Allele-specific methylation of <i>MRP3</i> drives mating type determination in a marine diatom.

Ruggiero, Antonella; Manfellotto, Francesco; Mager, Svenja; di Costanzo, Federica; Gerber, Tobias; Broccoli, Andrea; Di Tuccio, Viviana; Nishimura, Tomohiro et al. · Sci Adv · 2026

basic_science · Level V

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Abstract

Sex determination mechanisms exhibit remarkable diversity across eukaryotic lineages. In the pennate diatom <i>Pseudo-nitzschia multistriata</i>, sex is determined by <i>MRP3</i>, a gene with unknown function, which is monoallelically expressed in sexually competent mating type plus (MT+) cells and silenced in MT- cells. Here, we describe an allelic-specific methylation pattern at the sex locus, with a hypomethylated allele specific to the MT+ which is transcriptionally active, while the other hypermethylated <i>MRP3</i> alleles are transcriptionally silent. In addition, the genome-wide methylation landscape remains stable throughout the life cycle. Treatment with a methylation inhibitor leads to <i>MRP3</i> activation and partial sex reversal, suggesting an active role of DNA methylation in the sex determination mechanism. Long-read sequencing improved the MT-determining region resolution, highlighting a gene-poor, repeat-rich area that likely represents a primordial MT-determining locus. Our results provide insights into the mechanisms of sex determination and suggest that DNA methylation in diatoms has a more complex role than silencing repetitive regions.

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