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Results 91 to 120 of 279:

Establishment of a primary cell culture of Thrips palmi (Thysanoptera: Thripidae)Short Communication

Amalendu GHOSH, Heena DHALL, Sumit JANGRA

Eur. J. Entomol. 120: 297-303, 2023 | DOI: 10.14411/eje.2023.030

Thrips palmi (Thysanoptera: Thripidae) is an important pest of vegetables, ornamental plants and fruit crops. In addition to the direct damage caused by feeding, it transmits several tospoviruses. The absence of an in vitro assay system is a major bottleneck in investigating thrips-tospovirus interactions. The present study reports the establishment of a primary cell culture of T. palmi, which was initiated using embryonic tissue as an explant in modified Kimura's medium. Fibroblast-like cells began to be produced 3 h after tissue implantation and were the dominant cell type. They grew in size and number and covered most of the surface. This primary cell culture survived for 37 days providing sufficient time for analytical molecular studies on the replication of tospovirus and interactions with the vector components.

Effect of the nutritional quality of primary food on the development, sex ratio, and size of a parasitoid in a quadri-trophic food webOriginal article

Ąudmila ČERNECKÁ, Stano PEKÁR

Eur. J. Entomol. 120: 304-309, 2023 | DOI: 10.14411/eje.2023.031

This study explores the effect of nutritional composition on the fitness of consumers in a quadri-trophic food web. Specifically, we studied how enrichment of the food of fruit flies Drosophila melanogaster (Meigen, 1830) transfers to the spider Phylloneta impressa (L. Koch) (Theridiidae) and its parasitoid wasp, Zatypota percontatoria Mueller (Ichneumonidae). We reared fruit flies on balanced, protein-enriched, and lipid-enriched diets, and observed several fitness-related traits in both the predator and the parasitoid. In spiders, we did not find significant differences among treatments in their body size and the probability of building a cocoon web. In parasitoids, we failed to find significant differences among treatments in the time to wasp pupation, the duration of pupation, the length of the wasp tibia and pronotum, and the body mass. However, the sex ratio of hatched wasps differed significantly among treatments from the expected 1 : 1. In the balanced diet group, the majority of wasps were males. There was a significant positive relationship between the spider prosoma size and the length of the wasp fore wing. Our results suggest that the quality of the food of the primary consumer had little effect on the fitness of the organism at the fourth trophic level.

The proteins involved in larval colouration in the cuticle and haemolymph of two strains of Antheraea pernyi (Lepidoptera: Saturniidae)Short Communication

Guobao WANG, Jiangrun WANG, Lei NIE

Eur. J. Entomol. 120: 310-315, 2023 | DOI: 10.14411/eje.2023.032

The proteome profiles of the cuticle and haemolymph of two strains of the Chinese Oak silk moth A. pernyi, with cyan and yellow coloured bodies, were compared in order to identify the differentially expressed proteins (DEPs) that determine the differences in the colouration of the two strains. A total of 324 DEPs, including 124 up-regulated and 200 down-regulated proteins, were identified in the cuticles of the cyan and yellow coloured individuals, and 286 DEPs including 79 up-regulated and 207 down-regulated proteins in the haemolymph of the cyan and yellow coloured individuals. Several DEPs associated with the colour of larvae of A. pernyi were screened, including an ommochrome-binding protein, juvenile hormone esterase, protein yellow, L-dopachrome tautomerase yellow-f2 and fumarylacetoacetase, the expression levels in the cuticle and haemolymph of the yellow larvae were higher than those in the cyan coloured larvae, indicating their possible roles underlying the colouration of the yellow larvae of A. pernyi.

