Literature DB >> 28475225

The adaptive genomic landscape of beak morphology in Darwin's finches.

Lucinda P Lawson1, Kenneth Petren1.   

Abstract

Beak shape in Darwin's ground finches (Geospiza) is emblematic of natural selection and adaptive radiation, yet our understanding of the genetic basis of beak shape variation, and thus the genetic target of natural selection, is still evolving. Here we reveal the genomic architecture of beak shape variation using genomewide comparisons of four closely related and hybridizing species across 13 islands subject to parallel natural selection. Pairwise contrasts among species were used to identify a large number of genomic loci that are consistently related to species differences across a complex landscape. These loci are associated with hundreds of genes that have enriched GO categories significantly associated with development. One genomic region of particular interest is a section of Chromosome 1A with many candidate genes and increased linkage. The distinct, pointed beak shape of the cactus finch is linked to an excess of intermediate frequency alleles and increased heterozygosity in significant SNPs, but not across the rest of the genome. Alleles associated with pointier beaks among species were associated with pointier-beaked populations within each species, thus establishing a common basis for natural selection, species divergence and adaptive radiation. The adaptive genomic landscape for Darwin's finches mirrors theoretical expectations based on morphological variation. The implication that a large number of genes are actively maintained to facilitate beak variation across parallel populations with documented interspecies admixture challenges our understanding of evolutionary processes in the wild.
© 2017 John Wiley & Sons Ltd.

Keywords:  zzm321990Geospizazzm321990; Galápagos; population genomics; quantitative traits

Mesh:

Year:  2017        PMID: 28475225     DOI: 10.1111/mec.14166

Source DB:  PubMed          Journal:  Mol Ecol        ISSN: 0962-1083            Impact factor:   6.185


  11 in total

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7.  An empirical comparison of population genetic analyses using microsatellite and SNP data for a species of conservation concern.

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9.  Chromosome-Level Genome Assembly of the Common Chaffinch (Aves: Fringilla coelebs): A Valuable Resource for Evolutionary Biology.

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10.  Fur colour in the Arctic fox: genetic architecture and consequences for fitness.

Authors:  Lukas Tietgen; Ingerid J Hagen; Oddmund Kleven; Cecilia Di Bernardi; Thomas Kvalnes; Karin Norén; Malin Hasselgren; Johan Fredrik Wallén; Anders Angerbjörn; Arild Landa; Nina E Eide; Øystein Flagstad; Henrik Jensen
Journal:  Proc Biol Sci       Date:  2021-09-29       Impact factor: 5.349

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