bioRxiv Science⌕ Search

Biology subjects

Strand, M. A.

Publications and source records attributed to Strand, M. A..

6 recordsLinked to original sources

A chromosome-level assembly of an aquatic passerine bird, the northern white-throated dipper, Cinclus cinclus cinclus (Linnaeus, 1758)

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 assigned to chromosome-scale scaffolds, respectively. Both pseudo-haplotypes contain 40 autosomes, with the Z and W sex chromosomes assigned to hap1. Compared with the PacBio HiFi-based C. c. gularis reference assembly bCinCin1.1.pri, which contains 38 autosomes, sequence represented as a single dot-chromosome (chr 36) is resolved into three distinct dot-chromosomes (chr 36, 39, and 40), a configuration supported by Hi-C contact patterns. BUSCO completeness was high for hap1 (99.2%) and hap2 (95.0%), with 19,003 and 17,746 predicted protein-coding genes, respectively. Compared with the HiFi-based C. c. gularis reference and HiFi-based assemblies generated from the same individual, the ONT-derived assemblies were substantially less fragmented and recovered more sequence from the smallest chromosomes. Synteny was otherwise largely conserved between subspecies. HiFi depletion increased strongly from macrochromosomes to micro- and dot-chromosomes, and HiFi-depleted regions were enriched for repeats and predicted non-B-DNA-associated features, particularly G-quadruplexes and direct repeats, whereas ONT coverage remained comparatively stable. These results show that conventional genome-wide assembly metrics can obscure substantial differences in the recovery of repeat-rich avian dot-chromosomes and highlight the value of chromosome-aware evaluation and ONT sequencing for recovering these regions.

genomics↗

A chromosome-level reference genome of the largest cervid species - the European moose (Alces alces; Linnaeus, 1758)

We describe a chromosome-level, haplotype-resolved genome assembly from a male European moose (Alces alces alces). The assembly comprises two pseudo-haplotypes of 3,148 Mb and 3,112 Mb, with sex chromosomes in haplotype one, and 33 autosomes in each haplotype (68 in total). Assembly completeness is high (BUSCO 98.3% and 95.7%), with 21,496 and 20,498 annotated protein-coding genes for haplotypes one and two, respectively. This genome assembly is the most complete so far generated for European moose.

genomics↗

A chromosome-level genome assembly of the Eurasian great grey owl, Strix nebulosa lapponica (Thunberg 1798)

We present a chromosome-level genome assembly of a female great grey owl (Strix nebulosa lapponica). The assembly comprises two pseudo-haplotypes of 1554 Mb and 1242 Mb, with 83.2% and 91.4% scaffolded into 40 autosomal chromosomes, in addition to the W and Z sex chromosomes both placed in hap1. Assembly completeness is high (BUSCO 99.2% and 94.8%), with 18,493 and 17,279 annotated protein-coding genes for hap1 and hap2, respectively. This genome establishes a reference for investigating genetic variation and chromosome evolution in great grey owls. Compared with the previous S. nebulosa assembly, this assembly includes both sex chromosomes, separates regions that were previously collapsed, and resolves 82 chromosomes total. While larger chromosomes show broadly conserved synteny across owl assemblies, the recovery of additional conserved microchromosome-associated genes suggests that ONT reads improved resolution of the smallest chromosomes relative to HiFi-based assemblies.

genomics↗

A chromosome-level genome assembly of a "living fossil", the tadpole shrimp Lepidurus arcticus (Pallas, 1793)