The effectiveness of Chrysoperla carnea (Neuroptera: Chrysopidae) and Beauveria bassiana (Ascomycota: Hypocreales) as control agents of Neophilaenus campestris (Hemiptera: Aphrophoridae) a vector of Xylella fastidiosa Original article

Laura AVIVAR-LOZANO, José María MOLINA, Sergio PÉREZ-GUERRERO

Eur. J. Entomol. 120: 316-323, 2023 | DOI: 10.14411/eje.2023.033

The effectiveness of two biological control agents, Chrysoperla carnea (Neuroptera: Chrysopidae) and the entomopatho­genic fungus Beauveria bassiana (Ascomycota: Hypocreales) against nymphs and adults of Neophilaenus campestris (Hemi­ptera: Aphrophoridae) was determined under laboratory conditions. First, different nymphal stages of N. campestris were presented to different larval stages of C. carnea. Second, the effect of the foam produced by N. campestris nymphs on the larvae of C. carnea predation was evaluated. Finally, four concentrations of a wild strain of B. bassiana, BbGEp1, were sprayed on plants in order to determine their lethality for adults of N. campestris. Second and 3rd-instar larvae of green lacewing larvae are capable of capturing and killing 3rd and 5th-instar nymphs of N. campestris. The percentage of 3rd-instar lacewing larvae that killed nymphs was significantly higher than that were killed by second-instar larvae. Second-instar larvae killed significantly more 3rd-instar nymphs than 5th-instar nymphs. Third instar lacewing larvae killed an average (± SEM) of 1.50 ± 0.31 5th-instar nymphs and 2nd-instar larvae killed very few nymphs. Spittlebug foam reduced, but did not prevent predation. The lethality of the entomopathogenic B. bassiana BbGEp1 used against adults of N. campestris was characterized by an LC50 value of 1.61 × 106 conidia/mL and LT50 of 3.63 days at 1 × 107 conidia/mL. The present study provides new and valuable data on the activity of two promising biological control agents of vectors of the bacterium Xylella fastidiosa. Further research is needed to confirm the results presented here and on the cost effectiveness of using these control agents as alternatives to synthetic insecticides for preventing the further spread of X. fastidiosa in Europe.

Diversity and relationships between Andean shrubland puna butterflies in the genus Punargentus (Lepidoptera: Nymphalidae: Satyrinae)Original article

Tomasz W. PYRCZ, Pierre BOYER, José A. CERDEÑA GUTIERREZ, Oscar MAHECHA JIMENEZ, Jadwiga LORENC-BRUDECKA, Kamila S. ZAJˇC, Rafał GARLACZ, Artur MROZEK, Dorota LACHOWSKA-CIERLIK, Jackie FARFÁN, Christer FÅHRAEUS, Gerardo LAMAS, Marianne ESPELAND

Eur. J. Entomol. 120: 324-337, 2023 | DOI: 10.14411/eje.2023.034

Two new species and two new subspecies of the satyrine butterfly genus Punargentus Heimlich, P. atusparia sp. n., P. heimlichi sp. n., P. blanchardi libertas ssp. n. and P. atusparia yupania ssp. n., are described from north-central Peru (Ancash, Huánuco and La Libertad). The affinities of the new taxa are evaluated based on molecular data obtained using target enrichment and COI barcoding. Punargentus is fully supported and consists of two branches, the P. lamna clade with four species and P. blanchardi clade with three species, two of which are described here. Species in the P. blanchardi clade occur in Andean shrubland, at altitudes between 2800-3600 m, whereas those in the P. lamna clade occur in puna grassland at 3600-4600 m, with occasional overlaps. Based on their habitat preferences, none of the newly described species are in need of immediate conservation measures. The genus Etcheverrius Herrera is reinstated, with E. chiliensis (Guérin-Méneville) and E. tandilensis (Köhler), comb. n.

Recent growth in occurrences of Acrida ungarica (Orthoptera: Acrididae) at the northern margin of the species range: Is it the result of global warming?Original article

Zoltán KENYERES, Norbert BAUER, Thomas ZUNA-KRATKY, Máté MAGYARI, Josip SKEJO, Anton KRI©TÍN

Eur. J. Entomol. 120: 338-345, 2023 | DOI: 10.14411/eje.2023.035

The number of records of Acrida ungarica in novel habitats and in places where the species was considered extinct, has markedly increased in recent years. We hypothesized that the newly revealed occurrences, on the northern margin of the species range, were not due to an increase in survey effort, but rather a result of the warming climate in the Carpathian Basin. We studied the occurrence data of Acrida ungarica and the intensity of Orthoptera surveys over the period of 2002-2022 in 1,840 6 × 5.5 km grid cells of the Central European Flora Mapping System. As background variables, we included macroclimatic data and the vegetation cover of the main potential habitats. The number of grid cells containing A. ungarica was significantly higher than the corresponding increase in cells surveyed for orthopterans and the presence of sand and salt steppe habitats, respectively. Furthermore, from 2012 to 2022, significant increasing trends were revealed in effective heat summation above 10°C in the summer months. That the increase in the known distribution of A. ungarica is unrelated to the rise in survey intensity indicates that the species distribution seems to be increasing, making it one of the winners from global warming. At the same time, regional rising levels of disturbance (highway networks, large fallow areas) can contribute to the successful horizontal expansion of a species related to open habitats and this species tolerance of disturbance.

