810)Ameen, Carly; Feuerborn, Tatiana R.; Brown, Sarah K.; Linderholm, Anna; Ardern Hulme-Beaman; Lebrasseur, Ophélie; Mikkel-Holger S. Sinding; Lounsberry, Zachary T.; Lin, Audrey T.; Appelt, Martin; Bachmann, Lutz; Betts, Matthew; Britton, Kate; Darwent, John; Dietz, Rune; Fredholm, Merete; Gopalakrishnan, Shyam; Goriunova, Olga I.; Grønnow, Bjarne; Haile, James; Hallsson, Jón Hallsteinn; Harrison, Ramona; Heide-Jørgensen, Mads Peter; Knecht, Rick; Losey, Robert J.; Masson-MacLean, Edouard; McGovern, Thomas H.; McManus-Fry, Ellen; Meldgaard, Morten; Midtdal, Åslaug; Moss, Madonna L.; Nikitin, Iurii G.; Nomokonova, Tatiana; Pálsdóttir, Albína Hulda; Perri, Angela; Popov, Aleksandr N.; Rankin, Lisa; Reuther, Joshua D.; Sablin, Mikhail; Schmidt, Anne Lisbeth; Shirar, Scott; Smiarowski, Konrad; Sonne, Christian; Stiner, Mary C.; Mitya Vasyukov; West, Catherine F.; Ween, Gro Birgit; Wennerberg, Sanne Eline; Wiig, Øystein; Woollett, James; Dalén, Love; Hansen, Anders J.; Gilbert, Tom; Sacks, Benjamin; Frantz, Laurent; Larson, Greger; Dobney, Keith; Christyann M. Darwent; Allowen Evin;Domestic dogs have been central to life in the North American Arctic for millennia. The ancestors of the Inuit were the first to introduce the widespread usage of dog sledge transportation technology to the Americas, but whether the Inuit adopted local Paleo-Inuit dogs or introduced a new dog population to the region remains unknown. To test these hypotheses, we generated mitochondrial DNA and geometric morphometric data of skull and dental elements from a total of 922 North American Arctic dogs and wolves spanning over 4500 years. Our analyses revealed that dogs from Inuit sites dating from 2000 BP possess morphological and genetic signatures that distinguish them from earlier Paleo-Inuit dogs, and identified a novel mitochondrial clade in eastern Siberia and Alaska. The genetic legacy of these Inuit dogs survives today in modern Arctic sledge dogs despite phenotypic differences between archaeological and modern Arctic dogs. Together, our data reveal that Inuit dogs derive from a secondary pre-contact migration of dogs distinct from Paleo-Inuit dogs, and most likely aided the Inuit expansion across the North American Arctic beginning around 1000 BP.
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Research data keyboard_double_arrow_right Dataset 2018SciELO journals WTPereira, Andreia; Mendonça, Maria Isabel; Borges, Sofia; Freitas, Sónia; Henriques, Eva; Rodrigues, Mariana; Freitas, Ana Isabel; Sousa, Ana Célia; Brehm, António; Reis, Roberto Palma Dos;Abstract Background: Genetic risk score can quantify individual’s predisposition to coronary artery disease; however, its usefulness as an independent risk predictor remains inconclusive. Objective: To evaluate the incremental predictive value of a genetic risk score to traditional risk factors associated with coronary disease. Methods: Thirty-three genetic variants previously associated with coronary disease were analyzed in a case-control population with 2,888 individuals. A multiplicative genetic risk score was calculated and then divided into quartiles, with the 1st quartile as the reference class. Coronary risk was determined by logistic regression analysis. Then, a second logistic regression was performed with traditional risk factors and the last quartile of the genetic risk score. Based on this model, two ROC curves were constructed with and without the genetic score and compared by the Delong test. Statistical significance was considered when p values were less than 0.05. Results: The last quartile of the multiplicative genetic risk score revealed a significant increase in coronary artery disease risk (OR = 2.588; 95% CI: 2.090-3.204; p < 0.0001). The ROC curve based on traditional risk factors estimated an AUC of 0.72, which increased to 0.74 when the genetic risk score was added, revealing a better fit of the model (p < 0.0001). Conclusions: In conclusion, a multilocus genetic risk score was associated with an increased risk for coronary disease in our population. The usual model of traditional risk factors can be improved by incorporating genetic data.
