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Seasonal variation in endoreduplication and polyteny in the fruit fly Drosophila melanogaster (Diptera: Drosophilidae): How does it contribute to adaptation?Original article

Volodymyr STRASHNYUK, Evgenij VAKULENKO, Yelyzaveta KOPTEVTSOVA

Eur. J. Entomol. 122: 1-10, 2025 | DOI: 10.14411/eje.2025.001

In temperate regions, the fruit fly Drosophila melanogaster (Meigen, 1830) is subject to seasonal changes in natural conditions. Insects exhibit a wide range of adaptive responses to changes in the seasons. In this study, we focused on polyteny, which plays an important role in fruit fly development. Polytene chromosomes are the result of endocycles, a variant of the cell cycle based on endoreduplication. This phenomenon is the basis of postmitotic growth, which is caused by cell expansion. The purpose of the study was to investigate the seasonal dynamics of the levels of endoreduplication and polyteny in fruit flies obtained from the natural population. Flies caught in the spring and autumn of 2019 and 2020 were used as biological material. Chromosomal differences in polyteny were studied by cytomorphometry. We found that patterns of polyteny in Drosophila salivary glands undergo seasonal changes. To a certain extent, these variations correlate with changes in the direction of natural selection, which undergoes seasonal fluctuations. Indices of endoreduplication and cell ploidy acquire the greatest values after overwintering, during which there is an extreme decline in population size and flies undergo selection for viability and stress resistance. During the growing season, endoreduplication and ploidy indicators are reduced. We believe that this facilitates population growth by resulting in smaller flies with accelerated development and faster change of generations. The seasonal component in the total variation of chromosome polyteny in the salivary glands of Drosophila larvae was 21.9%. No significant sex differences were found for this trait.

Diversity and systematics of the Ibero-Balearic Eumerus (Diptera: Syrphidae): Providing tools for species identificationOriginal article

Pablo AGUADO-ARANDA, Antonio RICARTE, Zorica NEDELJKOVIÆ, Scott KELSO, Jeffrey H. SKEVINGTON, María Ángeles MARCOS-GARCÍA

Eur. J. Entomol. 122: 13-34, 2025 | DOI: 10.14411/eje.2025.003

The syrphid genus Eumerus Meigen, 1822 is one of the most speciose in the world. In the Ibero-Balearic area (including Andorra and the Spanish side of the Pyrenees), recent taxonomic studies have increased the knowledge of Eumerus in Europe. A high taxonomic diversity together with a complex morphology make species identification difficult in this genus. The lack of updated and comprehensive tools to assist in the identification of species prompted the production of a dichotomous key to all Ibero-Balearic species of Eumerus and generation of DNA barcodes for ten species. In summary, a total of 37 species of Eumerus and nine species groups are reported in this geographical region. Eumerus caballeroi Gil Collado, 1929 is proposed as junior synonym of Eumerus nudus Loew, 1848 and the taxonomic status of Eumerus pauper Becker, 1921 is discussed. The first sequences of the 5´ region of the Cytochrome c oxidase subunit I gene (COI-5´) of Eumerus subornatus Claußen, 1989 and Eumerus truncatus Rondani, 1868 were obtained and their systematic positions corroborated.

Fumigant toxicity of allyl isothiocyanate against phosphine-resistant populations of five major stored-grain insect pestsOriginal article

Sudhan SHAH, Rajeswaran JAGADEESAN, Manoj K. NAYAK

Eur. J. Entomol. 122: 35-41, 2025 | DOI: 10.14411/eje.2025.004

Given the development of resistance in stored-grain insect pests to phosphine (PH3), the grain industry is seeking alternative methods for effective pest and resistance management. We evaluated the efficacy of allyl isothiocyanate (AITC), a potential alternative fumigant against adults of phosphine-susceptible (PH3-S) and resistant strains (PH3-R) of five major grain insect pests, including Sitophilus oryzae (Linnaeus), Tribolium castaneum (Herbst), Rhyzopertha dominica (Fabricius), Oryzaephilus surinamensis (Linnaeus), and Cryptolestes ferrugineus (Stephens). Adult dose-mortality response curves were established for each species, and the mortality endpoints of post-fumigated adult S. oryzae and T. castaneum were compared. The effect of commodities on the efficacy of AITC was briefly investigated from the perspective of adult insect mortality. The PH3-R strain of S. oryzae was the most tolerant and required the highest dose, LC50: 1.75 µL a.i. L-1, whereas the PH3-R strain of C. ferrugineus was the most susceptible to AITC, requiring the lowest LC50: 0.59 µL a.i. L-1. Comparisons of LC99.9 across the species and strains confirmed that AITC at 2.59 µL a.i. L-1 was adequate in achieving complete control of adults across all five insect species tested, irrespective of their resistance status to phosphine. These results suggest that phosphine-resistant insects fail to confer cross-resistance to AITC. Post-exposure endpoint mortality studies revealed a steady increase in mortality in S. oryzae (from 18% at 24 h to 100% at 168 h). In contrast, no such changes were recorded with T. castaneum, suggesting the existence of species-specific differences in responding to AITC. The presence of insect-infested commodities, such as rolled oats and cracked sorghum, reduced the efficacy of AITC, indicating that this fumigant could be sorptive.

