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Akella, H.

Publications and source records attributed to Akella, H..

3 recordsLinked to original sources

Chromosome-scale Juglans genomes focus fungal defense gene divergence in gene presence and absence instead of copy number

Butternut (Juglans cinerea) is a North American hardwood in steep decline, driven largely by an introduced fungal pathogen that causes butternut canker disease. Tolerance exists within the genus, with the Asian Juglans ailantifolia comparatively tolerant and hybridizing readily with J. cinerea, yet the genomic basis of that difference is poorly resolved. Chromosome-scale reference genomes are presented for J. ailantifolia and for a second J. cinerea accession from the species primary range, with independent scaffolding and uniform annotation across all compared assemblies. Gene family evolution was assessed across twelve Juglandaceae genomes, one per species, and a four accession pangenome was built from J. ailantifolia and J. mandshurica representing section Cardiocaryon and two J. cinerea accessions, Brenton and New Brunswick, representing section Trachycaryon. Neither J. cinerea accession is a putative tolerant selection, so their contrast provides a null against which section-level differences are calibrated. Spanning two sections separated by approximately 30 My, the pangenome partitions many tandem arrays by accession instead of by gene, so copy number is interpreted after merging homology nodes representing the same gene. Section-level variation resides primarily in gene presence and absence, where pathogenesis-related proteins, cysteine-rich receptor-like kinases, wall-associated kinases and lectin-domain receptor kinases are over-represented in the lineage-specific complement of both sections, indicating rapid bidirectional turnover. A smaller set of families is asymmetric, with chitinases and chitin-binding proteins and NB-LRR receptors biased toward the tolerant section and dehydrins, pectin-modifying enzymes and the CBF regulon toward the susceptible one. The largest copy number difference in the dataset separates the two conspecific accessions, at a senescence-associated cysteine protease. The two butternuts are further distinguished by their demographic histories and by the functional composition of their accession-specific gene content: the northern New Brunswick accession retains lower heterozygosity, a distinct coalescent trajectory, and enrichment for calcium transport across channels, pumps and homeostasis, for salt stress response regulation, and for raffinose family oligosaccharide biosynthesis, spanning both the perception and the cryoprotective effectors of freezing tolerance. These findings support recognition of the northern population as a cryptic glacial refugium and a conservation priority.

genomics↗

Mink by mink: stitching together signatures of subspecies adaptation through a pangenome of threatened mustelids

The American mink (Neogale vison), a semi-aquatic Mustelidae carnivoran with broad ecological range across North America, includes several putative subspecies of conservation concern. To investigate the evolutionary history and adaptive signatures of mink subspecies, chromosome-scale genome assemblies were generated for six individuals representing three southern subspecies: N. vison evergladensis, N. vison vulgivaga, and N. vison lutensis. Genomes were assembled using Illumina short reads, scaffolded with Oxford Nanopore long reads, and aligned to the phased N. vison reference genome. Assemblies ranged from 75.9% to 97.8% completeness, with five meeting thresholds for pangenome construction. A reference-free pangenome revealed an open architecture, highlighting considerable subspecies diversity. Subspecies-specific gene enrichment reflected adaptation: N. vison evergladensis showed enrichment in traits related to reproduction and sensory function; N. vison vulgivaga in cytoskeletal remodeling and oxidative stress; and N. vison lutensis in neuronal development, synaptic plasticity and cellular stress pathways. Assessment of the mitogenomes resolved N. vison lutensis as a distinct lineage, while nuclear data supported broader subspecies divergence but lacked fine scale resolution. N. vison evergladensis showed multiple signatures of small population size, including inbreeding coefficients (FROH) above 0.5, and displayed consistent population decline over time via demographic inference. Our findings support evergladensis as a distinct subspecies, supported by both the mitogenome phylogeny, and significant functional differentiation. As the first pangenome for Mustelidae, this study demonstrates the power of integrating cross-platform sequencing with natural history specimens to improve the resolution on signatures of adaptation and inform conservation policy and management of threatened populations.

genomics↗

Conserving a threatened North American walnut: a chromosome-scale reference genome for butternut (Juglans cinerea)

With the advent of affordable and more accurate third generation sequencing technologies and the associated bioinformatic tools, it is now possible to sequence, assemble, and annotate more species of conservation concern than ever before. Juglans cinerea, commonly known as butternut or white walnut, is a member of the walnut family, native to the Eastern United States and Southeastern Canada. The species is currently listed as Endangered on the IUCN Red List due to decline from an invasive fungus known as Ophiognomonia clavigignenti-juglandacearum (Oc-j) that causes butternut canker. Oc-j creates visible sores on the trunks of the tree which essentially starves and slowly kills the tree. Natural resistance to this pathogen is rare. Conserving butternut is of utmost priority due to its critical ecosystem role and cultural significance. As part of an integrated undergraduate and graduate student training program in biodiversity and conservation genomics, the first reference genome for Juglans cinerea is described here. This chromosome-scale 539 Mb assembly was generated from over 100X coverage of Oxford Nanopore long reads and scaffolded with the Juglans mandshurica genome. Scaffolding with a closely related species oriented and ordered the sequences in a manner more representative of the structure of the genome without altering the sequence. Comparisons with sequenced Juglandaceae revealed high levels of synteny and further supported J. cinereas recent phylogenetic placement. Comparative assessment of gene family evolution revealed a significant number of contracting families, including several associated with biotic stress response.

genomics↗