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Rapid centromere turnover and the adaptive radiation of lemurs.

Journal articles  - Journal Article
Trivedi, M; Gianfrate, F; de Gennaro, L; Ayllon, M; Munson, KM; Hoekzema, K; Yoo, D; Ehmke, EE; Yoder, AD; Chang, S; Lalgudi, C; Krasnow, M ...
Published in: bioRxiv
May 19, 2026

Centromeres represent essential chromosomal structures required for faithful chromosome segregation during cell division but are paradoxically hypermutable, leading to centromere drive and reproductive isolation in closely related species. Using long-read sequencing, we generate nearly complete genomes (2.1-2.5 Gbp) from eight lemur species and characterize the sequence, epigenetic and cytogenetic structure of 223 strepsirrhini centromeres providing an alternative primate perspective of centromere evolution. No lemur centromere consists of α-satellite DNA that typifies the haplorhine lineage; instead, each species evolved its own distinct higher-order centromeric repeat sequence, varying substantially in both monomer length (ranging from 41-548 bp) and primary sequence composition (GC percentages 28.7-67.9%) including centromere cooption of telomeric repeats in brown lemurs. Most centromeres show characteristic hypomethylation dip regions (110-300 kbp) as candidates for kinetochore attachment. The centromere sequence motif shows no apparent sequence homology among lemur genera, even for species separated by less than 15 million years (Lemur and Eulemur). We estimate a >6-fold increased rate in primary centromeric motif turnover in strepsirrhines when compared to haplorhines and this occurred in conjunction with positive selection of the CENP-B protein in lemur lineages. We propose that lemur radiation and centromere diversification are linked, whereby accelerated motif turnover provides a stasipatric barrier contributing to rapid chromosomal evolution.

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Published In

bioRxiv

DOI

EISSN

2692-8205

Publication Date

May 19, 2026

Location

United States
 

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Trivedi, M., Gianfrate, F., de Gennaro, L., Ayllon, M., Munson, K. M., Hoekzema, K., … Eichler, E. E. (2026). Rapid centromere turnover and the adaptive radiation of lemurs. BioRxiv. https://doi.org/10.64898/2026.05.16.725662
Trivedi, Mihir, Francesca Gianfrate, Luciana de Gennaro, Marcelo Ayllon, Katherine M. Munson, Kendra Hoekzema, DongAhn Yoo, et al. “Rapid centromere turnover and the adaptive radiation of lemurs.BioRxiv, May 19, 2026. https://doi.org/10.64898/2026.05.16.725662.
Trivedi M, Gianfrate F, de Gennaro L, Ayllon M, Munson KM, Hoekzema K, et al. Rapid centromere turnover and the adaptive radiation of lemurs. bioRxiv. 2026 May 19;
Trivedi, Mihir, et al. “Rapid centromere turnover and the adaptive radiation of lemurs.BioRxiv, May 2026. Pubmed, doi:10.64898/2026.05.16.725662.
Trivedi M, Gianfrate F, de Gennaro L, Ayllon M, Munson KM, Hoekzema K, Yoo D, Ehmke EE, Yoder AD, Chang S, Lalgudi C, Krasnow M, Ventura M, Eichler EE. Rapid centromere turnover and the adaptive radiation of lemurs. bioRxiv. 2026 May 19;

Published In

bioRxiv

DOI

EISSN

2692-8205

Publication Date

May 19, 2026

Location

United States