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Research data keyboard_double_arrow_right Dataset 2021figshare FCT | UIDB/00283/2020 (UIDB/00283/2020), FCT | UIDB/04004/2020 (UIDB/04004/2020), EC | LEPVORS (845479)Pfrengle, Saskia; Neukamm, Judith; Guellil, Meriam; Keller, Marcel; Molak, Martyna; Avanzi, Charlotte; Kushniarevich, Alena; Montes, Núria; Neumann, Gunnar U.; Reiter, Ella; Tukhbatova, Rezeda I.; Berezina, Nataliya Y.; Buzhilova, Alexandra P.; Korobov, Dmitry S.; Suppersberger Hamre, Stian; Matos, Vitor M. J.; Ferreira, Maria T.; González-Garrido, Laura; Wasterlain, Sofia N.; Lopes, Célia; Santos, Ana Luisa; Antunes-Ferreira, Nathalie; Duarte, Vitória; Silva, Ana Maria; Melo, Linda; Sarkic, Natasa; Saag, Lehti; Tambets, Kristiina; Busso, Philippe; Cole, Stewart T.; Avlasovich, Alexei; Roberts, Charlotte A.; Sheridan, Alison; Cessford, Craig; Robb, John; Krause, Johannes; Scheib, Christiana L.; Inskip, Sarah A.; Schuenemann, Verena J.;Additional file 3: Table S5. SNP distance matrix.
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Research data keyboard_double_arrow_right Dataset 2021figshare FCT | UIDB/00283/2020 (UIDB/00283/2020), FCT | UIDB/04004/2020 (UIDB/04004/2020), EC | LEPVORS (845479)Pfrengle, Saskia; Neukamm, Judith; Guellil, Meriam; Keller, Marcel; Molak, Martyna; Avanzi, Charlotte; Kushniarevich, Alena; Montes, Núria; Neumann, Gunnar U.; Reiter, Ella; Tukhbatova, Rezeda I.; Berezina, Nataliya Y.; Buzhilova, Alexandra P.; Korobov, Dmitry S.; Suppersberger Hamre, Stian; Matos, Vitor M. J.; Ferreira, Maria T.; González-Garrido, Laura; Wasterlain, Sofia N.; Lopes, Célia; Santos, Ana Luisa; Antunes-Ferreira, Nathalie; Duarte, Vitória; Silva, Ana Maria; Melo, Linda; Sarkic, Natasa; Saag, Lehti; Tambets, Kristiina; Busso, Philippe; Cole, Stewart T.; Avlasovich, Alexei; Roberts, Charlotte A.; Sheridan, Alison; Cessford, Craig; Robb, John; Krause, Johannes; Scheib, Christiana L.; Inskip, Sarah A.; Schuenemann, Verena J.;Additional file 2: Table S4. Result table of the SNP effect analysis.
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Research data keyboard_double_arrow_right Dataset 2020figshare WTRiaan F. Rifkin; Surendra Vikram; Jean-Baptiste Ramond; Rey-Iglesia, Alba; Brand, Tina B.; Porraz, Guillaume; Val, Aurore; Hall, Grant; Woodborne, Stephan; Bailly, Matthieu Le; Potgieter, Marnie; Underdown, Simon J.; Koopman, Jessica E.; Cowan, Don A.; Peer, Yves Van De; Willerslev, Eske; Hansen, Anders J.;Additional file 2: Table S1. Sequence reads for environmental- and subsistence-related taxa detected. Table S2. Information concerning 14C Accelerator Mass Spectrometry (AMS) dating. Table S3a. Processing protocol and results for isotope analyses. Table S3b. Results for isotope analyses (Merck standard). Table S3c. Results for isotope analyses (DL-Valine standard). Table S4. Abundance of bacterial taxonomic categories in the IM datasets. Table S5. Sequence read-length distribution for taxa identified in this study. Table S6. Significant KEGG pathways in the comparative IM datasets analysed. Table S7. Relative abundance of eighteen significant KEGG pathways in the IM cohorts. Table S8. Enrichment and depletion of KO metabolic gene categories in the comparative IM sample cohorts based on p-value (p=<0.05) designation. Table S9. Enrichment and depletion of KO metabolic gene categories in the comparative IM sample cohorts based on false discovery rate (FDR) corrected p-values (q=<0.05). Table S10. Enrichment and depletion of KO metabolic gene categories in the ancient and modern comparative IM sample cohort as calculated for the twenty-four authenticated ancient IM taxa. Table S11. Comparison of relative abundance of antibiotic resistance genes in the comparative IM cohorts. Table S12. Raw and filtered high-quality sequence read counts as related to the comparative IM datasets. Table S13. Information concerning the comparative NCBI genomes used during this study.
