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Ferrada-Fuentes, S.

Publications and source records attributed to Ferrada-Fuentes, S..

2 recordsLinked to original sources

Near telomere-to-telomere genome assembly of the Chilean jack mackerel Trachurus murphyi

The Chilean jack mackerel (Trachurus murphyi) is an economically important pelagic fish widely distributed across the South Pacific Ocean. Due to intense fishing pressure and the lack of high-quality genomic resources, the development of sustainable fisheries management strategies has been hindered. Here, we present a near telomere-to-telomere genome assembly of T. murphyi using PacBio and Hi-C sequencing data. The assembled genome spans 818.31 Mb, with a contig N50 length of 24.89 Mb and a scaffold N50 length of 34.34 Mb. The assembly is anchored on 24 pseudo-chromosomes, covering 95.80% of the genome. BUSCO analysis indicates a high level of completeness at 99.0%, and telomeres and centromeres were identified on pseudo-chromosomes. Repetitive sequences account for 24.24% of the total genome, and 47,734 protein-coding genes were annotated, 90.98% of them with assigned function. Comparative genomics analyses reveal strong synteny with its congeneric Trachurus species. This high-quality genome assembly serves as a valuable resource for studying the genetic diversity and population structure of the Chilean jack mackerel and provides a solid foundation for future management and conservation efforts.

genomics↗

Temporal and spatial population genetic variation in Chilean jack mackerel, Trachurus murphyi

The Trachurus murphyi have been studied for population genetic structure for decades, identifying only one large population across the South Pacific Ocean. Although all these studies have extensively examined the spatial genetic pattern, there remains a gap in understanding the potential role of temporality. Our study aims to elucidate temporal and spatial genetic patterns in T. murphyi populations in the South Pacific Ocean, examining genetic composition across seasons, including feeding and spawning seasons, where the latter was not previously investigated. Using 10 microsatellite loci, our study confirms a consistent and stable population genetic pattern in T. murphyi across its geographic distribution, observed over multiple years and seasons. Furthermore, we identify potential genetic markers for monitoring variability in the species.

genetics↗