Community-wide genome sequencing reveals 30 years of Darwin's finch evolution.

Enbody, Erik D; Sendell-Price, Ashley T; Sprehn, C Grace; Rubin, Carl-Johan; Visscher, Peter M; Grant, B Rosemary; Grant, Peter R; Andersson, Leif · Science · 2023

basic_science · Level V

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Abstract

A fundamental goal in evolutionary biology is to understand the genetic architecture of adaptive traits. Using whole-genome data of 3955 of Darwin's finches on the Galápagos Island of Daphne Major, we identified six loci of large effect that explain 45% of the variation in the highly heritable beak size of <i>Geospiza fortis,</i> a key ecological trait. The major locus is a supergene comprising four genes. Abrupt changes in allele frequencies at the loci accompanied a strong change in beak size caused by natural selection during a drought. A gradual change in <i>Geospiza scandens</i> occurred across 30 years as a result of introgressive hybridization with <i>G. fortis</i>. This study shows how a few loci with large effect on a fitness-related trait contribute to the genetic potential for rapid adaptive radiation.

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