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Research data keyboard_double_arrow_right Dataset 2019The Royal Society EC | ArchSci2020 (676154), UKRI | Deciphering dog domestica... (NE/K003259/1), UKRI | Deciphering dog domestica... (NE/K005243/1)Ameen, Carly; Feuerborn, Tatiana R.; Brown, Sarah K.; Linderholm, Anna; Ardern Hulme-Beaman; Lebrasseur, Ophélie; Mikkel-Holger S. Sinding; Lounsberry, Zachary T.; Lin, Audrey T.; Appelt, Martin; Bachmann, Lutz; Betts, Matthew; Britton, Kate; Darwent, John; Dietz, Rune; Fredholm, Merete; Gopalakrishnan, Shyam; Goriunova, Olga I.; Grønnow, Bjarne; Haile, James; Hallsson, Jón Hallsteinn; Harrison, Ramona; Heide-Jørgensen, Mads Peter; Knecht, Rick; Losey, Robert J.; Masson-MacLean, Edouard; McGovern, Thomas H.; McManus-Fry, Ellen; Meldgaard, Morten; Midtdal, Åslaug; Moss, Madonna L.; Nikitin, Iurii G.; Nomokonova, Tatiana; Pálsdóttir, Albína Hulda; Perri, Angela; Popov, Aleksandr N.; Rankin, Lisa; Reuther, Joshua D.; Sablin, Mikhail; Schmidt, Anne Lisbeth; Shirar, Scott; Smiarowski, Konrad; Sonne, Christian; Stiner, Mary C.; Mitya Vasyukov; West, Catherine F.; Ween, Gro Birgit; Wennerberg, Sanne Eline; Wiig, Øystein; Woollett, James; Dalén, Love; Hansen, Anders J.; Gilbert, Tom; Sacks, Benjamin; Frantz, Laurent; Larson, Greger; Dobney, Keith; Christyann M. Darwent; Allowen Evin;Domestic dogs have been central to life in the North American Arctic for millennia. The ancestors of the Inuit were the first to introduce the widespread usage of dog sledge transportation technology to the Americas, but whether the Inuit adopted local Paleo-Inuit dogs or introduced a new dog population to the region remains unknown. To test these hypotheses, we generated mitochondrial DNA and geometric morphometric data of skull and dental elements from a total of 922 North American Arctic dogs and wolves spanning over 4500 years. Our analyses revealed that dogs from Inuit sites dating from 2000 BP possess morphological and genetic signatures that distinguish them from earlier Paleo-Inuit dogs, and identified a novel mitochondrial clade in eastern Siberia and Alaska. The genetic legacy of these Inuit dogs survives today in modern Arctic sledge dogs despite phenotypic differences between archaeological and modern Arctic dogs. Together, our data reveal that Inuit dogs derive from a secondary pre-contact migration of dogs distinct from Paleo-Inuit dogs, and most likely aided the Inuit expansion across the North American Arctic beginning around 1000 BP.