A general theory of the complex pronotum morphology of treehoppers in Smiliinae and its relatives (Hemiptera: Membracidae) and its applicability to other subfamiliesOriginal article

Kanta SUGIURA, Tensho TERANO, Haruhiko ADACHI, Jin HAGIWARA, Keisuke MATSUDA, Kenji NISHIDA, Paul HANSON, Shigeru KONDO, Yasuhiko CHIKAMI, Hiroki GOTOH

Eur. J. Entomol. 122: 42-55, 2025 | DOI: 10.14411/eje.2025.005

Treehoppers are characterized by exaggerated and three-dimensionally modified pronotal structures, known as "helmets". The treehopper pronotum has been studied mainly in terms of taxonomic diagnosis for over a century. It has recently been used as a model for studying the origin of evolutionary innovation and morphological diversification. However, the interspecific correspondence of traits, i.e., homology of pronotal parts, remains ambiguous due to (1) the extreme diversity in pronotal morphology and (2) little comparative study focused on homology. These problems hinder tracing the evolutionary history of treehopper pronotal morphology. Here, we investigate the homological relationships of pronotal structures among treehoppers, especially in the subfamily Smiliinae. We first investigate smiliine species, whose pronotal morphology is relatively simple, then expand to species with a more complex pronotum. Our comparative observations using six smiliine species reveal that four traits share the same positions and structures among these species: (1) the humeral angle, (2) the median carina, (3) the starting point of the median carina, and (4) the posterior apex of the pronotum, indicating that these traits are homologous across these species. Based on this homology hypothesis, we generalize the pronotal morphology and propose landmarks to help interpret the diversified pronotum of a clade including Smiliinae and its relatives. Finally, we confirm that this generalization can be applied to other treehopper subfamilies. Our homology-based approach can provide a strategy to recognize the trajectory of pronotal morphology, which is often difficult to trace.

Cloning and expression analysis of a detoxification enzyme BmmGSTo3 gene in wild silkworm, Bombyx mandarina (Lepidoptera: Bombycidae)Original article

Ruonan LI, Enxi CHEN, Yuming ZHANG, Mengjiao WANG, Lin ZHU, Yixuan QIAN, Guodong ZHAO, Heying QIAN

Eur. J. Entomol. 122: 65-72, 2025 | DOI: 10.14411/eje.2025.007

Bombyx mandarina is one of prevalent pests in mulberry gardens during summer and autumn, posing significant challenges to sericulture across China. Glutathione S-transferase (GST), a vital detoxification enzyme in insects, plays a crucial role in protecting organisms from DNA damage and oxidative stress. In this study, the GSTo3 gene, coding glutathione S-transferase of B. mandarina, was cloned and its physicochemical properties and structures were predicted using bioinformatics tools. The relative expression levels in various tissues and induced transcriptional levels were detected by using qRT-PCR. Results revealed a 99.17% sequence similarity of GSTo3 gene between B. mandarina and Bombyx mori. It is mainly distributed in the head, fat body and epidermis tissues of B. mandarina larvae. After BmNPV infection, elevated GSTo3 expression levels were observed in the midgut. The transcriptional levels of GSTo3 gene were significantly up-regulated after exposure to phoxim, deltamethrin and chlorfenapyr exposure respectively in the fat body and midgut of B. mandarina. These findings underscore the significance of GSTo3 gene in exogenous materials metabolism and provide a new perspective on the resistance mechanism in B. mandarina.

Superparasitism and its effects on the fitness of the larval parasitoid, Coccygidium luteum (Hymenoptera: Braconidae)Original article

Patrick BESEH, Lakpo Koku AGBOYI, Benjamin MENSAH, John ABRAHAM

Eur. J. Entomol. 122: 80-87, 2025 | DOI: 10.14411/eje.2025.010

The tendency of parasitoid wasps to oviposit in a previously parasitised host (superparasitism) has long been considered detrimental to their fitness, until recent evidence showed that it may be an adaptive strategy. The solitary koinobiont parasitoid, Coccygidium luteum, was observed to superparasitise the fall armyworm, Spodoptera frugiperda, under laboratory conditions. This study was conducted to elucidate the oviposition choice between unparasitised and previously parasitised hosts by C. luteum and to determine the effect of superparasitism on progeny development and adult fitness, using fall armyworm larvae as hosts. In a choice assay, previously parasitised and unparasitised hosts were simultaneously exposed to C. luteum for oviposition. Oviposition duration and preference were observed and the influence of superparasitism on the development of immature parasitoids and adult fitness were investigated by exposing host larvae to single, double and triple parasitism at 1 h intervals. Coccygidium luteum readily attacked both unparasitised and previously parasitised hosts without discrimination. However, the time spent ovipositing on the unparasitised host was significantly longer than that on a previously parasitised host. Superparasitism did not significantly affect progeny development and the fitness of adult C. luteum. Offspring development time and size of adult parasitoids were similar in superparasitised hosts compared to hosts that were parasitised once. We conclude that superparasitism in C. luteum will have no effect on its mass rearing for the biological control of S. frugiperda.

COI barcodes for the identification of anthropophilic Biting Midges (Diptera: Ceratopogonidae: Culicoides) from the Brazilian AmazonOriginal article

Emanuelle DE SOUSA FARIAS, Moises Thiago DE SOUZA FREITAS, Sanmya Silva DOS SANTOS, Jokebede Melynda DOS SANTOS PAULINO-ROSA, Luiz DE SOUZA COELHO, Jordam William PEREIRA-SILVA, James Lee CRAINEY, Claudia María RÍOS-VELÁSQUEZ, Felipe Arley COSTA PESSOA

Eur. J. Entomol. 122: 88-98, 2025 | DOI: 10.14411/eje.2025.011

The genus Culicoides is the best known of the family Ceratopogonidae. Hematophagous females of the genus typically feed on the blood of vertebrate animals and in the Brazilian Amazon often on the blood of human beings. Amazon region anthropophilic Culicoides bites can provoke allergic reactions and transmit Mansonella ozzardi as well as the Oropouche virus. Past integrated taxonomy studies, combining morphometric and molecular analyses, have revealed hidden disease vector biodiversity and cryptic species with epidemiological and disease control relevance and have provided new tools to assist with vector identification. For this study we used light traps set in 12 distinct sites from three different Amazon states: Rondonia (1 site), Amazonas (3 sites) and Para (8 sites). We captured 12 different species of Culicoides representing seven different subgenera: C. foxi, C. fusipalpis, C. hylas, C. insignis, C. plaumanni, C. pseudodiabolicus, C. ruizi, C. debilipalpis, C. glabrior, C. jurutiensis, C. paraensis, C. pauci­enfuscatus. Between two and nine specimens were barcoded of each species. Neighbor joining and Maximum likelihood phylogenetic analysis with these COI barcodes showed the utility of these barcode sequences for species identification by clustering the barcode sequences into bootstrap-supported, species-specific monophyletic groups. Although this barcoding analysis did not resolve relationships between the species studied, it did reveal cryptic diversity within C. paucienfuscatus, C. glabrior, C. plaumanni, C. insignis and C. pseudodiabolicus. Two-dimensional geometric morphometrics, using eight wing-vein landmarks, robustly separated the analyzed species and raised questions about the validity of the subgenus Haematomyidium. Importantly, our GM wing landmark analysis separated C. paraensis from all the other analyzed species suggesting this type of analysis could be harnessed for epidemiological monitoring of this key Amazon-region vector species.

