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Bousquet, L.

Publications and source records attributed to Bousquet, L..

2 recordsLinked to original sources

A gapless telomere-to-telomere reference genome of Ostreococcus tauri RCC4221 with expanded annotation of medium-sized ncRNAs

Marine photosynthetic microbes contribute substantially to global primary production, yet many algal lineages still lack reference genomes with the continuity and annotation quality required for fine-scale structural, regulatory and comparative analyses. Ostreococcus tauri, one of the smallest known free-living photosynthetic eukaryotes, has been a model marine picoeukaryote for over two decades. Despite successive improvements to its historical reference genome, previous assemblies retained hundreds of gaps and incomplete genes, hampering high-resolution genomic analyses. Here, we present O. tauri RCC4221 genome version 2026, a telomere-to-telomere assembly of all 20 chromosomes spanning 13.34 Mb with no gaps. This assembly combines PacBio long-read sequencing, Illumina short-read polishing, correction of unresolved regions guided by independent Nanopore-based assemblies. The updated reference supports a curated annotation comprising 7,683 protein-coding genes, 48 tRNA genes, 3 rRNA operons, 116 medium-sized noncoding RNAs, one signal recognition particle RNA and 138 small nucleolar RNAs. It also improves gene-model integrity and recovers candidate coding loci absent from the 2014 reference. Structural analyses resolved the organization of the two atypical low-GC chromosome 2 and 19 that contain duplicated regions that were collapsed or misrepresented in previous assemblies. Finally, bisulfite sequencing and PacBio SMRT sequencing revealed a dual DNA methylation landscape, with CG-context cytosine methylation concentrated in gene bodies and N6-methyladenosine (m6A) enriched at the start codon. The updated O. tauri 2026 assembly provides a complete and curated reference resource for chromosome biology, comparative genomics, epigenomics and RNA biology in a model marine picoeukaryote.

genomics↗

Life Cycle and Morphogenetic Differentiation in Heteromorphic Cell Types of a Cosmopolitan Marine Microalga

O_LIGephyrocapsa huxleyi is a prevalent, bloom-forming phytoplankton species in the oceans. It exhibits a complex haplo-diplontic life cycle, featuring a diploid-calcified phase, a haploid phase, and a third decoupled phase produced during viral infection. Decoupled cells display a haploid-like phenotype, but are diploid. C_LIO_LIHere, we investigated the fate of decoupled cells during culture observations and we compared the transcriptome profiles and the cellular ultrastructure of the three cell types. C_LIO_LIWe found that decoupled cells can revert to the calcified form in the absence of viral pressure, revealing the transient nature of this cell type. Ultrastructural analyses showed distinct nuclear organisation with variations in chromatin volume. Transcriptomic analyses revealed gene expression patterns specific to each life phase. These included multiple regulatory functions in chromatin remodelling, broader epigenetic mechanisms and life cycling, which likely contributed to cell differentiation. Finally, the exploration of available host-virus transcriptomes supports life cycle transition during viral infection. C_LIO_LIThis study provides cellular and molecular foundations for nuclear remodelling and cell differentiation in coccolithophores and the identification of gene markers for studying coccolithophore life cycles in natural populations. C_LI

plant biology↗