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Biology subjects

Horton, E. R.

Publications and source records attributed to Horton, E. R..

2 recordsLinked to original sources

Holotype genome of the lesula provides insights into demography and evolution of a threatened primate lineage

The rapid development of genome sequencing techniques in recent decades has revolutionized the field of evolutionary biology, facilitating the study of adaptation and speciation at the genome level. Genomic data has also become a cornerstone in conservation management, allowing inferences of population demography and genetic diversity. Here, we sequenced the genome of the holotype specimen of the elusive lesula (Cercopithecus lomamiensis), a recently described member of the guenons (tribe Cercopithecini) endemic to the Democratic Republic of the Congo. Using published and novel genomic data, we explore the evolutionary and demographic history of C. lomamiensis and its sister species C. hamlyni, the only two members of the hamlyni species group. We estimate that the two species split ca. 3-4 million years ago, and find that they both show high genetic diversity despite being listed as vulnerable on the IUCN Red List. We identify signatures of positive selection in the hamlyni group in genes involved in, e.g., pelage coloration and immune functions, as well as skeletal morphology and locomotor behavior, potentially related to their terrestrial lifestyle which stands out among the otherwise arboreal Cercopithecus genus. We specifically explored whether introgression from more distantly related terrestrial guenons was involved in the evolution of terrestriality in the hamlyni group. However, molecular convergence with other terrestrial species was low, suggesting that putative terrestrial adaptations occurred largely independently. By sequencing the C. lomamiensis genome, this study provides insights into the demography and evolutionary history in a threatened primate lineage, with relevance to conservation management.

evolutionary biology↗

Breaking the rule: An exceptional Y chromosome introgression between deeply divergent primate species

Hybridization between distinct lineages is widespread in nature, with important implications for adaptation and speciation. If hybrids are fertile, alleles can introgress across species boundaries. Hybrid fitness is often sex dependent, with heterogametic hybrids showing lower fitness than homogametic individuals, a phenomenon known as Haldanes rule. Consequently, loci inherited strictly through the heterogametic sex rarely introgress. We focus on the Y-chromosomal history of guenons (tribe Cercopithecini), a group of African primates that hybridized extensively throughout their evolutionary history. Although our inferences suggest that Haldanes rule is generally in place, we uncover a remarkable Y chromosome introgression event from Cercopithecus mitis into C. denti, which occurred ca. six million years after their initial divergence. Only a weak signal of autosomal gene flow is present, suggesting that the introgressing Y chromosome reached fixation in C. denti from a very low initial frequency. We use simulations to explore the evolutionary mechanisms at play, and find that selection is needed to achieve fixation of the novel Y chromosome. We identify a number of fixed protein differences between the introgressed and ancestral Y, with meiotic drive being an alternative mechanism to adaptive introgression. Our results show that the ability to produce viable and fertile heterogametic hybrids persisted for six million years in guenons, providing a remarkable exception to Haldanes rule.

evolutionary biology↗