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Draft genome of the mountain pine beetle, Dendroctonus ponderosae Hopkins, a major forest pest

  • Christopher I Keeling
  • , Macaire M S Yuen
  • , Hannah Henderson
  • , Jasmine Janes
  • , Yongjun Zhao
  • , Pawan Pandoh
  • , Richard Moore
  • , Felix A H Sperling
  • , Dezene P W Huber
  • , Inanc Birol
  • , Steven J M Jones
  • , Joerg Bohlmann
  • , Nancy Y Liao
  • , T Roderick Docking
  • , Simon K Chan
  • , Greg A Taylor
  • , Diana L Palmquist
  • , Shaun D Jackman
  • , Anh Nguyen
  • , Maria Li

Research output: Contribution to journalArticlepeer-review

258 Citations (Scopus)

Abstract

Background: The mountain pine beetle, 'Dendroctonus ponderosae' Hopkins, is the most serious insect pest of western North American pine forests. A recent outbreak destroyed more than 15 million hectares of pine forests, with major environmental effects on forest health, and economic effects on the forest industry. The outbreak has in part been driven by climate change, and will contribute to increased carbon emissions through decaying forests. Results: We developed a genome sequence resource for the mountain pine beetle to better understand the unique aspects of this insect's biology. A draft 'de novo' genome sequence was assembled from paired-end, shortread sequences from an individual field-collected male pupa, and scaffolded using mate-paired, short-read genomic sequences from pooled field-collected pupae, paired-end short-insert whole-transcriptome shotgun sequencing reads of mRNA from adult beetle tissues, and paired-end Sanger EST sequences from various life stages. We describe the cytochrome P450, glutathione S-transferase, and plant cell wall-degrading enzyme gene families important to the survival of the mountain pine beetle in its harsh and nutrient-poor host environment, and examine genome-wide single-nucleotide polymorphism variation. A horizontally transferred bacterial sucrose-6- phosphate hydrolase was evident in the genome, and its tissue-specific transcription suggests a functional role for this beetle. Conclusions: Despite Coleoptera being the largest insect order with over 400,000 described species, including many agricultural and forest pest species, this is only the second genome sequence reported in Coleoptera, and will provide an important resource for the Curculionoidea and other insects.
Original languageEnglish
Article numberR27
Pages (from-to)1-19
JournalGenome Biology
Volume14
DOIs
Publication statusPublished - 2013

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 13 - Climate Action
    SDG 13 Climate Action

Keywords

  • Evolutionary Impacts of Climate Change
  • Evolutionary Biology

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