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Cheung, L. H. T.

Publications and source records attributed to Cheung, L. H. T..

2 recordsLinked to original sources

Chromosome-level assembly and annotation of the grey reef shark (Carcharhinus amblyrhynchos) genome

To date only four of nine shark orders have nuclear reference genomes, despite next-generation sequencing advances. Particularly for threatened shark species, there is a lack of reliable genomes which are crucial in facilitating research and conservation applications. We assembled the first nuclear reference genome of the endangered grey reef shark (Carcharhinus amblyrhynchos) using long-read PacBio HiFi and Omni-C sequencing to reach chromosome-level contiguity (36 pseudo chromosomes; 2.9 Gbp) and high completeness (94% complete BUSCOs). BRAKER3 annotated 16,522 protein-coding genes after masking repetitive elements which accounted for 59% of the genome. We identified potential X and Y sex chromosomes on pseudo chromosomes 36 and 57, respectively. The quality and completeness of the draft genome of C. amblyrhynchos suggest that it has the potential to facilitate comprehensive comparative genomics, enabling researchers to investigate genetic variations and adaptations specific to this population and will help advance conservation genetic applications. Significance StatementStemming from an ancient vertebrate lineage, sharks present an interesting evolutionary study system. A third of shark species face extinction, yet critical genomic resources necessary for research and conservation remain scarce. To address this gap, we assembled and annotated the first chromosome-level nuclear reference genome of the threatened grey reef shark (Carcharhinus amblyrhynchos) at high completeness. This genome will help advance studies in evolution, phylogenetics, adaptation, and conservation, offering insights not only for this species but for wider elasmobranch and vertebrate research.

genomics↗

Genomes of two indigenous clams Anomalocardia flexuosa (Linnaeus, 1767) and Meretrix petechialis (Lamarck, 1818)

Clam digging has a long history in Hong Kong, but unregulated clam digging activities depletes clam populations and threatens the ecosystem. Population genomics is useful to unravel the connectivity of clams at different geographical locations and to provide necessary conservation measures; and yet, only limited number of clams in Hong Kong have genomic resources. Here, we present chromosomal-level genome assemblies for two clams commonly found in Hong Kong, Anomalocardia flexuosa and Meretrix petechialis, using a combination of PacBio HiFi and Omni-C reads. We assembled each genome ([~]1.04-1.09 Gb) into 19 pseudochromosomes with high sequence continuity (scaffold N50 = 58.5 Mb and 53.5 Mb) and high completeness (BUSCO scores 94.4% and 95.7%). A total of 20,881 and 20,084 gene models were also predicted for A. flexuosa and M. petechialis respectively using transcriptomes generated in this study. The two new genomic resources established in this study will be useful for further study of the biology, ecology, and evolution of clams, as well as setting up a foundation for evidence-informed decision making in conservation measures and implementation.

genomics↗