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1.
Mol Biol Evol ; 39(10)2022 10 07.
Artículo en Inglés | MEDLINE | ID: mdl-36173804

RESUMEN

The Sahel/Savannah belt harbors diverse populations with different demographic histories and different subsistence patterns. However, populations from this large African region are notably under-represented in genomic research. To investigate the population structure and adaptation history of populations from the Sahel/Savannah space, we generated dense genome-wide genotype data of 327 individuals-comprising 14 ethnolinguistic groups, including 10 previously unsampled populations. Our results highlight fine-scale population structure and complex patterns of admixture, particularly in Fulani groups and Arabic-speaking populations. Among all studied Sahelian populations, only the Rashaayda Arabic-speaking population from eastern Sudan shows a lack of gene flow from African groups, which is consistent with the short history of this population in the African continent. They are recent migrants from Saudi Arabia with evidence of strong genetic isolation during the last few generations and a strong demographic bottleneck. This population also presents a strong selection signal in a genomic region around the CNR1 gene associated with substance dependence and chronic stress. In Western Sahelian populations, signatures of selection were detected in several other genetic regions, including pathways associated with lactase persistence, immune response, and malaria resistance. Taken together, these findings refine our current knowledge of genetic diversity, population structure, migration, admixture and adaptation of human populations in the Sahel/Savannah belt and contribute to our understanding of human history and health.


Asunto(s)
Flujo Génico , Genética de Población , Humanos , Población Negra , Etnicidad/genética , Lactasa/genética , Haplotipos
2.
Genes (Basel) ; 13(3)2022 03 17.
Artículo en Inglés | MEDLINE | ID: mdl-35328086

RESUMEN

African history has been significantly influenced by the Sahara, which has represented a barrier for migrations of all living beings, including humans. Major exceptions were the gene flow events that took place between North African and sub-Saharan populations during the so-called African Humid Periods, especially in the Early Holocene (11.5 to 5.5 thousand years ago), and more recently in connection with trans-Saharan commercial routes. In this study, we describe mitochondrial DNA (mtDNA) diversity of human populations from both sides of the Sahara Desert, i.e., both from North Africa and the Sahel/Savannah belt. The final dataset of 7213 mtDNA sequences from 134 African populations encompasses 470 newly collected and 6743 previously published samples, which were analyzed using descriptive methods and Bayesian statistics. We completely sequenced 26 mtDNAs from sub-Saharan samples belonging to the Eurasian haplogroup N1. Analyses of these N1 mitogenomes revealed their possible routes to the Sahel, mostly via Bab el-Mandab. Our results indicate that maternal gene flow must have been important in this circum-Saharan space, not only within North Africa and the Sahel/Savannah belt but also between these two regions.


Asunto(s)
Población Negra , ADN Mitocondrial , África del Norte , Teorema de Bayes , ADN Mitocondrial/genética , Flujo Génico , Humanos
3.
Hum Biol ; 89(4): 281-302, 2017 10.
Artículo en Inglés | MEDLINE | ID: mdl-30047317

RESUMEN

The objective of this study was to provide deeper knowledge of the maternal genetic structure and demographic history of the human populations of the Sahel/Savannah belt, the extensive region lying between the Sahara and tropical rainforests, spanning from the Atlantic Ocean to the Red Sea coast. The study aimed to confirm or disconfirm archaeological and linguistic data indicating that the region's populations underwent diversification as a result of the spread of agropastoral food-producing subsistence lifestyles, over time dividing the region into separate areas of nomadic pastoralism, on the one hand, and sedentary farming, on the other. To perform both descriptive and coalescence analyses from the Sahel/Savannah belt's entire region, including western and eastern rather than just central populations studied previously, we generated a new mitochondrial DNA (mtDNA) data set not only having almost 2,000 samples (875 of which were newly collected) but also encompassing whole mtDNA D-loop segment rather than only the previously studied hypervariable segment 1. While comparing our analyses with previous results from the Lake Chad Basin (central Sahel/Savannah Belt), we found similar intrapopulation diversity measures (i.e., lower values in pastoralists than in farmers). However, the new data set pointed to significant differences in mating strategies between western and eastern pastoralists: our results suggest higher gene flow between the Arabic pastoralists and neighboring farmers in the eastern part than between the Fulani pastoralists and their sedentary neighbors in the western part of the Sahel/Savannah belt. The findings are discussed in light of archaeological and linguistic data, allowing us to postulate that the genetic differentiation of Fulani pastoralists from the common western African agropastoral gene pool occurred at around the same time as the arrival of the Arabic pastoralists to eastern Africa. However, it seems that while the process of divergence of the Fulani pastoralists in the west was accompanied by a loss of Fulani females to other populations, the Arab pastoralists' immigration to the Sahel/Savannah belt conversely resulted in some gain of local females into this Arab population.


Asunto(s)
Agricultura/tendencias , Arqueología/métodos , Población Negra/genética , ADN Mitocondrial/genética , África del Norte/epidemiología , Árabes/genética , Población Negra/historia , Emigración e Inmigración , Femenino , Flujo Génico/genética , Estructuras Genéticas , Genética de Población , Historia Antigua , Historia Medieval , Humanos , Lenguaje , Polimorfismo de Nucleótido Simple/genética , Migrantes
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