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April 16, 2026Journal of Heredity0 citations

Reference genome assembly of the false killer whale ( Pseudorca crassidens )

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KHKeith M. HernandezKMKaren K. MartienRBRobin W. Baird

Key Points

  • The research aims to create a high-quality reference genome for the false killer whale to support conservation efforts.
  • Performed chromosome-level genome assembly of the false killer whale.
  • Evaluated historical demography of two North Pacific populations using short-read data.
  • Analyzed genome-wide heterozygosity levels compared to other cetaceans.
  • Final genome assembly measured 2.7 Gb with a scaffold N50 of 110.1 Mb.
  • High BUSCO scores of 97% indicated quality annotations with low duplication and fragmentation.
  • Moderate levels of heterozygosity were found in false killer whales, with historical population trends showing shared ancestry.

Abstract

Abstract High-quality genomic resources are essential tools for conservation and management actions. We present a chromosome-level genome assembly for the false killer whale (Pseudorca crassidens, Owen, 1846), a large globicephaline delphinid found in tropical and subtropical waters. The final genome assembly is 2.7 Gb, with a scaffold N50 of 110.1 Mb, organized into 21 autosomes plus X and Y sex chromosomes. BUSCO scores were 97%, with low levels of duplicated and fragmented annotations. Repetitive elements were a larger proportion of the genome relative to most previously published cetacean genomes. Using this reference, we compared trends in historical demography and genome-wide heterozygosity in two North Pacific populations of false killer whales using short-read data mapped to the reference genome. Modeling of historical demography in these two populations indicate similar fluctuations in effective population size over time, reflecting shared ancestry until ~100-200 kya. Genome-wide heterozygosity levels were moderate relative to other cetaceans. The new genomic resources can facilitate further research on comparative genomics and can serve as a reference for other globicephaline cetaceans that currently lack chromosome-level genome assemblies.

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Cite This Study

Hernandez et al. (2026) studied this question.

synapsesocial.com/papers/69e07e992f7e8953b7cbf6d2https://doi.org/10.1093/jhered/esag031
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