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Research data keyboard_double_arrow_right Dataset 2019The Royal Society UKRI | Animals, Lifeways and Lif... (AH/N504543/1), EC | WhereWolf (655732), EC | ArchSci2020 (676154)Ameen, Carly; Feuerborn, Tatiana R.; Brown, Sarah K.; Linderholm, Anna; Ardern Hulme-Beaman; Lebrasseur, Ophélie; Mikkel-Holger S. Sinding; Lounsberry, Zachary T.; Lin, Audrey T.; Appelt, Martin; Bachmann, Lutz; Betts, Matthew; Britton, Kate; Darwent, John; Dietz, Rune; Fredholm, Merete; Gopalakrishnan, Shyam; Goriunova, Olga I.; Grønnow, Bjarne; Haile, James; Hallsson, Jón Hallsteinn; Harrison, Ramona; Heide-Jørgensen, Mads Peter; Knecht, Rick; Losey, Robert J.; Masson-MacLean, Edouard; McGovern, Thomas H.; McManus-Fry, Ellen; Meldgaard, Morten; Midtdal, Åslaug; Moss, Madonna L.; Nikitin, Iurii G.; Nomokonova, Tatiana; Pálsdóttir, Albína Hulda; Perri, Angela; Popov, Aleksandr N.; Rankin, Lisa; Reuther, Joshua D.; Sablin, Mikhail; Schmidt, Anne Lisbeth; Shirar, Scott; Smiarowski, Konrad; Sonne, Christian; Stiner, Mary C.; Mitya Vasyukov; West, Catherine F.; Ween, Gro Birgit; Wennerberg, Sanne Eline; Wiig, Øystein; Woollett, James; Dalén, Love; Hansen, Anders J.; Gilbert, Tom; Sacks, Benjamin; Frantz, Laurent; Larson, Greger; Dobney, Keith; Christyann M. Darwent; Allowen Evin;Domestic dogs have been central to life in the North American Arctic for millennia. The ancestors of the Inuit were the first to introduce the widespread usage of dog sledge transportation technology to the Americas, but whether the Inuit adopted local Paleo-Inuit dogs or introduced a new dog population to the region remains unknown. To test these hypotheses, we generated mitochondrial DNA and geometric morphometric data of skull and dental elements from a total of 922 North American Arctic dogs and wolves spanning over 4500 years. Our analyses revealed that dogs from Inuit sites dating from 2000 BP possess morphological and genetic signatures that distinguish them from earlier Paleo-Inuit dogs, and identified a novel mitochondrial clade in eastern Siberia and Alaska. The genetic legacy of these Inuit dogs survives today in modern Arctic sledge dogs despite phenotypic differences between archaeological and modern Arctic dogs. Together, our data reveal that Inuit dogs derive from a secondary pre-contact migration of dogs distinct from Paleo-Inuit dogs, and most likely aided the Inuit expansion across the North American Arctic beginning around 1000 BP.
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Research data keyboard_double_arrow_right Dataset 2019The Royal Society UKRI | Animals, Lifeways and Lif... (AH/N504543/1), UKRI | Understanding Cultural Re... (AH/K006029/1), UKRI | Deciphering dog domestica... (NE/K005243/1)Ameen, Carly; Feuerborn, Tatiana R.; Brown, Sarah K.; Linderholm, Anna; Ardern Hulme-Beaman; Lebrasseur, Ophélie; Mikkel-Holger S. Sinding; Lounsberry, Zachary T.; Lin, Audrey T.; Appelt, Martin; Bachmann, Lutz; Betts, Matthew; Britton, Kate; Darwent, John; Dietz, Rune; Fredholm, Merete; Gopalakrishnan, Shyam; Goriunova, Olga I.; Grønnow, Bjarne; Haile, James; Hallsson, Jón Hallsteinn; Harrison, Ramona; Heide-Jørgensen, Mads Peter; Knecht, Rick; Losey, Robert J.; Masson-MacLean, Edouard; McGovern, Thomas H.; McManus-Fry, Ellen; Meldgaard, Morten; Midtdal, Åslaug; Moss, Madonna L.; Nikitin, Iurii G.; Nomokonova, Tatiana; Pálsdóttir, Albína Hulda; Perri, Angela; Popov, Aleksandr N.; Rankin, Lisa; Reuther, Joshua D.; Sablin, Mikhail; Schmidt, Anne Lisbeth; Shirar, Scott; Smiarowski, Konrad; Sonne, Christian; Stiner, Mary C.; Mitya Vasyukov; West, Catherine F.; Ween, Gro Birgit; Wennerberg, Sanne Eline; Wiig, Øystein; Woollett, James; Dalén, Love; Hansen, Anders