This genome provides a foundation for ongoing and future studies using the king penguin to investigate genotype–fitness relationships, ageing, life-history evolution, and adaptation, exceeding the standards of the Earth BioGenome Project and Vertebrate Genomes Project.
Abstract
The king penguin (Aptenodytes patagonicus) is a long-lived seabird of the Southern Ocean that is emerging as a promising model in the wild for studying evolution. We present a high-quality, haplotype-resolved 1.35 Gb chromosome-level genome of an adult female king penguin - ‘Pen/Se-guin’ - assembled using PacBio HiFi long-reads and Hi-C proximity data. A total of 95% of the assembly is assigned to 34 chromosomes (32 autosomes, plus the Z and W chromosomes). The primary haplotype has a BUSCO completeness of 97.2%, and across both haplotypes the assembly has a k-mer completeness of 99.7% and a quality value of 63.8. We also assembled a circularised mitogenome (20,520 bp) containing the avian tandem duplication. Repetitive sequence annotation showed that 16.3% of the genome comprises repetitive elements, with LINEs representing the most abundant transposable element class (5.6%). Gene prediction using an extensive multi-tissue RNA-seq dataset resulted in 18,081 predicted protein-coding genes, of which 17,081 were functionally annotated, with a BUSCO completeness of 98.4% and an OMArk completeness of 97.3%. Compared with the previous draft genome, the presented genome shows a 30-fold increase in assembly contiguity and a substantially improved genome annotation, exceeding the standards of the Earth BioGenome Project and Vertebrate Genomes Project. This genome provides a foundation for ongoing and future studies using the king penguin to investigate genotype–fitness relationships, ageing, life-history evolution, and adaptation.
The huemul (Hippocamelus bisulcus) is an endangered cervid endemic to the Andean–Patagonian region of South America, where it persists in small, fragmented populations. The lack of a reference genome has limited genomic approaches to huemul conservation and evolutionary research. Despite moderate theoretical coverage (...
M. J. Ousset, Jo Anne M. Smith-Flueck, W. Flueck et al.· bioRxiv· 0 citations
A high-quality chromosome-level assembly of Draco maculatus (the spotted flying dragon) is reported with a size of 1.73Gb, a scaffold N50 of 255.50 Mb, and 18,805 annotated protein-coding genes.
Hao-Teng Wei, Fan Zhang, Song-Hai Li et al.· Journal of Heredity· 0 citations
We present a chromosome-level genome assembly of a female Norwegian white-throated dipper (Cinclus cinclus cinclus) generated using Oxford Nanopore Technologies (ONT) long reads and Hi-C scaffolding. The assembly comprises two pseudo-haplotypes, hap1 (1186 Mb) and hap2 (1115 Mb), with 96.7% and 94.4% of sequences assig...
Marius A. Strand, O. K. Tørresen, M. Skage et al.· bioRxiv· 0 citations
Bitterlings (Acheilognathidae) exhibit a unique reproductive strategy characterized by symbiotic embryonic development inside the gill cavities of freshwater unionid mussels. Despite extensive ecological and physiological research on this system, genomic resources for bitterlings have remained limited, hindering compar...
Rawon Jeong, Jeonghun Kim, Young-Suk Ho· G3· 0 citations
This high-quality reference genome provides a foundational resource for investigating cyprinid evolution, environmental adaptation, and molecular breeding, and supports the conservation of O. lini.
Xuan Xie, Li Zou, Zhonggui Xie et al.· Scientific Data· 0 citations
We present a genome assembly from a specimen of
Stephanocoenia intersepta
(blushing star coral; Cnidaria; Anthozoa; Scleractinia; Astrocoeniidae). The assembly contains two haplotypes with total lengths of 656.21 megabases and 656.55 megabases. Most of haplotype 1 (94.84%) is scaffolded into 13 chromosomal pseudomo...
D. Renegar, J. V. Lopez, Nina Pruzinsky et al.· Wellcome Open Research· 0 citations
A new machine-learning framework aims to improve the success rate of computational protein design while moving away from results that reproduce sequences found in nature.