Diet of adult ladybird beetle host modifies the postdiapause development of the parasitoid Dinocampus coccinellae (Hymenoptera: Braconidae)Original article

John J. OBRYCKI, Catherine A. TAUBER, Maurice J. TAUBER

Eur. J. Entomol. 122: 111-117, 2025 | DOI: 10.14411/eje.2025.013

Our study showed that under natural conditions the rate and speed of postdiapause emergence by overwintering larvae of the endoparasitic wasp, Dinocampus coccinellae (Schrank) is enhanced when its ladybird beetle host Coleomegilla maculata (DeGeer) receives a nutritious (proteinaceous) diet during late winter and early spring. Living aphid prey provided during April and May yielded the fastest rates of D. coccinellae postdiapause development, followed by an artificial protein/carbohydrate diet and flowering (pollen-producing) heads of dandelion. D. coccinellae development was slowest when hosts received only sugar water or water alone. These results indicate that there is an interaction during late dormancy between host diet and subsequent parasitoid performance. From these studies we conclude that the initiation of feeding by C. maculata hosts, whether on prey or nutritious plant-based substances, during early spring may play an important role in the timing and success of postdiapause larval development and emergence by the parasitoid D. coccinellae. This interaction appears to be an adaptive feature that synchronizes the completion of the parasitoid's postdiapause development with the feeding and occurrence of potential ladybird beetle (C. maculata) hosts in spring. Thus, we conclude that at this point in their life cycles, the developmental success of both the host and the parasitoid are interdependent. It appears that the presence and utilization of aphid prey and/or a rich pollen source early in the spring season could have both positive and negative effects on the local population of ladybird beetle hosts.

Differential gene expression reprogramming in the midgut of Anticarsia gemmatalis (Lepidoptera: Noctuidae) triggered by an SKTI-derivative tripeptide protease inhibitor compared to the natural SKTI proteinOriginal article

Eulálio GUTEMBERG DIAS DOS SANTOS, Neilier RODRIGUES DA SILVA JÚNIOR, Marco Aurélio FERREIRA, Ian DE PAULA ALVES PINTO, Monique DA SILVA BONJOUR, Pedro Marcus PEREIRA VIDIGAL, Elizabeth Pacheco BATISTA FONTES, Maria Goreti ALMEIDA OLIVEIRA, Humberto Josué OLIVEIRA RAMOS

Eur. J. Entomol. 122: 119-136, 2025 | DOI: 10.14411/eje.2025.015

The velvetbean caterpillar, Anticarsia gemmatalis, is one of the major insect pests causing defoliation in soybean crops. Alternative strategies have been explored to reduce insect damage, including the use of protease inhibitors (PIs) that act as anti-nutritional factors. The tripeptide GORE-2, designed based on the soybean SKTI PI, exhibits enhanced protease inhibitory activity and reduces caterpillar survival. To investigate the molecular response to these PIs, we analyzed gene expression profiles using RNA-Seq. Both SKTI and GORE-2 induced extensive transcriptional reprogramming in the midgut after 24 h of exposure. The response patterns were generally similar, with changes in the expression of genes encoding digestive proteases and defense-related proteins, particularly those involved in peritrophic matrix protection and regeneration. However, SKTI elicited a more robust activation of defense signaling pathways, suggesting a stronger ability to trigger protective responses. This may explain the greater efficacy of GORE-2 in inhibiting proteolysis and reducing caterpillar survival potentially involving both amino acid starvation signaling and broader perception mechanisms developed to detect soybean-derived deterrents. As a mimetic tripeptide, GORE-2 may engage these pathways less efficiently. Notably, genes associated with detoxification and oxidative stress were more highly expressed in response to GORE-2, highlighting an additional advantage of using synthetic or mimetic protease inhibitors.

How long do diapause pupae of Antheraea pernyi (Lepidoptera: Saturniidae) store photoperiodic information?Original article

Katsuhiko SAKAMOTO, Yuichi EGI

Eur. J. Entomol. 122: 137-140, 2025 | DOI: 10.14411/eje.2025.016

Pupal diapause in the Chinese oak silkmoth (Antheraea pernyi) is maintained under short-day (SD) photoperiods but is terminated when pupae are exposed to long-day (LD) photoperiods for a specific number of days. This process suggests that pupae can count or retain memory of the number of LD days experienced. In this study, we investigated how long diapause pupae retain photoperiodic information acquired during LD exposure. Diapause pupae were first reared under SD conditions and then exposed to LD for 8 days - an insufficient duration to terminate diapause. Following this, the pupae were placed back under SD for 7, 14, or 21 days, and subsequently returned to LD to induce adult eclosion. Using the final transfer to LD as a reference point, we found that pupae exposed to SD for 7 or 14 days reached adulthood significantly earlier than control pupae that had not previously experienced LD. However, no significant difference in eclosion timing was observed between the 21-day SD group and the control group. These results suggest that photoperiodic information acquired during the 8-day LD exposure gradually decayed under SD conditions and was lost between 14 and 21 days after the transfer from LD to SD. Complete erasure of photoperiodic information under SD appeared to require approximately twice the duration of the initial LD exposure.

