4.7 Article

A high-resolution map of small-scale inversions in the gibbon genome

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GENOME RESEARCH
卷 32, 期 10, 页码 1941-1951

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COLD SPRING HARBOR LAB PRESS, PUBLICATIONS DEPT
DOI: 10.1101/gr.276960.122

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  1. Fondi di Ateneo, University of Bari grant [CUP H92F17000190005]

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This study provides a comprehensive analysis of the southern white-cheeked gibbon genome, revealing a large number of small-scale inversions and suggesting their involvement in the rapid evolution and high diversity of gibbons. The study also identifies assembly errors in the current reference genome and lists candidate genes potentially involved in gibbon diversification and speciation.
Gibbons are the most speciose family of living apes, characterized by a diverse chromosome number and rapid rate of large-scale rearrangements. Here we performed single-cell template strand sequencing (Strand-seq), molecular cytogenetics, and deep in silico analysis of a southern white-cheeked gibbon genome, providing the first comprehensive map of 238 previously hidden small-scale inversions. We determined that more than half are gibbon specific, at least fivefold higher than shown for other primate lineage-specific inversions, with a significantly high number of small heterozygous inversions, suggesting that accelerated evolution of inversions may have played a role in the high sympatric diversity of gibbons. Although the precise mechanisms underlying these inversions are not yet understood, it is clear that segmental duplication-mediated NAHR only accounts for a small fraction of events. Several genomic features, including gene density and repeat (e.g., LINE-1) content, might render these regions more break-prone and susceptible to inversion formation. In the attempt to characterize interspecific variation between southern and northern white-cheeked gibbons, we identify several large assembly errors in the current GGSC Nleu3.0/nomLeu3 reference genome comprising more than 49 megabases of DNA. Finally, we provide a list of 182 candidate genes potentially involved in gibbon diversification and speciation.

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