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Four millennia of Iberian biomolecular prehistory illustrate the impact of prehistoric migrations at the far end of Eurasia.

Proc. Natl. Acad. Sci. U.S.A.. 2018; 
ValdioseraCristina,GüntherTorsten,Vera-RodríguezJuan Carlos,UreñaIrene,IriarteEneko,Rodríguez-VarelaRicardo,SimõesLuciana G,Martínez-SánchezRafael M,SvenssonEmma M,MalmströmHelena,RodríguezLaura,Bermúdez de CastroJosé-María,CarbonellEudald,AldayAlfonso,Hernández VeraJosé Antonio,GötherströmAnders,CarreteroJosé-Miguel,ArsuagaJuan Luis,SmithColin I,JakobssonMat
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Bacterial Expression System using T7 and SP6 bacterial primer pairs to amplify target DNA inserted into the E. coli using 30 cycles in the thermocycler based on the Genscript Green Taq protocol. These PCR reactions … " https://scholarworks.gvsu.edu/cgi/viewcontent.cgi?article=1736&context=theses Get A Quote

摘要

Population genomic studies of ancient human remains have shown how modern-day European population structure has been shaped by a number of prehistoric migrations. The Neolithization of Europe has been associated with large-scale migrations from Anatolia, which was followed by migrations of herders from the Pontic steppe at the onset of the Bronze Age. Southwestern Europe was one of the last parts of the continent reached by these migrations, and modern-day populations from this region show intriguing similarities to the initial Neolithic migrants. Partly due to climatic conditions that are unfavorable for DNA preservation, regional studies on the Mediterranean remain challenging. Here, we present genome... More

关键词

Iberia,archaeogenomics,diversity,migrations,palaeo