渗入
生物
螺旋体
基因流
溯祖理论
基因组
基因座(遗传学)
进化生物学
谱系(遗传)
遗传学
系统发育树
基因
遗传变异
作者
Nathaniel B. Edelman,Paul B. Frandsen,Miriam Miyagi,Bernardo Clavijo,John W. Davey,Rebecca B. Dikow,Gonzalo Garcia Accinelli,Steven M. Van Belleghem,Nick Patterson,Daniel E. Neafsey,Richard Challis,Sujai Kumar,Gilson R. P. Moreira,Camilo Salazar,Mathieu Chouteau,Brian A. Counterman,Riccardo Papa,Mark Blaxter,Robert D. Reed,Kanchon K. Dasmahapatra
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2019-10-31
卷期号:366 (6465): 594-599
被引量:490
标识
DOI:10.1126/science.aaw2090
摘要
We used 20 de novo genome assemblies to probe the speciation history and architecture of gene flow in rapidly radiating Heliconius butterflies. Our tests to distinguish incomplete lineage sorting from introgression indicate that gene flow has obscured several ancient phylogenetic relationships in this group over large swathes of the genome. Introgressed loci are underrepresented in low-recombination and gene-rich regions, consistent with the purging of foreign alleles more tightly linked to incompatibility loci. Here, we identify a hitherto unknown inversion that traps a color pattern switch locus. We infer that this inversion was transferred between lineages by introgression and is convergent with a similar rearrangement in another part of the genus. These multiple de novo genome sequences enable improved understanding of the importance of introgression and selective processes in adaptive radiation.
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