New species based on the biological species concept within the complex of Lariophagus distinguendus (Hymenoptera, Chalcidoidea, Pteromalidae), a parasitoid of household pests

Author:

Pollmann Marie1,Kuhn Denise2,König Christian3,Homolka Irmela1,Paschke Sina1,Reinisch Ronja1,Schmidt Anna1,Schwabe Noa4,Weber Justus1,Gottlieb Yuval5,Steidle Johannes Luitpold Maria16ORCID

Affiliation:

1. Department of Chemical Ecology 190t, Institute of Biology University of Hohenheim Stuttgart Germany

2. Department of Entomology 360c, Institute of Phytomedicine University of Hohenheim Stuttgart Germany

3. Akademie für Natur‐ und Umweltschutz Baden‐Württemberg Stuttgart Germany

4. Plant Evolutionary Biology 190b, Institute of Biology University of Hohenheim Stuttgart Germany

5. Robert H. Smith Faculty of Agriculture, Food and Environment, Koret School of Veterinary Medicine Hebrew University of Jerusalem Rehovot Israel

6. KomBioTa – Center of Biodiversity and Integrative Taxonomy University of Hohenheim Stuttgart Germany

Abstract

AbstractThe pteromalid parasitoid Lariophagus distinguendus (Foerster) belongs to the Hymenoptera, a megadiverse insect order with high cryptic diversity. It attacks stored product pest beetles in human storage facilities. Recently, it has been shown to consist of two separate species. To further study its cryptic diversity, strains were collected to compare their relatedness using barcoding and nuclear genes. Nuclear genes identified two clusters which agree with the known two species, whereas the barcode fragment determined an additional third Clade. Total reproductive isolation (RI) according to the biological species concept (BSC) was investigated in crossing experiments within and between clusters using representative strains. Sexual isolation exists between all studied pairs, increasing from slight to strong with genetic distance. Postzygotic barriers mostly affected hybrid males, pointing to Haldane's rule. Hybrid females were only affected by unidirectional Spiroplasma‐induced cytoplasmic incompatibility and behavioural sterility, each in one specific strain combination. RI was virtually absent between strains separated by up to 2.8% COI difference, but strong or complete in three pairs from one Clade each, separated by at least 7.2%. Apparently, each of these clusters represents one separate species according to the BSC, highlighting cryptic diversity in direct vicinity to humans. In addition, these results challenge the recent ‘turbo‐taxonomy’ practice of using 2% COI differences to delimitate species, especially within parasitic Hymenoptera. The gradual increase in number and strength of reproductive barriers between strains with increasing genetic distance also sheds light on the emergence of barriers during the speciation process in L. distinguendus.

Publisher

Wiley

Subject

Nature and Landscape Conservation,Ecology,Ecology, Evolution, Behavior and Systematics

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