The Oriental latrine fly Chrysomya megacephala (Diptera: Calliphoridae) has arrived in Eastern EuropeShort Communication

Alexandru-Mihai PINTILIOAIE, Silviu PETROVAN

Eur. J. Entomol. 122: 141-146, 2025 | DOI: 10.14411/eje.2025.017

The Oriental latrine fly, Chrysomya megacephala (Fabricius) (Diptera: Calliphoridae), is a rapidly expanding species, likely to become one of the most widely used species in forensic entomology in the near future, as it is currently recorded on every continent except Antarctica. In Europe, it has been confirmed only from a few Mediterranean countries (Portugal, Spain and Malta), together with the closely related and also expanding Chrysomya albiceps. Our study confirms that Chrysomya megacephala has arrived in Eastern Europe, with adult individuals of both sexes recorded during surveys and trapping in a nature reserve along the Black Sea coast in Romania. We present initial data on the overall complex assemblage of native and non-native sarcosaprophagous Diptera at this site and highlight important knowledge gaps. Given its forensic relevance and potential health risks, further investigations into its distribution, ecology, and invasion pathways in Europe are required, particularly as climate change may support its continued expansion into Central Europe.

Overwintering survival of adults of Aedes albopictus and Aedes cretinus (Diptera: Culicidae) in a sheltered microclimate in northern Attica, GreeceOriginal article

Athanasios GIATROPOULOS, Chrisanthos LYMPEROPOULOS, Ilias KIOULOS, Antonios MICHAELAKIS, Georgios BALATSOS, Dimitrios PAPACHRISTOS, George KOLIOPOULOS

Eur. J. Entomol. 122: 154-163, 2025 | DOI: 10.14411/eje.2025.020

The mosquito species Aedes cretinus, which is native to Greece, has become increasingly scarce following the invasion of the highly competitive and widespread Aedes albopictus. The ability of mosquitoes to survive low winter temperatures plays a pivotal role in their population dynamics of the next season. In this study, we investigated the overwintering capacity of Ae. albopictus and Ae. cretinus adults under semi-field, sheltered microclimatic conditions in the northern area of Attica, Greece, during the winter of 2023-2024. Our findings revealed that 11% of Ae. albopictus females and 21.1% of Ae. cretinus females were capable of overwintering, highlighting the importance of sheltered microclimates in enabling overwintering survival under low outdoor temperatures. In contrast, males of both species failed to overwinter. The winter survival ability of adults was significantly greater in Ae. cretinus than in Ae. albopictus, and this may account for the occurrence of Ae. cretinus in the cooler environments of vegetated and wooded locations in northern areas of the Attica region. Nevertheless, the ability of Ae. albopictus females to also overwinter under the same sheltered microclimatic environment may affect the potential of interspecific competition in these areas.

Host plant specialization and bioturbation by the Amazonian cicada Orialella aerizulae (Hemiptera: Cicadidae)Original article

Erin M. RIVERA GROVES, Adrian FORSYTH, Edwin E. JURADO ROJAS

Eur. J. Entomol. 122: 164-172, 2025 | DOI: 10.14411/eje.2025.021

Adult cicadas in temperate zones are known for their synchronized, loud emergences after spending years underground as nymphs feeding on xylem sap. In contrast, the nymphal stage - where cicadas spend most of their lives - remains poorly understood, especially in the Neotropics. Spatial and host plant relationships between Amazonian cicada nymphs and host trees are virtually unknown, limiting our understanding of the ecological roles of cicadas in Amazonian forests. Here, we present the first detailed spatial ecology study of nymphs of Orialella aerizulae, a species that builds conspicuous turrets. Using systematic mapping and quantification of turrets around Tachigali spp. trees and random control trees, we provide the first quantitative evidence of a specific cicada-tree association by observing xylem-feeding on fine roots within these turrets. We examine the relationship between turret density, tree developmental stage and size, and document emergence and activity patterns over a 19-month field study in the Peruvian Amazon. Finally, we investigate the species' bioturbation impact and its potential relevance to tree growth.

Effect of local and exotic origin of Asteraceae seeds on their consumption by ground beetles (Coleoptera: Carabidae)Original article

Alois HONÌK, Martinková ZDENKA, Stano PEKÁR

Eur. J. Entomol. 122: 184-188, 2025 | DOI: 10.14411/eje.2025.023

Prior familiarity of carabid beetle populations with seeds of a plant species might result in a preference for locally available species, either due to evolutionary adaptation or learning. Rejection of exotic species might favor the survival of the exotic species due to enemy release. In adults of two Carabidae species, Pseudoophonus rufipes (DeGeer) and Harpalus affinis (Schrank), we investigated the consumption of seeds of the local (growing inside the distribution range of experimental carabid individuals) Asteraceae species Taraxacum officinale and Crepis biennis, and the exotic (growing outside this area) Asteraceae species Adenostyles alliariae and Homogyne alpina. We assumed that the seeds of the exotic species would be consumed less than the seeds of the local species because the seeds of exotic species are not typically found within the range of the tested carabid populations and therefore may be preferred less than the seeds of local species. The seeds of both exotic species were consumed less than the seeds of the preferred local species, T. officinale, but were consumed more than the seeds of the rejected local species, C. biennis. Both carabid species preferred A. alliariae seeds over H. alpina seeds. No difference was observed between the preferences of the mobile and well-flying species P. rufipes and the sedentary and rarely flying H. affinis. The study did not demonstrate the hypothesized preference of the two tested beetle species for the seeds of locally available plant species.

Exploring behavioural plasticity in the nesting biology of Megachile sculpturalis (Hymenoptera: Megachilidae) and its role in invasion successOriginal article

Manuela GIOVANETTI, Laura ZAVATTA, Sergio ALBERTAZZI, Simone FLAMINIO, Rosa RANALLI, Laura BORTOLOTTI

Eur. J. Entomol. 122: 198-209, 2025 | DOI: 10.14411/eje.2025.025

The success of animal species is shaped by a combination of ecological conditions and behavioural plasticity, with the latter being particularly crucial for the spread of invasive species. Megachile sculpturalis (Apoidea: Megachilidae), an East-Asian solitary bee introduced to France and subsequently spreading across Europe and North America, provides a case study. While its distribution is well-documented, the behavioural traits driving its success remain poorly understood. Our study aimed to explore behavioural patterns associated with its nesting cycle and potential expansion. In 2020, we conducted focal observations of individually marked females nesting in an artificial bee hotel. Daily recordings, based on ethograms, tracked females' activity at the site. We identified key behavioural units related to nesting goals and analysed the frequency and abundance of actions associated with each marked nest. Our results highlighted the significant effort females devote to nest-related actions, with 50-68% of all behaviours focused on nest building, suggesting any strategy of dispersion should be investigated in this context. While a typical nesting sequence was identified, individual variability indicated plastic nesting responses. Notably, females demonstrated a strong tendency to quickly shift their efforts to new nests following closure or abandonment, even provisioning multiple nests simultaneously. This ability to manage several nests at once may be crucial for establishing populations in invaded areas by rapidly expanding nesting efforts across multiple new sites during a single reproductive season. Our findings emphasize the contribution of behavioural studies in understanding reproductive strategies that influence a species' ability to settle in new environments and expand its range.

