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    Date Issued2016 (1)AuthorAlkema, Mark J (1)Andersen, Erik C. (1)Braendle, Christian (1)Cook, Daniel E. (1)Felix, Marie-Anne (1)View MoreUMass Chan AffiliationAlkema Lab (1)Neurobiology (1)Document TypeJournal Article (1)KeywordCaenorhabditis elegans (1)Neuroscience and Neurobiology (1)QTL (1)shelterin (1)telomere length (1)View MoreJournalGenetics (1)

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    The Genetic Basis of Natural Variation in Caenorhabditis elegans Telomere Length

    Cook, Daniel E.; Zdraljevic, Stefan; Tanny, Robyn E.; Seo, Beomseok; Riccardi, David D.; Noble, Luke M.; Rockman, Matthew V.; Alkema, Mark J; Braendle, Christian; Kammenga, Jan E.; et al. (2016-09-01)
    Telomeres are involved in the maintenance of chromosomes and the prevention of genome instability. Despite this central importance, significant variation in telomere length has been observed in a variety of organisms. The genetic determinants of telomere-length variation and their effects on organismal fitness are largely unexplored. Here, we describe natural variation in telomere length across the Caenorhabditis elegans species. We identify a large-effect variant that contributes to differences in telomere length. The variant alters the conserved oligonucleotide/oligosaccharide-binding fold of protection of telomeres 2 (POT-2), a homolog of a human telomere-capping shelterin complex subunit. Mutations within this domain likely reduce the ability of POT-2 to bind telomeric DNA, thereby increasing telomere length. We find that telomere-length variation does not correlate with offspring production or longevity in C. elegans wild isolates, suggesting that naturally long telomeres play a limited role in modifying fitness phenotypes in C. elegans.
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