Literature DB >> 32555579

VolcanoFinder: Genomic scans for adaptive introgression.

Derek Setter1,2,3, Sylvain Mousset1, Xiaoheng Cheng4, Rasmus Nielsen5, Michael DeGiorgio6, Joachim Hermisson1,2,7.   

Abstract

Recent research shows that introgression between closely-related species is an important source of adaptive alleles for a wide range of taxa. Typically, detection of adaptive introgression from genomic data relies on comparative analyses that require sequence data from both the recipient and the donor species. However, in many cases, the donor is unknown or the data is not currently available. Here, we introduce a genome-scan method-VolcanoFinder-to detect recent events of adaptive introgression using polymorphism data from the recipient species only. VolcanoFinder detects adaptive introgression sweeps from the pattern of excess intermediate-frequency polymorphism they produce in the flanking region of the genome, a pattern which appears as a volcano-shape in pairwise genetic diversity. Using coalescent theory, we derive analytical predictions for these patterns. Based on these results, we develop a composite-likelihood test to detect signatures of adaptive introgression relative to the genomic background. Simulation results show that VolcanoFinder has high statistical power to detect these signatures, even for older sweeps and for soft sweeps initiated by multiple migrant haplotypes. Finally, we implement VolcanoFinder to detect archaic introgression in European and sub-Saharan African human populations, and uncovered interesting candidates in both populations, such as TSHR in Europeans and TCHH-RPTN in Africans. We discuss their biological implications and provide guidelines for identifying and circumventing artifactual signals during empirical applications of VolcanoFinder.

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Year:  2020        PMID: 32555579      PMCID: PMC7326285          DOI: 10.1371/journal.pgen.1008867

Source DB:  PubMed          Journal:  PLoS Genet        ISSN: 1553-7390            Impact factor:   6.020


  139 in total

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  16 in total

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5.  Inferring Adaptive Introgression Using Hidden Markov Models.

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7.  Demographic History and Natural Selection Shape Patterns of Deleterious Mutation Load and Barriers to Introgression across Populus Genome.

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9.  The impact of global selection on local adaptation and reproductive isolation.

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Review 10.  Our Tangled Family Tree: New Genomic Methods Offer Insight into the Legacy of Archaic Admixture.

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