Adv Sci (Weinh). 2026 Sep 16.doi: 10.1002/advs.77790.

Transposable Element Dynamics Drive the Genomic Evolution and Phenotypic Diversification of Allotetraploid Common Carp.

Shuimu Hu 1,2, Zhou Jiang 1,2, Lin Chen 1,2, Gowena Ling Yi Goh 1,2, Weijing Li 1,2, Qian He 1,2, Xintong Chen 1,2, Rui Li 1,2, Yuxuan Liu 1,2, Ning Li 1,2, Tao Zhou 1,2, Peng Xu 1,3,4

Affiliations

  • 1 State Key Laboratory of Mariculture Breeding, College of Ocean and Earth Sciences, Xiamen University, Xiamen, China.
  • 2 Fujian Key Laboratory of Genetics and Breeding of Marine Organisms, College of Ocean and Earth Sciences, Xiamen University, Xiamen, China.
  • 3 Key Laboratory of Exploration and Utilization of Aquatic Genetic Resources, College of Fisheries and Life Science, Ministry of Education, Shanghai Ocean University, Shanghai, China.
  • 4 Fujian Ocean Innovation Center, Xiamen, China.

Abstract

An important question in evolutionary biology is how polyploidization generates raw material for phenotypic diversification. Transposable elements (TEs) represent an underestimated source of genetic variation in eukaryotic genomes. By integrating 516 whole-genome resequencing datasets and 236 transcriptomes from common carp (Cyprinus carpio), a representative allotetraploid fish, we constructed the first population-scale landscape of TE insertions in teleosts. TE insertions are widespread in the carp genome and preferentially associated with stress-responsive genes, with DNA transposons as major contributors. Relaxed purifying selection and TE burst events coexist, generating abundant variation for subsequent subspecies differentiation. Compared with a closely related diploid species, carp exhibits more exonic TE insertions and shorter TE-gene distances, and multiple TE superfamilies expanded during tetraploidization. Genome-wide association analyses uncovered intragenic TE variants underlying domesticated traits missed by SNPs, including DNA transposon deletions associated with scale reduction and altered body shape. Notably, lighter-colored individuals harbor homozygous deletions of LTR and DNA transposons within mdfic2, whose knockout in zebrafish reduces pigmentation. Most trait-associated variants reflect lineage-specific loss of ancient TE insertions rather than recent transposition. Overall, these findings highlight the distinct role of TEs in polyploid genome evolution and phenotypic diversification, providing new insights into TE dynamics in vertebrates.

Keywords: Population genetics; Common carp; Transposable elements; Subspecies divergence; Allotetraploidization

https://doi.org/10.1002/advs.77790

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