Anticipating where are unknown aquatic insects in Europe to improve biodiversity conservation

Author:

Sánchez‐Campaña Carlota12ORCID,Múrria Cesc2,Hermoso Virgilio3,Sánchez‐Fernández David4,Tierno de Figueroa J. Manuel5,González Marcos6,Millán Andrés4,Moubayed Joel7,Ivković Marija8,Murányi Dávid9,Graf Wolfram10,Derka Tomáš11,Mey Wolfram12,Sipahiler Füsun13,Pařil Petr14,Polášková Vendula14,Bonada Núria12

Affiliation:

1. FEHM‐Lab (Freshwater Ecology, Hydrology and Management), Departament de Biologia Evolutiva, Ecologia i Ciències Ambientals, Facultat de Biologia Universitat de Barcelona (UB) Barcelona Spain

2. Institut de Recerca de la Biodiversitat (IRBio) Universitat de Barcelona (UB) Barcelona Spain

3. Departamento de Biología Vegetal y Ecología Universidad de Sevilla Sevilla Spain

4. Departamento de Ecología e Hidrología Universidad de Murcia Murcia Spain

5. Departamento de Zoología, Facultad de Ciencias Universidad de Granada Granada Spain

6. Departamento de Zoología, Genética y Antropología Física, Facultad de Biología Universidad de Santiago de Compostela Santiago de Compostela Spain

7. Freshwater & Marine Biology Montpellier France

8. Department of Biology, Division of Zoology, Faculty of Science University of Zagreb Zagreb Croatia

9. Department of Zoology Eszterházy Károly Catholic University Eger Hungary

10. BOKU University of Natural Resources and Life Sciences, Institute of Hydrobiology and Aquatic Ecosystem Management (IHG) Vienna Austria

11. Department of Ecology, Faculty of Natural Sciences Comenius University in Bratislava Bratislava Slovakia

12. Museum für Naturkunde, Leibniz Institute of Evolution and Biodiversity Research Humboldt University Berlin Germany

13. Bardacık Sokak Ankara Turkey

14. Department of Botany and Zoology, Faculty of Science Masaryk University Brno Czech Republic

Abstract

AbstractAimUnderstanding biodiversity patterns is crucial for prioritizing future conservation efforts and reducing the current rates of biodiversity loss. However, a large proportion of species remain undescribed (i.e. unknown biodiversity), hindering our ability to conduct this task. This phenomenon, known as the ‘Linnean shortfall’, is especially relevant in highly diverse, yet endangered, taxonomic groups, such as insects. Here we explore the distributions of recently described freshwater insect species in Europe to (1) infer the potential location of unknown biodiversity hotspots and (2) determine the variables that can anticipate the distribution of unknown biodiversity.LocationThe European continent, including western Russia, Cyprus and Turkey.MethodsGeoreferenced information of all sites where new aquatic insect species were described across Europe from 2000 to 2020 was compiled. In order to understand the observed spatial patterns in richness of recently described species, spatial units were defined (level 6 of HydroBASINS) and associated with a combination of a set of socioeconomic, environmental and sampling effort descriptors. A zero‐inflated Poisson regression approach was used to model the richness of newly described species within each spatial unit.ResultsNine hundred and sixty‐six recently described species were found: 398 Diptera, 362 Trichoptera, 105 Coleoptera, 66 Plecoptera, 28 Ephemeroptera, 3 Neuroptera, 2 Lepidoptera and 2 Odonata. The Mediterranean Basin was the region with the highest number of recently described species (74%). The richness of recently described species per spatial unit across Europe was highest at mid‐elevation areas (between 400 and 1000 m), latitudes between 40 and 50° and in areas with yearly average precipitation levels of 500–1000 mm, a medium intensity of sampling effort and low population density. The percentage of protected areas in each study unit was not significantly related to the richness of recently described species. In fact, 70% of the species were found outside protected areas.Main conclusionsThe results highlight the urgent need to concentrate conservation efforts in freshwater ecosystems located at mid‐altitude areas and out of protected areas across the Mediterranean Basin. The highest number of newly described species in those areas indicates that further monitoring efforts are required to ensure the aquatic biodiversity is adequately known and managed within a context of growing human impacts in freshwater ecosystems.

Publisher

Wiley

Subject

Ecology, Evolution, Behavior and Systematics

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