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Forest, T.

Publications and source records attributed to Forest, T..

2 recordsLinked to original sources

Chromosome-level genome assembly of the European Green woodpecker Picus viridis

The European Green Woodpecker, Picus viridis, is a widely distributed species found in the Western Palearctic region. Here we assembled a highly contiguous genome assembly for this species using a combination of short and long reads sequencing and scaffolded with chromatin conformation capture (Hi-C). The final genome assembly was 1.28 Gb and features a scaffold N50 of 37Mb and a scaffold L50 of 39.165 Mb. The assembly incorporates 89.4% of the genes identified in birds in OrthoDB. Gene and repetitive content annotation on the assembly detected 15,805 genes and a [~]30.1% occurrence of repetitive elements, respectively. Analysis of synteny demonstrates the fragmented nature of the Picus viridis genome when compared to the chicken (Gallus gallus). The assembly and annotations produced in this study will certainly help for further research into the genomics of P. viridis and the comparative evolution of woodpeckers.

genomics↗

The Crown Pearl V2: an improved genome assembly of the European freshwater pearl mussel Margaritifera margaritifera (Linnaeus, 1758)

Contiguous assemblies are fundamental to decipher the exact composition of extant genomes. In molluscs, this task is considerably challenging owing to their large size, heterozygosity, and widespread content of repetitive content. Consequently, the usage of long-read sequencing technologies is fundamental to achieve high contiguity and quality. The first genome assembly of Margaritifera margaritifera (Linnaeus, 1758) (Mollusca: Bivalvia: Unionida), a culturally relevant, widespread, and highly threatened species of freshwater mussels, has been produced recently. However, the current genome is highly fragmented since the assembly relied solely on short-read approaches. To overcome this caveat, here, a new improved reference genome assembly is produced using a combination of PacBio CLR long reads and Illumina paired-end short reads. This novel genome assembly is 2.4 Gb long, organized into 1,700 scaffolds with a contig N50 length of 3.4Mbp. The ab initio gene prediction resulted in a total of 48,314 protein-coding genes. This new assembly represents a substantial improvement and is an essential resource for studying this species unique biological and evolutionary features that ultimately will help to promote its conservation.

genomics↗