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Narum, S. R.

Publications and source records attributed to Narum, S. R..

2 recordsLinked to original sources

Genome assembly and diagnostic DNA markers for sex of the largest freshwater fish in North America, the white sturgeon (Acipenser transmontanus).

Sturgeon and paddlefish represent some of the most early diverging branches of ray-finned fishes and have undergone at least one global and several lineage-specific whole genome duplication events. White sturgeon (Acipenser transmontanus), the largest freshwater fish in North America, have experienced at least two rounds of whole genome duplication, and may exhibit both di- and multi-valent meiotic segregation. Moreover, they exhibit contemporary ploidy variants due to spontaneous autopolyploidy, particularly in aquaculture. Nonetheless, as a species with several population segments that exhibit chronic recruitment failure, conservation aquaculture is an important part of their management. To facilitate the development of genetic tools to aid white sturgeon conservation, as well as a basis to understand how ploidy changes and variation historically and contemporarily shape the evolution of this species, we present a genome assembly for a white sturgeon from the Snake River, Idaho, USA. Analysis of sequence data used for assembly indicated a haploid genome size of approximately 1.5Gbp, implying tetraploidy (4N), while analysis of heterozygous k-mers from 21 to 41 bp suggest the genome reflects both 4N and 8N variants. The final genome assembly, scaffolded using linkage maps constructed from Fraser River and Snake River F1 families, contained 6.26Gbp in 832,145 scaffolds, consistent with published genome size estimates. Conserved ortholog completeness for this genome (90.5%; 22.8% single-copy and 67.7% duplicated) was similar to the putatively diploid sterlet sturgeon, and the largest linkage map-based scaffold was 55.2Gbp, though the N50 for this assembly was only 416Kbp, indicating the assembly remains fragmented. We demonstrate the utility of this assembly by identifying genomic regions significantly associated with sex. Genetic markers, designed for inclusion in an amplicon genotyping panel, predicted sex 96.6% and 81.5% correctly in females and males, respectively, providing a strong overall association ({square}2 p-value < 2.7x10-37) with some variation by geographic region. Article summaryFunctional polysomes (more than two chromosomes that pair in meiosis) are rare among vertebrates. White sturgeon, the largest freshwater fish in North America, are tetraploid and occasionally hexaploid. Several populations of this species are stagnant or declining, requiring aquaculture to bolster reproduction. We analyzed whole genomic data and assembled the genome of an individual from the unique Snake River, Idaho, population. Results indicate most genetic variants are consistent with tetraploidy, and the genome assembly, while fragmented, is largely complete. We demonstrate its utility by designing genetic markers for sex for use in conservation and commercial aquaculture.

genomics↗

De novo Genome Assemblies of Four Rainbow Trout Genetic Lines Reveal Structural Variants In Pursuit of a Pangenome Reference

Rainbow trout (Oncorhynchus mykiss) exhibit extensive genomic diversity shaped by domestication, life history, and geographic origin. To advance the development of a comprehensive pangenome reference, we present new de novo genome assemblies of two genetically and ecologically distinct lines: Whale Rock (WR; wild, landlocked, Central California) and Keithley Creek (KC; wild, resident, interior Columbia Basin), along with the previously published assemblies of the Arlee (domesticated, Northern California) and Swanson (semi-domesticated, resident, Alaska) lines. All assemblies provide nearly complete coverage of known genes (BUSCO 95.8-99.7%) and are similar in genome size ([~]2.3 Gb), with scaffold N50 values between 3.4 Mb (KC) and 52.4 Mb (Swanson). Comparative whole-genome alignments revealed high sequence conservation (97-98% identity) among assemblies, but also evidence of extensive structural variation of at least 50 bp in length. Structural variant (SV) profiling identified tens of thousands of deletions, insertions, and complex rearrangements largely in noncoding sequences. In an initial assessment of the utility of having multiple de novo genome assemblies for rainbow trout, we found that two strains (Arlee and Swanson; domesticated) share SVs enriched in genes linked with growth, reproduction, and adaptation to domestication, such as GTP binding and ECM-receptor interaction. In comparison, the other two strains (WR and KC; wild origin) share SVs associated with reproductive timing such as GnRH signaling pathway. Both Arlee and WR also have unique SVs potentially related to their geographic origin and unique life history. Additionally, we identified SVs in key regions, such as a QTL for fillet yield on Omy17 and the maturation-associated SIX6/ER{beta}-GPHB5 locus on Omy25q, suggesting the importance of considering SVs when investigating the genomics of complex traits. Together, these assemblies and comparative analyses establish a foundation for a rainbow trout pangenome reference, illuminating how they can be utilized to reveal the structural genomic basis of domestication, adaptation, and other complex traits in O. mykiss.

genomics↗