Biological invasions, climate change and genomics

  • Steven L. Chown
    School of Biological Sciences Monash University Clayton Vic. Australia
  • Kathryn A. Hodgins
    School of Biological Sciences Monash University Clayton Vic. Australia
  • Philippa C. Griffin
    Department of Genetics Bio21 Institute The University of Melbourne Parkville Vic. Australia
  • John G. Oakeshott
    CSIRO Land and Water Flagship Black Mountain Laboratories Canberra ACT Australia
  • Margaret Byrne
    Science and Conservation Division Department of Parks and Wildlife Bentley Delivery Centre Bentley WA Australia
  • Ary A. Hoffmann
    Departments of Zoology and Genetics Bio21 Institute The University of Melbourne Parkville Vic. Australia

説明

<jats:title>Abstract</jats:title><jats:p>The rate of biological invasions is expected to increase as the effects of climate change on biological communities become widespread. Climate change enhances habitat disturbance which facilitates the establishment of invasive species, which in turn provides opportunities for hybridization and introgression. These effects influence local biodiversity that can be tracked through genetic and genomic approaches. Metabarcoding and metagenomic approaches provide a way of monitoring some types of communities under climate change for the appearance of invasives. Introgression and hybridization can be followed by the analysis of entire genomes so that rapidly changing areas of the genome are identified and instances of genetic pollution monitored. Genomic markers enable accurate tracking of invasive species’ geographic origin well beyond what was previously possible. New genomic tools are promoting fresh insights into classic questions about invading organisms under climate change, such as the role of genetic variation, local adaptation and climate pre‐adaptation in successful invasions. These tools are providing managers with often more effective means to identify potential threats, improve surveillance and assess impacts on communities. We provide a framework for the application of genomic techniques within a management context and also indicate some important limitations in what can be achieved.</jats:p>

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