Prey of selected epigeic velvet spiders (Araneae: Eresidae)Original article

Milan TÙMA, Jiøí KRÁL, Martin FORMAN, Lubo¹ PURCHART, Yael LUBIN, Stano PEKÁR

Eur. J. Entomol. 122: 219-227, 2025 | DOI: 10.14411/eje.2025.027

The natural prey of spiders has been studied in only a few species, which limits our understanding of their role in ecosystems. Eresid spiders often have a hidden lifestyle; thus, their ecology is still poorly understood. Here we investigated the natural prey of four species of ground-dwelling eresid spiders from Israel - Adonea fimbriata, Dorceus fastuosus, Eresus sp., and Loureedia annulipes - and one (Eresus kollari) from Central Europe. In the last species, we studied the prey in more detail: we compared the natural with the potential prey and investigated prey acceptance using six prey types (Blattodea, Coleoptera, Hemiptera, Hymenoptera, Isopoda, and Orthoptera) under semi-field conditions. The natural prey was studied by analysing the exoskeleton remains of prey found in the webs. We found that the prey composition in the webs differed significantly among species, though two insect groups, beetles and ants, dominated in all eresid species. Among beetles, tenebrionids were the most frequent in eresid species from Israel, while carabids dominated in E. kollari. Beside these beetles, weevils were frequent prey in all examined species. The index of the trophic niche breadth was narrow in all examined species, indicating trophic specialisation; however, feeding trials revealed that E. kollari accepted a wide variety of prey types, showing that it is a generalist opportunistic predator. All eresid species studied here appear to be stenophagous generalists, capturing mainly beetles and ants.

Phylogeny of the genus Amerila (Lepidoptera: Erebidae: Arctiinae: Amerilini), with remarks on male genitalia and descriptions of new species from Africa and IndonesiaOriginal article

Nikolai IGNATEV, Gyula M. LÁSZLÓ, Günter C. MÜLLER, Harald SULAK, Roman YAKOVLEV, Zdenìk FALTÝNEK FRIC

Eur. J. Entomol. 122: 249-278, 2025 | DOI: 10.14411/eje.2025.031

The objective of this paper is to reconstruct the phylogeny of the Palaeotropical arctiine genus Amerila Walker, 1855 through investigations of ancestral distribution and co-evolution of wing patterns linked with mimicry, as well as analyses of genetic and genital morphological traits. We perform analyses of molecular data available from previous studies combined with DNA sequences obtained during this research, a total of 3894 bp for 48 species using one mitochondrial (COI) and six nuclear markers (EF-1α, GAPDH, RpS5, wingless, arginine kinase, and ATP). We analysed the data using two probabilistic methods: Maximum Likelihood and Bayesian Inference. Among the known species-group taxa, we include for the first time in a phylogenetic analysis the species A. accra (Strand), A. bauri Möschler, A. bipartita (Rothschild), A. brunnea bipartitoides Häuser & Boppré, A. puella carneola (Hampson), A. castanea (Hampson), A. invidua (Bethune-Baker), A. leucoptera (Hampson), A. lupia (Druce), A. madagascariensis (Boisduval), A. nigrivenosa (Grünberg), A. puella (Fabricius), A. roseomarginata (Rothschild) and A. vitrea saalmuelleri (Rothschild). We describe two new species: A. florinae Ignatev, sp. n. from Bacan island (Indonesia) and A. smithi László, sp. n. from Zambia, the latter included in the phylogenetic analyses. We raise A. brunnea bipartitoides, A. vitrea saalmuelleri and A. puella carneola to species rank: A. bipartitoides stat. rev., A. saalmuelleri stat. rev., A. carneola stat. rev. We illustrate the habitus and the male and female genitalia of most of the taxa presented in this paper.

Can butterflies (Lepidoptera) serve as effective bioindicators for assessing the health of Algerian cedar forests?Original article

Saliha SALMI, Riadh MOULAI, Balla EL HACENE, Affef BAALOUDJ

Eur. J. Entomol. 122: 287-301, 2025 | DOI: 10.14411/eje.2025.033

This study investigates the abundance and diversity of diurnal butterflies in two types of forest habitats - a degraded cedar forest and a protected cedar forest - located in Djurdjura National Park, Algeria. The survey was conducted over a one-year period, from April 2022 to March 2023. A total of 1,479 individuals, belonging to 48 species, were recorded. Among them, 13% are endemic to North Africa. The primary factor contributing to the degradation of the cedar forest in Djurdjura National Park appears to be repeated wildfires. Nevertheless, the clearings created by fire may temporarily promote floral diversity and, consequently, butterfly richness. The results reveal complex interactions between butterflies, habitat quality, and seasonal variations. No clear segregation was observed between butterfly communities in the two cedar forest types, although some species exhibited distinct ecological preferences: Celastrina argiolus, Zygaena algira, Tomares ballus, Zygaena trifolii, and Pyronia cecilia were more associated with the degraded cedar forest, whereas Pyrgus alveus, Zerynthia rumina, Pararge aegeria, and Issoria lathonia were linked to the protected forest. However, further analyses are required to confirm their status as reliable bioindicators. The study also demonstrates that butterfly abundance varies significantly with the seasons, peaking in summer, highlighting the critical influence of climatic conditions. These findings could contribute to the enrichment of protected species lists in Algeria and North Africa, as well as to the maintenance of biodiversity and ecosystem services.