J.; Gilbert, Tom; Sacks, Benjamin; Frantz, Laurent; Larson, Greger; Dobney, Keith; Christyann M. Darwent; Allowen Evin;Domestic dogs have been central to life in the North American Arctic for millennia. The ancestors of the Inuit were the first to introduce the widespread usage of dog sledge transportation technology to the Americas, but whether the Inuit adopted local Paleo-Inuit dogs or introduced a new dog population to the region remains unknown. To test these hypotheses, we generated mitochondrial DNA and geometric morphometric data of skull and dental elements from a total of 922 North American Arctic dogs and wolves spanning over 4500 years. Our analyses revealed that dogs from Inuit sites dating from 2000 BP possess morphological and genetic signatures that distinguish them from earlier Paleo-Inuit dogs, and identified a novel mitochondrial clade in eastern Siberia and Alaska. The genetic legacy of these Inuit dogs survives today in modern Arctic sledge dogs despite phenotypic differences between archaeological and modern Arctic dogs. Together, our data reveal that Inuit dogs derive from a secondary pre-contact migration of dogs distinct from Paleo-Inuit dogs, and most likely aided the Inuit expansion across the North American Arctic beginning around 1000 BP.
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Research data keyboard_double_arrow_right Dataset 2019The Royal Society UKRI | Animals, Lifeways and Lif... (AH/N504543/1), EC | ArchSci2020 (676154), UKRI | Deciphering dog domestica... (NE/K003259/1)Ameen, Carly; Feuerborn, Tatiana R.; Brown, Sarah K.; Linderholm, Anna; Ardern Hulme-Beaman; Lebrasseur, Ophélie; Mikkel-Holger S. Sinding; Lounsberry, Zachary T.; Lin, Audrey T.; Appelt, Martin; Bachmann, Lutz; Betts, Matthew; Britton, Kate; Darwent, John; Dietz, Rune; Fredholm, Merete; Gopalakrishnan, Shyam; Goriunova, Olga I.; Grønnow, Bjarne; Haile, James; Hallsson, Jón Hallsteinn; Harrison, Ramona; Heide-Jørgensen, Mads Peter; Knecht, Rick; Losey, Robert J.; Masson-MacLean, Edouard; McGovern, Thomas H.; McManus-Fry, Ellen; Meldgaard, Morten; Midtdal, Åslaug; Moss, Madonna L.; Nikitin, Iurii G.; Nomokonova, Tatiana; Pálsdóttir, Albína Hulda; Perri, Angela; Popov, Aleksandr N.; Rankin, Lisa; Reuther, Joshua D.; Sablin, Mikhail; Schmidt, Anne Lisbeth; Shirar, Scott; Smiarowski, Konrad; Sonne, Christian; Stiner, Mary C.; Mitya Vasyukov; West, Catherine F.; Ween, Gro Birgit; Wennerberg, Sanne Eline; Wiig, Øystein; Woollett, James; Dalén, Love; Hansen, Anders J.; Gilbert, Tom; Sacks, Benjamin; Frantz, Laurent; Larson, Greger; Dobney, Keith; Christyann M. Darwent; Allowen Evin;Domestic dogs have been central to life in the North American Arctic for millennia. The ancestors of the Inuit were the first to introduce the widespread usage of dog sledge transportation technology to the Americas, but whether the Inuit adopted local Paleo-Inuit dogs or introduced a new dog population to the region remains unknown. To test these hypotheses, we generated mitochondrial DNA and geometric morphometric data of skull and dental elements from a total of 922 North American Arctic dogs and wolves spanning over 4500 years. Our analyses revealed that dogs from Inuit sites dating from 2000 BP possess morphological and genetic signatures that distinguish them from earlier Paleo-Inuit dogs, and identified a novel mitochondrial clade in eastern Siberia and Alaska. The genetic legacy of these Inuit dogs survives today in modern Arctic sledge dogs despite phenotypic differences between archaeological and modern Arctic dogs. Together, our data reveal that Inuit dogs derive from a secondary pre-contact migration of dogs distinct from Paleo-Inuit dogs, and most likely aided the Inuit expansion across the North American Arctic beginning around 1000 BP.
