A Warm Welcome to the Alps—The Northward Expansion of Trithemis annulata (Odonata, Libellulidae) in Italy

Author:

La Porta Gianandrea1ORCID,Hardersen Sönke2ORCID

Affiliation:

1. Department of Chemistry, Biology and Biotechnology, University of Perugia (PG), 06123 Perugia, Italy

2. Reparto Carabinieri Biodiversità di Verona, Centro Nazionale Carabinieri Biodiversità “Bosco Fontana”, 46045 Marmirolo, Italy

Abstract

Climate warming has already influenced the distribution, community composition, and phenology of European Odonata. Trithemis annulata had been confined to the southern regions of Italy for over 150 years. In only four decades, it has expanded its range and has recently been observed inhabiting several alpine valleys. A dataset of 2557 geographical distribution data points spanning the years 1825–2023 was compiled using various resources, with the aim to analyse the chrono-story of the expansion of T. annulata. A further aim was to investigate the climatic conditions that best explain its current and future distribution. Over a period of 43 years, the species steadily extended its northern range margin at an approximate rate of 12 km/year. Once it reached the Po Plain, the expansion accelerated to an average speed of 34 km/year. However, its northward shift lagged behind the warming climate as we estimated an average speed of 28 km/year. In the future, the area suitable for T. annulata is expected to significantly increase in Italy. Surprisingly, we did not observe any consistent upward shift. Trithemis annulata has considerably expanded its distribution due to human-induced climate warming. The northernmost populations now inhabit Alpine valleys, potential gateways to central Europe.

Publisher

MDPI AG

Reference77 articles.

1. Core Writing Team, Lee, H., and Romero, J. (2023). Proceedings of the IPCC, 2023: Climate Change 2023: Synthesis Report. Contribution of Working Groups I, II and III to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change, IPCC.

2. Emerging New Climate Extremes over Europe;Allan;Clim. Dyn.,2022

3. Insect Declines in the Anthropocene;Wagner;Annu. Rev. Entomol.,2020

4. Cardoso, P., Barton, P.S., Birkhofer, K., Chichorro, F., Deacon, C., Fartmann, T., Fukushima, C.S., Gaigher, R., Habel, J.C., and Hallmann, C.A. (2020). Scientists’ Warning to Humanity on Insect Extinctions. Biol. Conserv., 242.

5. Distribution Trends of European Dragonflies under Climate Change;Termaat;Divers. Distrib.,2019

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