Nature conservation and insect decline in Central Europe: Loss of Lepidoptera in key protected sites is accompanied by substantial land cover changesOriginal article

Gwendoline PERCEL, Lukas CIZEK, Jiri BENES, Jan MIKLIN, Pavel VRBA, Pavel SEBEK

Eur. J. Entomol. 122: 308-322, 2025 | DOI: 10.14411/eje.2025.035

The insect biodiversity crisis affects diverse cultural landscapes as well as natural and semi-natural habitats. Accordingly, the effectiveness of protected areas in conserving insect communities needs to be evaluated. We employed photo-interpretation of aerial photographs from the past (1938-1947) and present (2014-2019) to analyse changes in natural habitats with diverse canopy cover in seven long-term protected areas (jointly called 'reserves') in the Czech Republic, Central Europe, and evaluated potential links between these changes and butterfly and moth (Lepidoptera) declines. We observed a marked decrease in habitat heterogeneity, largely due to the expansion of closed-canopy forests at the expense of semi-open habitats (e.g. forest steppes, open woodlands) and open grasslands. An analysis of faunistic records of 162 species of butterflies and 160 species of macro-moths before and after 2000 showed that, on average, the reserves have experienced losses of 26% of butterfly species and 19% of moth species. Trait-based analyses suggested that the losses were associated with particular life-history traits. Non-generalist butterflies with a short period of seasonal flight activity, and moths associated with grasslands and with non-feeding adults, had a greater probability of going missing (meaning potentially locally extinct) in the reserves. These findings suggest that conservation efforts should prioritise active management that aims to restore habitat heterogeneity in order to mitigate the ongoing trend of insect decline.

Extrafloral nectaries on leaf margins and their ant visitors in bitter gourd, Momordica charantia (Cucurbitaceae): A case of facultative mutualismOriginal article

Rakhi VERMA, Raina Nivedita SAMUEL, Joy Nivedita SAMUEL

Eur. J. Entomol. 122: 323-329, 2025 | DOI: 10.14411/eje.2025.036

Extrafloral nectaries (EFNs) are nectar-secreting structures found on various plants that attract insects, especially ants, which may in turn provide indirect defense against herbivores. This study investigates the presence, morphology, and ecological role of EFNs in Momordica charantia (bitter gourd) and documents the diversity and spatial behavior of its ant visitors. Field observations and scanning electron microscopy revealed button-shaped EFNs located along the adaxial leaf margin, which first appeared at the flowering stage and peaked during the early fruiting stage before declining. Six facultative ant species - Tapinoma melanocephalum, Crematogaster subnuda, Camponotus compressus, Camponotus sericeus, Tetraponera rufonigra, and Lepto­genys sp. - were recorded visiting the EFNs. All species spent significantly more time on the leaf margins than on other plant parts, with T. melanocephalum being the only species to show a strong preference for flowers. The findings highlight a stage-dependent EFN production in M. charantia and a preferential ant visitation pattern centered around EFNs, suggesting a potential role for these glands in ant-mediated plant defense. This study underscores the need for further experimental research to assess the defensive benefits of EFN-visiting ants in crop protection.

Effect of buffer strips along small watercourses on farmland spiders (Araneae) and ground beetles (Carabidae)Original article

Johannes BURMEISTER, Sabine BIRNBECK, Bernd PANASSITI, Theo BLICK, Roswitha WALTER

Eur. J. Entomol. 122: 331-343, 2025 | DOI: 10.14411/eje.2025.038

Buffer strips along small waterways that are adjacent to arable land are important for improving water quality and are common measures in agri-environmental schemes. To assess their contribution to arthropod species richness (alpha and gamma diversity) and differences in assemblages (beta diversity) we used pitfall traps to catch arachnids and ground beetles at 40 fields in four regions across Bavaria, Germany, during two or three one-week sampling periods in summer. A permanent vegetated buffer strip was present on 25 of the study fields, 15 were cropped to the field border adjacent to the waterway. Trapping was conducted in the riparian field border, the buffer zone (with or without an established buffer strip), the field edge about 15 m distant to the field border and in the field centre in 80 m distance. Results indicated that alpha and gamma diversity were lowest in the field centre, and the riparian field border had the highest species richness of arachnids. Alpha diversity of ground beetles and spiders was not enhanced in fields with a buffer strip and the buffer strip did not have significantly higher species richness than cropped fields at the same field position. In contrast for ground beetles a higher species richness was observed in the unbuffered field border. An indicator species analysis showed that most of this effect was due to spillover of eurytopic arable species from the neighbouring field. For ground beetle assemblages buffered riparian field borders showed a higher dissimilarity to the other sampled field positions than riparian field borders without an adjacent buffer strip. We conclude that the establishment of buffer strips altered the faunal composition within the buffered riparian field border habitat in summer. We discuss ecological consequences, such as increased beta-diversity and changes in competition, which make buffer strips an important component of the preservation of biodiversity in agricultural landscapes.

Taxonomic study of the genus Aphonoides (Orthoptera: Oecanthidae: Podoscirtinae) in ChinaOriginal article

Shu-Fei WEI, Dan WANG, Zhe-Yuan YU, Tao ZHANG, Pu GONG, Zhu-Qing HE

Eur. J. Entomol. 122: 344-358, 2025 | DOI: 10.14411/eje.2025.039

This study presents a comprehensive taxonomic revision of the genus Aphonoides Chopard, 1940 in China, integrating morphological examination with molecular phylogenetics. As a result, we describe a new species, A. ouyue He & Wei, sp. n., from China, and synonymize A. aspidoid Zheng et al., 2021, syn. n. with A. japonicus (Shiraki, 1930). We also upgrade A. medvedevi alius Gorochov, 2007 to species status as A. alius Gorochov, stat. n., remove A. tessellatus Chopard, 1969, A. punctatus (Haan, 1844) and A. fuscirostris (Chopard, 1969) from the Chinese fauna, and provide the first description of the genitalia for A. wuyiensis Yin & Zhang, 2001. Molecular analysis of the COI gene (658 bp), including Aphonoides and Mistshenkoana Gorochov, 1990, reconstructs a phylogenetic tree confirming that both genera are monophyletic. The results also strongly support the current morphological classification of Aphonoides.