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Research data keyboard_double_arrow_right Dataset 2019The Royal Society UKRI | Animals, Lifeways and Lif... (AH/N504543/1), EC | WhereWolf (655732), UKRI | Understanding Cultural Re... (AH/K006029/1)Ameen, Carly; Feuerborn, Tatiana R.; Brown, Sarah K.; Linderholm, Anna; Ardern Hulme-Beaman; Lebrasseur, Ophélie; Mikkel-Holger S. Sinding; Lounsberry, Zachary T.; Lin, Audrey T.; Appelt, Martin; Bachmann, Lutz; Betts, Matthew; Britton, Kate; Darwent, John; Dietz, Rune; Fredholm, Merete; Gopalakrishnan, Shyam; Goriunova, Olga I.; Grønnow, Bjarne; Haile, James; Hallsson, Jón Hallsteinn; Harrison, Ramona; Heide-Jørgensen, Mads Peter; Knecht, Rick; Losey, Robert J.; Masson-MacLean, Edouard; McGovern, Thomas H.; McManus-Fry, Ellen; Meldgaard, Morten; Midtdal, Åslaug; Moss, Madonna L.; Nikitin, Iurii G.; Nomokonova, Tatiana; Pálsdóttir, Albína Hulda; Perri, Angela; Popov, Aleksandr N.; Rankin, Lisa; Reuther, Joshua D.; Sablin, Mikhail; Schmidt, Anne Lisbeth; Shirar, Scott; Smiarowski, Konrad; Sonne, Christian; Stiner, Mary C.; Mitya Vasyukov; West, Catherine F.; Ween, Gro Birgit; Wennerberg, Sanne Eline; Wiig, Øystein; Woollett, James; Dalén, Love; Hansen, Anders J.; Gilbert, Tom; Sacks, Benjamin; Frantz, Laurent; Larson, Greger; Dobney, Keith; Christyann M. Darwent; Allowen Evin;Domestic dogs have been central to life in the North American Arctic for millennia. The ancestors of the Inuit were the first to introduce the widespread usage of dog sledge transportation technology to the Americas, but whether the Inuit adopted local Paleo-Inuit dogs or introduced a new dog population to the region remains unknown. To test these hypotheses, we generated mitochondrial DNA and geometric morphometric data of skull and dental elements from a total of 922 North American Arctic dogs and wolves spanning over 4500 years. Our analyses revealed that dogs from Inuit sites dating from 2000 BP possess morphological and genetic signatures that distinguish them from earlier Paleo-Inuit dogs, and identified a novel mitochondrial clade in eastern Siberia and Alaska. The genetic legacy of these Inuit dogs survives today in modern Arctic sledge dogs despite phenotypic differences between archaeological and modern Arctic dogs. Together, our data reveal that Inuit dogs derive from a secondary pre-contact migration of dogs distinct from Paleo-Inuit dogs, and most likely aided the Inuit expansion across the North American Arctic beginning around 1000 BP.