We present the first chromosome-level reference genome for Lepidurus arcticus (Pallas, 1793), a freshwater crustacean with circumpolar distribution. L. arcticus belongs to the small order of freshwater Notostracan crustaceans that are representatives of the ancient group Branchiopoda. This group has a remarkable morphological stability and is frequently labelled "living fossils". Its ancient origin, streamlined genome (estimated to 0.11 Gb) and reproductive flexibility makes this a very interesting candidate for genomic studies. The haplotype-resolved assemblies are composed of two pseudo-haplotypes spanning 81.2 megabases (Mb) and 81.8 Mb, respectively, and each scaffolded into 6 chromosomes. Both haplotypes (hap) show high completeness and identical BUSCO scores of 98.3 for hap1 and hap2. The scaffold N50 length is 13.4 Mb for hap1 and 13.9 Mb for hap2, and k-mer completeness estimated from PacBio HiFi reads was 95.79% and 96.18%, respectively. The haplotypes display very low estimated genome-wide heterozygosity of 0.133%. The assembly contains 10901 (hap1) and 10910 (hap2) protein-coding genes. Repetitive elements comprised approximately 24-25% of each haplotype, with long terminal repeat retrotransposons representing the most abundant transposable element class at approximately 8-9%. Comparison with the near chromosome-level genome of Lepidurus packardi revealed substantial intrachromosomal rearrangements, despite similar chromosome numbers and chromosome sizes. Differences in transposable element content between L. arcticus and L. packardi were primarily driven by retrotransposons, particularly LTR and LINE elements. This reference genome provides a valuable resource for future population genomic studies and for investigating evolutionary stasis at the genome level.

genomics↗

A haplotype-resolved bluethroat (Luscinia s. svecica) genome assembly uncovers the complex MHC region

We describe a chromosome-level, haplotype-resolved genome assembly from a female bluethroat (Luscinia s. svecica). The assembly comprises two pseudo-haplotypes of 1461 Mb and 1171 Mb, with 77.4% and 88.4% scaffolded into 40 autosomal chromosomes and the W and Z sex chromosomes (haplotype one). Assembly completeness is high (BUSCO 99.2% and 94.9%), with 22,462 and 18,769 annotated protein-coding genes for haplotypes one and two, respectively. The use of Oxford Nanopore Technologies sequencing enables resolution of genomic regions that are often fragmented in genome assemblies, including the hypervariable Major Histocompatibility Complex (MHC). We find that MHC loci include both the canonical organization of tandemly duplicated MHCII{beta} genes with a single MHCIIA, and a distinct arrangement in which MHCI and MHCII{beta} loci are interspersed in intermixed arrays, and that substantial structural differences between haplotypes are directly resolved in the assembly.

genomics↗

Chromosome-level assembly of the octoploid cloudberry(Rubus chamaemorus)

We describe a chromosome-level genome assembly from an individual male plant of the cloudberry (Rubus chamaemorus). The haplotype-resolved assemblies contain one pseudo-haplotype spanning 1198 megabases and one pseudo-haplotype spanning 1161 megabases. Most of these two assemblies, 93.57% and 96.55% respectively, are each scaffolded into 28 pseudo-chromosomes. Both assemblies show high completeness, with the same BUSCO completeness score of 99.2%. Most BUSCO genes are duplicated in both pseudo-haplotypes, in line with the polyploid nature of the cloudberry genome. The assemblies contain 74,132 and 70,692 predicted protein-coding genes, respectively. Analysis of repetitive sequences classified [~]60% of each haplotype as repeats. Comparative synteny with red raspberry (Rubus idaeus) reveals a 4:1 chromosome correspondence, supporting an octoploid origin. Ks distributions and k-mer clustering indicate a fairly recent polyploidization involving one divergent ({beta}) and three closely related () subgenomes. Low coverage targeted sequencing data mapped to our assembly link the {beta}-subgenome to a relative of R. pedatus or R. lasiococcus, while the -subgenomes might derive from a putative auto-allohexaploid within the main Rubus clade. In conclusion, these results indicate that the cloudberry genome arose through multiple hybridization events, including recurrent allopolyploidy and possibly autopolyploidy. Significance statementCloudberry cultivation has lagged due to unclear origin and genome structure. We present a haplotype-resolved, chromosome-scale assembly that resolves four homologs per ancestral chromosome into 28 pseudo-chromosomes per haplotype and shows a 4:1 correspondence with red raspberry (Rubus idaeus). Genomic analyses indicate a recent polyploidization in which three closely related subgenomes likely derive from a putative hexaploid within the main Rubus clade, associated with R. arcticus (Arctic raspberry), whereas the fourth, more divergent subgenome is linked to relatives of R. pedatus (strawberryleaf raspberry) and R. lasiococcus (dwarf bramble). These results clarify cloudberrys formation and provide a foundation for trait discovery and accelerated breeding.

genomics↗