Annual dynamics of subterranean ants (Hymenopetra: Formicidae) in a cork oak forest in Morocco (Northwest Africa)Original article

Bilal EL AJJOURI, Joaquin L. REYES-LÓPEZ, Ahmed TAHERI

Eur. J. Entomol. 122: 372-380, 2025 | DOI: 10.14411/eje.2025.042

Subterranean ants play a critical role in soil ecosystems, yet their cryptic lifestyle and the challenges associated with their sampling hinder comprehensive understanding of their biodiversity. This study examines the seasonal dynamics of subterranean ant communities in a cork oak forest in northwestern Morocco. We employed an adapted soil-washing method. that enabled the collection of 1,318 individuals from 17 species, of which 41.18% were identified as hypogaeic. The analysis revealed significant differences in community composition across seasons, with summer exhibiting notably higher species richness and worker abundance. Non-hypogaeic ants showed strong positive correlations with temperature and negative correlations with rainfall, while hypogaeic ants exhibited weak and non-significant responses to climatic variables, likely due to their ecological specialization. These results suggest that climatic factors distinctly influence ant subgroups and highlight the ecological relevance of subterranean ants in soil biodiversity. The study underscores the importance of tailored sampling methodologies for capturing the diversity and dynamics of these often-overlooked communities.

Morphological and genetic evidence support the species status of Lasioglossum angustifrons, distinct from L. punctatissimum (Hymenoptera: Halictidae)Original article

Simone FLAMINIO, Diana LUCENTE, Alessandra RICCIERI, Denis MICHEZ

Eur. J. Entomol. 122: 381-391, 2025 | DOI: 10.14411/eje.2025.043

Europe hosts a remarkable diversity of wild bees, among which the genus Lasioglossum Curtis, 1833 ranks among the most species rich. The definition of the taxonomic status of many species within this genus remains challenging. In this work, we reassessed the subspecific status of Lasioglossum (Hemihalictus) punctatissimum angustifrons (Vachal, 1892) through a comprehensive analysis integrating morphology, molecular and distributional data. Phylogenetic reconstruction using a Maximum Likelihood tree and three independent species delimitation models revealed that L. angustifrons forms a distinct and well-supported lineage, separated from L. punctatissimum (Schenck, 1853) and related taxa by significant genetic distances. Morphological examination confirmed stable diagnostic features, including reddish metasomal terga, finer punctation on the scutum, and the specific appearance of the male genitalia. Lasioglossum angustifrons is mainly distributed along the coastal regions of Western North Africa, extending to the Iberian Peninsula and Sicily, with a few inland records. Based on congruent morphological and molecular evidence, Lasioglossum (Hemihalictus) angustifrons stat. nov. is best treated as a species than a subspecies. This revision resolves a long-standing taxonomic ambiguity in the Lasioglossum punctatissimum complex and contributes to a more accurate understanding of species diversity in Mediterranean halictine bees.

Direct tests of haplodiploid inheritance in Thrips tabaci (Thysanoptera: Thripidae) using parent-offspring SSR-GBSOriginal article

Tatsumi KUDO, Po-Wei HSU, Shigeto DOBATA

Eur. J. Entomol. 122: 404-412, 2025 | DOI: 10.14411/eje.2025.045

Haplodiploidy is a sex determination system in which males are haploid and females are diploid. In the typical haplodiploid system, females inherit half of their genome from each parent, whereas males inherit a haploid genome exclusively from their mother. However, several exceptions to this pattern have recently been reported in some insects and spider mites, underscoring the need for rigorous genetic analyses of inheritance patterns in other haplodiploid species. Thrips (order Thysanoptera) are a major clade that exhibits haplodiploidy. Here, we investigated inheritance in the onion thrips, Thrips tabaci, by comparing parent-offspring genotypes using an amplicon-based microsatellite genotyping-by-sequencing method (Short Sequence Repeats-Genotyping by Sequencing, SSR-GBS). We successfully genotyped eight loci across eight families from the sexual lineage and additionally analyzed five families from the thelytokous lineage, including both diploid and triploid strains. In the sexual lineage, segregation conformed to arrhenotoky: F1 females inherited one allele from each parent, and F1 males carried a single maternal allele. In the thelytokous lineage, offspring inherited only alleles present in the mother. Compared with fragment-length genotyping, SSR-GBS increased the mean number of alleles detected per locus by 28% and reduced the rate of size homoplasy (alleles of the same size but different sequences), yielding clearer separation of the sexual and thelytokous lineages. These findings advance our understanding of the evolution of reproductive systems in this major haplodiploid clade and demonstrate the utility of SSR-GBS for high-resolution SSR genotyping.

Laboratory evaluation of effects of powdered sulphur on the oviposition, fruit detection and behaviour of Drosophila suzukii (Diptera: Drosophilidae) on strawberryOriginal article

Sergio PÉREZ-GUERRERO, José María MOLINA, Cristina MONTIEL, Alberto REDONDO-VILLA, Laura AVIVAR-LOZANO

Eur. J. Entomol. 117: 210-215, 2020 | DOI: 10.14411/eje.2020.022

Drosophila suzukii (Matsumura, 1931) is an invasive pest from South-East Asia that can damage a wide range of soft-skinned fruit crops (especially berries) resulting in serious financial losses. At present, control of D. suzukii is still mainly based on adult-oriented chemical pesticides that is likely to result in resistance and environmental pollution. In this context, alternative methods that are compatible with sustainable management are required. Sulphur and its different formulations are widely used for a long time as a fungicide and insecticide on many crops as it is environmentally-friendly and compatible with organic management. In this study, the effect that powdered sulphur-treated strawberries had on oviposition were evaluated under laboratory conditions in order to confirm the findings of a previous report on blueberries. No-choice and choice experiments were carried out to assess whether powdered sulphur affected the ability of the fly to detect fruit, altered its behaviour or did both. The treatment of strawberries resulted in a reduction of over 79% in the total number of D. suzukii that developed. In the no-choice experiment, there was a reduction of over 70% in the time the flies spent on treated compared to untreated fruit. In the choice experiment, 57% of the females chose untreated and 43% treated strawberries, but this difference was not statistically significant. Furthermore, females took over 75% longer to visit the treated fruit than the control. Sulphur had no noteworthy effect on fly behavior, although oviposition only occurred on untreated fruit indicating that sulphur affects the acceptance and suitability of fruit for females. These results indicate that powdered sulphur could be an appropriate alternative to synthetic-organic insecticides for controlling D. suzukii and is compatible with organic crop management and waste reduction strategies.

