Molecular and morphological characterisation of larvae of the genus Diamesa Meigen, 1835 (Diptera: Chironomidae) in Alpine streams (Ötztal Alps, Austria)

Author:

Dvorak MartinORCID,Dittmann Isabel L.,Pedrini-Martha Veronika,Hamerlík Ladislav,Bitušík Peter,Stuchlik Evzen,Vondrák DanielORCID,Füreder Leopold,Lackner ReinhardORCID

Abstract

Diamesa species (Diptera, Chironomidae) are widely distributed in freshwater ecosystems, and their life cycles are closely linked to environmental variables such as temperature, water quality, and sediment composition. Their sensitivity to environmental changes, particularly in response to pollution and habitat alterations, makes them valuable indicators of ecosystem health. The challenges associated with the morphological identification of larvae invoke the use of DNA barcoding for species determination. The mitochondrial cytochrome oxidase subunit I (COI) gene is regularly used for species identification but faces limitations, such as similar sequences in closely related species. To overcome this, we explored the use of the internal transcribed spacers (ITS) region in addition to COI for Diamesa larvae identification. Therefore, this study employs a combination of molecular markers alongside traditional morphological identification to enhance species discrimination. In total, 129 specimens were analysed, of which 101 were sampled from a glacier-fed stream in Rotmoostal, and the remaining 28 from spring-fed streams in the neighbouring valleys of Königstal and Timmelstal. This study reveals the inadequacy of utilizing single COI or ITS genes for comprehensive species differentiation within the genus Diamesa. However, the combined application of COI and ITS markers significantly enhances species identification resolution, surpassing the limitations faced by traditional taxonomists. Notably, this is evident in cases involving morphologically indistinguishable species, such as Diamesa latitarsis and Diamesa modesta. It highlights the potential of employing a multi-marker approach for more accurate and reliable Diamesa species identification. This method can be a powerful tool for identifying Diamesa species, shedding light on their remarkable adaptations to extreme environments and the impacts of environmental changes on their populations.

Funder

Austrian Science Fund

Grantová Agentura České Republiky

Österreichischen Akademie der Wissenschaften

Publisher

Public Library of Science (PLoS)

Reference61 articles.

1. Rapid glacier retreat and downwasting throughout the European Alps in the early 21st century;C Sommer;Nature Communications,2020

2. On the delay between water temperature and invertebrate community response to warming climate;V Lencioni;Science of the Total Environment,2022

3. Microdistribution of chironomids (Diptera: Chironomidae) in Alpine streams: an autoecological perspective;V Lencioni;Hydrobiologia,2005

4. The kryal and rhithral chironomid community in the Care`Alto system (Italian central-eastern Alps);V Lencioni;Verhandlungen der Internationale Vereinigung für Theoretische und Angewandte Limnologie,2001

5. Chironomid (Diptera: Chironomidae) communities in six European glacier-fed streams;B Lods-Crozet;Freshwater Biology,2001

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