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High promiscuity among females of the invasive pest species Drosophila suzukii. | LitMetric

AI Article Synopsis

  • Drosophila suzukii, also known as the spotted-wing drosophila, is an invasive fruit fly that has spread from Asia to Europe and the Americas, posing a serious threat to small fruit agriculture.
  • The species has adapted to cooler environments and exhibits seasonal reproductive dynamics, particularly in temperate regions, where it faces winter population challenges.
  • Research in Trentino, Italy, revealed a high frequency of female remating and polyandry, suggesting these reproductive strategies may confer evolutionary advantages that enhance survival and population growth during warmer months.

Article Abstract

Drosophila suzukii (Matsumura, 1931), the spotted-wing drosophila, is a highly invasive fruit fly that spread from Southern Asia across most regions of Asia and, in the last 15 years, has invaded Europe and the Americas. It is an economically important pest of small fruits such as berries and stone fruits. Drosophila suzukii speciated by adapting to cooler, mountainous, and forest environments. In temperate regions, it evolved seasonal polyphenism traits which enhanced its survival during stressful winter population bottlenecks. Consequently, in these temperate regions, the populations undergo seasonal reproductive dynamics. Despite its economic importance, no data are available on the behavioural reproductive strategies of this fly. The presence of polyandry, for example, has not been determined despite the important role it might play in the reproductive dynamics of populations. We explored the presence of polyandry in an established population in Trentino, a region in northern Italy. In this area, D. suzukii overcomes the winter bottleneck and undergoes a seasonal reproductive fluctuation. We observed a high remating frequency in females during the late spring demographic explosion that led to the abundant summer population. The presence of a high degree of polyandry and shared paternity associated with the post-winter population increase raises the question of the possible evolutionary adaptive role of this reproductive behaviour in D. suzukii.

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Source
http://dx.doi.org/10.1111/mec.17161DOI Listing

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