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Research data keyboard_double_arrow_right Dataset 2019The Royal Society UKRI | Animals, Lifeways and Lif... (AH/N504543/1), EC | WhereWolf (655732), NSF | Genetic Analysis of Indig... (1304810)Ameen, Carly; Feuerborn, Tatiana R.; Brown, Sarah K.; Linderholm, Anna; Ardern Hulme-Beaman; Lebrasseur, Ophélie; Mikkel-Holger S. Sinding; Lounsberry, Zachary T.; Lin, Audrey T.; Appelt, Martin; Bachmann, Lutz; Betts, Matthew; Britton, Kate; Darwent, John; Dietz, Rune; Fredholm, Merete; Gopalakrishnan, Shyam; Goriunova, Olga I.; Grønnow, Bjarne; Haile, James; Hallsson, Jón Hallsteinn; Harrison, Ramona; Heide-Jørgensen, Mads Peter; Knecht, Rick; Losey, Robert J.; Masson-MacLean, Edouard; McGovern, Thomas H.; McManus-Fry, Ellen; Meldgaard, Morten; Midtdal, Åslaug; Moss, Madonna L.; Nikitin, Iurii G.; Nomokonova, Tatiana; Pálsdóttir, Albína Hulda; Perri, Angela; Popov, Aleksandr N.; Rankin, Lisa; Reuther, Joshua D.; Sablin, Mikhail; Schmidt, Anne Lisbeth; Shirar, Scott; Smiarowski, Konrad; Sonne, Christian; Stiner, Mary C.; Mitya Vasyukov; West, Catherine F.; Ween, Gro Birgit; Wennerberg, Sanne Eline; Wiig, Øystein; Woollett, James; Dalén, Love; Hansen, Anders J.; Gilbert, Tom; Sacks, Benjamin; Frantz, Laurent; Larson, Greger; Dobney, Keith; Christyann M. Darwent; Allowen Evin;Domestic dogs have been central to life in the North American Arctic for millennia. The ancestors of the Inuit were the first to introduce the widespread usage of dog sledge transportation technology to the Americas, but whether the Inuit adopted local Paleo-Inuit dogs or introduced a new dog population to the region remains unknown. To test these hypotheses, we generated mitochondrial DNA and geometric morphometric data of skull and dental elements from a total of 922 North American Arctic dogs and wolves spanning over 4500 years. Our analyses revealed that dogs from Inuit sites dating from 2000 BP possess morphological and genetic signatures that distinguish them from earlier Paleo-Inuit dogs, and identified a novel mitochondrial clade in eastern Siberia and Alaska. The genetic legacy of these Inuit dogs survives today in modern Arctic sledge dogs despite phenotypic differences between archaeological and modern Arctic dogs. Together, our data reveal that Inuit dogs derive from a secondary pre-contact migration of dogs distinct from Paleo-Inuit dogs, and most likely aided the Inuit expansion across the North American Arctic beginning around 1000 BP.
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Research data keyboard_double_arrow_right Dataset 2018SciELO journals WTPereira, Andreia; Mendonça, Maria Isabel; Borges, Sofia; Freitas, Sónia; Henriques, Eva; Rodrigues, Mariana; Freitas, Ana Isabel; Sousa, Ana Célia; Brehm, António; Reis, Roberto Palma Dos;Abstract Background: Genetic risk score can quantify individual’s predisposition to coronary artery disease; however, its usefulness as an independent risk predictor remains inconclusive. Objective: To evaluate the incremental predictive value of a genetic risk score to traditional risk factors associated with coronary disease. Methods: Thirty-three genetic variants previously associated with coronary disease were analyzed in a case-control population with 2,888 individuals. A multiplicative genetic risk score was calculated and then divided into quartiles, with the 1st quartile as the reference class. Coronary risk was determined by logistic regression analysis. Then, a second logistic regression was performed with traditional risk factors and the last quartile of the genetic risk score. Based on this model, two ROC curves were constructed with and without the genetic score and compared by the Delong test. Statistical significance was considered when p values were less than 0.05. Results: The last quartile of the multiplicative genetic risk score revealed a significant increase in coronary artery disease risk (OR = 2.588; 95% CI: 2.090-3.204; p < 0.0001). The ROC curve based on traditional risk factors estimated an AUC of 0.72, which increased to 0.74 when the genetic risk score was added, revealing a better fit of the model (p < 0.0001). Conclusions: In conclusion, a multilocus genetic risk score was associated with an increased risk for coronary disease in our population. The usual model of traditional risk factors can be improved by incorporating genetic data.
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