Assemblages of flower-visiting insects in clear-cuts are rich and dynamicOriginal article

Per MILBERG, Victor ERIKSSON, Karl-Olof BERGMAN

Eur. J. Entomol. 118: 182-191, 2021 | DOI: 10.14411/eje.2021.019

Clear-cuts in production forests provide an open, sunny environment, with an abundance of nectar, as well as exposed soil and woody debris. This makes them a potential habitat for several groups of insects that typically use open habitats like grassland, including those species that visit flowers. In the current study, we used colour pan traps to catch flower-visiting species. Study sites were selected according to age (2-8 yrs since clear-cut) and land-use history (forest or meadow 150 yrs ago). We caught and identified solitary bees (395 specimens belonging to 59 species), social bees (831/16), other Hymenoptera (367/66), Syrphidae (256/31), and beetles (Lepturinae & Cetoniinae; 11,409/12). Age of the clear-cut strongly affected species composition as well as several groups and species, with most species caught mainly in the younger clear-cuts. Flower abundance statistically affected several groups and species, but inferring causation is difficult due to the flower-richness bias in pan trap catches. Bare soil and woody debris were important for the insect assemblage sampled, while bare rock was not. Although the majority of the insects caught were forest species, about one third of the species were associated with open, agricultural sites and hence seem to be able to locate and exploit resources in clear-cuts.

Taxonomic revision of the highly threatened Eumerus tricolor species group (Diptera: Syrphidae) in Southeast Europe, with insights into the conservation of the genus EumerusOriginal article

Ana GRKOVIÆ, Jeroen VAN STEENIS, Marija MILIÈIÆ, Nata¹a KOÈI© TUBIÆ, Mihajla DJAN, Sne¾ana RADENKOVIÆ, Ante VUJIÆ

Eur. J. Entomol. 118: 368-393, 2021 | DOI: 10.14411/eje.2021.039

The diversity in the Eumerus tricolor group, the largest group within the genus in Southeast Europe, is investigated. Two new, locally distributed species are described, E. crispus Vujiæ & Grkoviæ, sp. n. from Serbia and E. nigrorufus Grkoviæ & Vujiæ, sp. n. from Montenegro. In addition to Southeast European members, one related species E. arctus van Steenis, sp. n. is described from Switzerland. We designate lectotypes for E. ovatus Loew, 1848, E. tarsalis Loew, 1848, E. tricolor (Fabricius, 1798) and E. varius Meigen, 1822. A map of the distribution of members of the E. tricolor group in Southeast Europe is provided. In addition, records from other parts of Europe are listed and an illustrated identification key to the SE European species of the E. tricolor group provided. We also study and discuss the significance of small habitat patches for the preservation of species of Eumerus, because the three species described in this paper are currently known from such patches.

Comparative analysis of the mitochondrial genome of Hypospila bolinoides and Lygephila dorsigera (Lepidoptera: Noctuoidea: Erebidae), with implications for their phylogenyOriginal article

Muzafar RIYAZ, Rauf Ahmad SHAH, Ignacimuthu SAVARIMUTHU, Sivasankaran KUPPUSAMY

Eur. J. Entomol. 120: 187-198, 2023 | DOI: 10.14411/eje.2023.024

To analyse the phylogenetic relationships of members of the family Erebidae, the mitogenomes of two species namely, Hypospila bolinoides Guenée, 1852 and Lygephila dorsigera (Walker, 1865) were sequenced. H. bolinoides and L. dorsigera have circular genomes that are 15,640 bp and 15,567 bp long, respectively. Despite their different lengths, both genomes contain an identical gene order, which includes 13 protein-coding genes (PCGs), 22 tRNA genes, two rRNA genes and an A+T-rich region. The nucleotide composition of the H. bolinoides mitogenome vis-à-vis the A+T rich region was 80.08%, which is higher than that of L. dorsigera (78.03%). The AT skew and GC skew were mostly negative for both species. The A+T-rich regions of H. bolinoides and L. dorsigera were 287 bp and 383 bp long, respectively, and confined to common characteristics of Noctuoidea. Concatenated sequences of 13 PCGs from 170 taxa belonging to the five families of the superfamily Noctuoidea and two butterfly mitogenomes used as outgroups were utilized for Bayesian inference (BI) and Maximum Likelihood (ML) analyses. The first-ever comprehensive analysis of the mitogenomes of the genera Lygephila (Billberg, 1820) and Hypospila (Guenée, 1852) revealed that the superfamily Noctuoidea has a well supported monophyletic relationship with (Notodontidae + (Erebidae + (Nolidae + (Euteliidae + Noctuidae))). In support of previous partial genome analyses, the present study provides phylogenomic evidence that L. dorsigera, hitherto classified as a member of the subfamily Erebinae, can be placed within the subfamily Toxocampinae.

Detritus-filled crotches - an overlooked tree-related microhabitat in Central EuropeOriginal article

Malte WEBER, Gerhard ZOTZ

Eur. J. Entomol. 121: 31-36, 2024 | DOI: 10.14411/eje.2024.005

In the field of biodiversity research, tree-related microhabitats in the temperate zone have received substantial interest in the last decade, but one particular microhabitat type, crown microsoils in tree crotches, has largely escaped the attention of scientists. We present a study from Central Europe that focused on the meso- and macrofauna in this microhabitat type. In twelve crotches we found more than 3000 individual animals out of 14 orders, encompassing all major elements of the terrestrial soil decomposer food web. Collembola accounted for more than 50% of the total. As expected, taxon richness correlated with habitat size. We conclude that this is an ideal natural system to study fundamental ecological questions of faunal community assembly.

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