AI Article Synopsis

  • The Japanese beetle, an invasive pest native to Japan, poses a threat to various crops and has spread across North America and parts of Europe.
  • Researchers sequenced the complete mitochondrial genome of 86 beetles to understand their origins and invasions better, revealing significant genetic differences between populations in South and Central/North Japan.
  • The study indicates that there were multiple introductions of these beetles into the USA and Europe, with subsequent population expansions and contractions, allowing for the estimation of invasion timelines and changes in population dynamics.

Article Abstract

The Japanese beetle Popillia japonica is a pest insect that feeds on hundreds of species of wild and cultivated plants including important fruit, vegetable, and field crops. Native to Japan, the pest has invaded large areas of the USA, Canada, the Azores (Portugal), Italy, and Ticino (Switzerland), and it is considered a priority for control in the European Union. We determined the complete mitochondrial genome sequence in 86 individuals covering the entire distribution of the species. Phylogenetic analysis supports a major division between South Japan and Central/North Japan, with invasive samples coming from the latter. The origin of invasive USA samples is incompatible, in terms of the timing of the event, with a single introduction, with multiple Japanese lineages having been introduced and one accounting for most of the population expansion locally. The origin of the two invasive European populations is compatible with two different invasions followed by minimal differentiation locally. Population analyses provide the possibility to estimate the rate of sequence change from the data and to date major invasion events. Demographic analysis identifies a population expansion followed by a period of contraction prior to the invasion. The present study adds a time and demographic dimension to available reconstructions.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10965970PMC
http://dx.doi.org/10.1038/s41598-024-57667-xDOI Listing

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