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Hernandez, K. M.

Publications and source records attributed to Hernandez, K. M..

2 recordsLinked to original sources

Immune gene variation associated with chromosome-scale differences among individual zebrafish genomes

Immune genes have evolved to maintain exceptional diversity, offering robust defense against pathogens. We performed genomic sequencing and assembly to examine immune gene variation among three zebrafish individuals. We identified remarkably high levels of sequence divergence as well as presence/absence variation among these zebrafish genomes, particularly when compared with the level of variation in human genomes. Gene pathway analysis identified zebrafish immune genes as significantly enriched among genes with evidence of positive selection. A large subset of genes was absent from analysis of coding sequences due to apparent lack of reads, prompting us to examine genes overlapping zero coverage regions (ZCRs), defined as 2kb stretches without mapped reads. Zebrafish immune genes were also identified as highly enriched within ZCRs, including over 60% of zebrafish major histocompatibility complex (MHC) genes and NOD-like receptor (NLR) genes, mediators of direct and indirect pathogen recognition. This variation was most highly concentrated throughout one arm of zebrafish chromosome 4 carrying a large cluster of NLR genes, associated with large-scale structural variation covering more than half of a vertebrate chromosome. While previous studies have shown marked variation in NLR genes between vertebrate species, our study highlights extensive variation between individuals of the same species. Our genomic assemblies also provide sequences for alternative haplotypes and distinct complements of immune genes among individual zebrafish, including the MHC Class II locus. Taken together, these findings provide evidence of immune gene variation on a scale previously unknown in other vertebrate species and raise questions about potential impact on immune function.

genomics↗

A highly diverse set of novel immunoglobulin-like transcript (NILT) genes in zebrafish indicates a wide range of functions with complex relationships to mammalian receptors

Multiple novel immunoglobulin-like transcripts (NILTs) have been identified from salmon, trout and carp. NILTs typically encode activating or inhibitory transmembrane receptors with extracellular immunoglobulin (Ig) domains. Although predicted to provide immune recognition in ray-finned fish, we currently lack a definitive framework of NILT diversity, thereby limiting our predictions for their evolutionary origin and function. In order to better understand the diversity of NILTs and their possible roles in immune function, we identified five NILT loci in the Atlantic salmon (Salmo salar) genome, defined 86 NILT Ig domains within a 3 Mbp region of zebrafish (Danio rerio) chromosome 1, and described 41 NILT Ig domains as part of an alternative haplotype for this same genomic region. We then identified transcripts encoded by 43 different NILT genes which reflect an unprecedented diversity of Ig domain sequences and combinations for a family of non-recombining receptors within a single species. Zebrafish NILTs include a sole putative activating receptor but extensive inhibitory and secreted forms as well as membrane-bound forms with no known signaling motifs. These results reveal a higher level of genetic complexity, interindividual variation and sequence diversity for NILTs than previously described, suggesting that this gene family likely plays multiple roles in host immunity.

immunology↗