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Ultra Large Gene Families: A Matter of Adaptation or Genomic Parasites? | LitMetric

AI Article Synopsis

  • * The study focuses on the phylogenetic distribution of ultra large gene families, particularly the NACHT-domain and NLR genes in zebrafish, and examines whether their clustering is a common trait among such families.
  • * Findings suggest that while most gene family expansions are specific to certain lineages, ultra large gene families may undergo a "run-away evolution" process that could threaten genomic integrity and contribute to species extinction.

Article Abstract

Gene duplication is an important mechanism of molecular evolution. It offers a fast track to modification, diversification, redundancy or rescue of gene function. However, duplication may also be neutral or (slightly) deleterious, and often ends in pseudo-geneisation. Here, we investigate the phylogenetic distribution of ultra large gene families on long and short evolutionary time scales. In particular, we focus on a family of NACHT-domain and leucine-rich-repeat-containing (NLR)-genes, which we previously found in large numbers to occupy one chromosome arm of the zebrafish genome. We were interested to see whether such a tight clustering is characteristic for ultra large gene families. Our data reconfirm that most gene family inflations are lineage-specific, but we can only identify very few gene clusters. Based on our observations we hypothesise that, beyond a certain size threshold, ultra large gene families continue to proliferate in a mechanism we term "run-away evolution". This process might ultimately lead to the failure of genomic integrity and drive species to extinction.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5041008PMC
http://dx.doi.org/10.3390/life6030032DOI Listing

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