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Tillquist, N. M.

Publications and source records attributed to Tillquist, N. M..

3 recordsLinked to original sources

Optimization of High Molecular Weight DNA Extractions from Dried, Museum-Grade Insects Enables Long-Read Sequencing, Phylogenetics, and Methylation Profiling

Developing an effective DNA extraction method that meets requirements for long-read sequencing of poorly preserved samples, such as museum specimens or ancient material, offers new opportunities for genomic analysis of endangered or extinct species for which samples are rare. However, these samples often yield degraded and highly fragmented DNA, rendering long-read sequencing infeasible for many specimens residing in museum collections. Herein, we demonstrate a protocol for successfully extracting DNA of sufficient quality for sequencing on the Oxford Nanopore Technologies long-read sequencing PromethION platform from a desiccated, museum-grade blue carpenter bee specimen (Xylocopa caerulea). We find the protocol is reproducible across specimens and yields high levels of long, endogenous X. caerulea-derived DNA, highlighting the utility of our method for enabling genomic studies of historical collections. From a single flow cell, we assembled the full-length mitochondrial genome and used this assembly to perform a phylogenetic analysis, accurately placing our X. caerulea specimen among related Xylocopa species, thus demonstrating the phylogenetic utility of long-read museomics. Using these long-read data, we analyzed native CpG methylation, finding endogenous methylation signals that correlate with genic and exonic sequences. This method expands the feasibility of genomic and epigenomic analyses from challenging samples, enhancing our ability to investigate the genomes of endangered and extinct species through archival resources.

genomics↗

Haplotype-Resolved Genomics Reveals Conserved Chromatin Architecture and Epigenetic Constraints of Human Neocentromeres

Human neocentromeres are functional centromeres demarcated by CENP-A nucleosomes that form ectopically at alpha satellite-free loci. How neocentromeres reshape local chromatin and which features of native centromeric chromatin are preserved are unknown. We generated gapless, haplotype-resolved assemblies of native and neocentromeres from three patient-derived cell lines. Integrating CpG methylation, CENP-A profiling, and single-molecule chromatin fiber sequencing, we reveal chromatin features that define the essential centromeric architecture reconstituted during neocentromere establishment. We find that a deletion within the satellite array encompassing the hypo-CpG methylation centromere dip regions (CDRs) led to native centromere inactivation, that neocentromeres harbor CDRs and a dichromatin architecture, recapitulating features of alpha-satellite centromeres, and that LINEs demarcate neocentromere boundaries, implicating transposable elements in restricting CENP-A domain spreading. Moreover, neocentromeric chromatin is incompatible with promoter-like chromatin states, redefining the regulatory landscape within genic regions. Finally, using haplotype-specific chromatin footprinting, we resolve CENP-A nucleosome chromatin architecture of active centromeres.

genomics↗

Long-Term Rock Dove (Columba livia) Primordial Germ Cell Culture: A Tool for Avian Conservation

Primordial germ cells (PGCs) are critical tools for genome engineering and conservation in birds. While culture systems for chicken PGCs have been well established for nearly two decades, efforts to propagate PGCs from other avian species have proved exceptionally challenging, limiting the broader application of artificial reproductive technologies in birds. Here we report the first successful derivation and long-term culture of PGCs from the rock dove, or common pigeon (Columba livia). Guided by transcriptomic profiling of PGCs, we developed a species-specific medium that supports PGC maintenance and expansion. We identify insulin signaling as essential for survival and demonstrate that retinoic acid receptor inhibition, while maintaining vitamin A, is necessary for propagation. Supplementation with BMP4, LIF, GDNF, and pleiotrophin further enhances PGC proliferation. Cultured cells express canonical germline markers and migrate to the gonads following injection into both rock dove and chicken embryos, confirming functional competency. These findings establish a platform for germline manipulation and biobanking in Columbidae, broadening the applicability of reproductive technologies to conservation efforts.

cell biology↗