Holocentromeres can consist of merely a few megabase-sized satellite arrays

Author:

Kuo Yi-TzuORCID,Câmara Amanda Souza,Schubert VeitORCID,Neumann PavelORCID,Macas JiříORCID,Melzer Michael,Chen Jianyong,Fuchs JörgORCID,Abel Simone,Klocke EvelynORCID,Huettel BrunoORCID,Himmelbach Axel,Demidov Dmitri,Dunemann FrankORCID,Mascher MartinORCID,Ishii TakayoshiORCID,Marques AndréORCID,Houben AndreasORCID

Abstract

AbstractThe centromere is the chromosome region where microtubules attach during cell division. In contrast to monocentric chromosomes with one centromere, holocentric species usually distribute hundreds of centromere units along the entire chromatid. We assembled the chromosome-scale reference genome and analyzed the holocentromere and (epi)genome organization of the lilioid Chionographis japonica. Remarkably, each of its holocentric chromatids consists of only 7 to 11 evenly spaced megabase-sized centromere-specific histone H3-positive units. These units contain satellite arrays of 23 and 28 bp-long monomers capable of forming palindromic structures. Like monocentric species, C. japonica forms clustered centromeres in chromocenters at interphase. In addition, the large-scale eu- and heterochromatin arrangement differs between C. japonica and other known holocentric species. Finally, using polymer simulations, we model the formation of prometaphase line-like holocentromeres from interphase centromere clusters. Our findings broaden the knowledge about centromere diversity, showing that holocentricity is not restricted to species with numerous and small centromere units.

Funder

Deutsche Forschungsgemeinschaft

Ministry of Science and Technology, Taiwan

China Scholarship Council

Max-Planck-Gesellschaft

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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