Whole genome sequencing of 76 Mexican Indigenous reveals recent selection signatures linked to pathogens and diet adaptation.
Miron-Toruno, M. F.; Morett, E.; Aguilar-Ordonez, I.; Reynolds, A. W.
Show abstract
Whole genome scans for natural selection signatures across Mexican Indigenous (MI) Populations remain underrepresented in the literature. Here, we conducted the first comparative analysis of genetic adaptation in MI populations using whole genome sequencing (WGS) data from 76 individuals representing 27 different ethnic groups in Mexico. We divided the cohort into Northern, Central, and Southern populations and identified signals of natural selection within and across populations. We find evidence of adaptation to pathogenic environments in all our populations, including significant signatures in the Duffy blood group gene in Central MI populations. Despite each region exhibiting unique local adaptation profiles, selection signatures on ARHGAP15, VGLL4, LINGO2, SYNDIG1, and TFAP2B were common to all populations. Our results also suggest that selection signatures falling within enhancers or promoters are usually connected to non-coding features, with notable exceptions like ARHGAP15 and GTDC1. This paper provides new evidence on the selection landscape of Mexican Indigenous Populations and lays the foundation for additional work on Mexican phenotypic characterization. Significance statementPrevious research has identified distinct patterns of genomic adaptation across the different regions of Mexico, highlighting evidence of natural selection within metabolic and immune-related genes. However, the characterization of the Mexican selection landscape from a whole-genome perspective remains unexplored. Here, we conducted the first whole-genome scan for natural selection in 76 Mexican Indigenous individuals from 27 different ethnic groups divided into Northern, Central, and Southern populations. Our findings revealed distinct local adaptation profiles for each Mexican region, with different evidence of adaptation to pathogenic environments across these groups. In contrast, all populations had common selection signatures on ARHGAP15, VGLL4, LINGO2, SYNDIG1, and TFAP2B. This paper provides new evidence on the genetic basis of adaptation of Indigenous groups in Mexico. Moreover, it provides a foundation for additional work on Mexican phenotypic characterization.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Hierarchical transcriptional control regulates Plasmodium falciparum sexual differentiation 92%
- Similarity and diversity of genetic architecture for complex traits between East Asian and European populations 91%
- Common variation in a long non-coding RNA gene modulates variation of circulating TGF- β 2 levels in metastatic colorectal cancer patients (Alliance) 91%
Similar papers in this journal
- Genomic profiling of climate adaptation in Aedes aegypti along an altitudinal gradient in Nepal indicates non-gradual expansion of the disease vector 92%
- Extensive transgressive gene expression in testis but not ovary in the homoploid hybrid Italian sparrow 91%
- Whole-genome resequencing reveals the population structure, genomic diversity, and demographic history of American chestnut (Castanea dentata) 91%
Similar papers in this journal
- Poking COVID-19: insights on genomic constraints among immune-related genes between Qatari and Italian populations 93%
- Characterization of the common genetic variation in the Spanish population of Navarre 92%
- Exploring the impact of mitonuclear discordance on disease in Latin American admixed populations 91%
Similar papers in this journal
- Evolutionarily conserved non-protein-coding regions in the chicken genome harbor functionally important variation 92%
- Exploring the genetic diversity of the Japanese Population: Insights from a Large-Scale Whole Genome Sequencing Analysis 92%
- Evaluation of Bayesian Linear Regression Models for Gene Set Prioritization in Complex Diseases 92%
Similar papers in this journal
- Integrated environmental and genomic analysis reveals the drivers of local adaptation in African indigenous chickens 95%
- Genomic comparisons shed light on the adaptive basis of brain size plasticity and chromosomal instability in the Eurasian common shrew 93%
- Nested admixture during and after the Trans-Atlantic Slave Trade on the island of Sao Tome 91%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.