The effect of conductor wires of different metals on the amount of honey bee (Apis mellifera; Hymenoptera: Apidae) venom collected and its chemical contentOriginal article

Nazim TURAN, Cengiz ERKAN

Eur. J. Entomol. 120: 366-371, 2023 | DOI: 10.14411/eje.2023.040

Researchers have been interested in honey bee, Apis mellifera L., venom for many years, but the previous studies focused mainly on its pharmacological properties and the factors affecting its production and chemical content were less well evaluated. This research aims to investigate the potential effect of the method of collecting bee venom on its chemical content. To achieve this, brass, steel, aluminium and copper wire conductors were used. This research was carried out at Van YYU Beekeeping Application and Research Centre, where the venom was collected dry on glass plates from 16 Caucasian F1 honey bee colonies. The quantity produced and its composition in terms of melittin, apamin and phospholipase A2 were determined after storage. Duncan and LSD Multiple Comparison tests on the amounts of venom collected using aluminium, copper, steel and brass wires for conducting electricity, revealed it was 21.03 ± 3.50, 15.08 ± 0.32, 22.38 ± 6.35 and 30.35 ± 3.66 mg, respectively. Although these values differed significantly (p < 0.05), the chemical content of the bee venom was the same. The colour of the venom was associated with the material of the electrical conductor used. It was concluded that it would be beneficial to carry out further studies using more colonies along with using residue analysis.

A revision of the Neotropical genus Chespiritos (Diptera: Sphaeroceridae: Limosininae)Original article

Gregory K. KUWAHARA, Stephen A. MARSHALL

Eur. J. Entomol. 117: 164-189, 2020 | DOI: 10.14411/eje.2020.019

The genus Chespiritos Marshall, 2000 (Diptera: Sphaeroceridae) is revised, including C. sindecimus Marshall, 2000, C. pervadens Roháček and Buck, 2003 and 19 new species. The following new species are described, keyed and placed in a morphological phylogeny: C. anguineus sp. n. from Bolivia, C. attenboroughi sp. n. from Argentina, C. balrogiformis sp. n. from Peru, C. bolanosi sp. n. from Mexico, C. calceus sp. n. from Peru, C. chicobrazos sp. n. from Costa Rica, C. coronatus sp. n. from Bolivia, Brazil, Colombia, Costa Rica, Ecuador and Trinidad, C. dolabratus sp. n. from Costa Rica, C. elephantus sp. n. from Ecuador and Peru, C. extendido sp. n. from Bolivia, Colombia, Costa Rica, Ecuador, Mexico, Panama and Venezuela, C. ganchopico sp. n. from Argentina, Bolivia, Ecuador, Panama and Tobago, C. gladiator sp. n. from Costa Rica, C. hojagrande sp. n. from Costa Rica and Mexico, C. jamaicensis sp. n. from Jamaica, C. lepustergum sp. n. from Costa Rica and Venezuela, C. metroidiformis sp. n. from Costa Rica, C. paraiso sp. n. from Dominican Republic, C. peckorum sp. n. from Ecuador, and C. ventrisetis sp. n. from Brazil, Costa Rica and Venezuela.

Feeding habits of the endangered Japanese diving beetle Hydaticus bowringii (Coleoptera: Dytiscidae) larvae in paddy fields and implications for its conservationOriginal article

Reiya WATANABE, Shin-Ya OHBA, Tomoyuki YOKOI

Eur. J. Entomol. 117: 430-441, 2020 | DOI: 10.14411/eje.2020.047

The diving beetle Hydaticus bowringii Clark, 1864 (Coleoptera: Dytiscidae) is on the Red List of Japan as 'Near Threatened'. However, there is no quantitative information on the feeding habits of its larvae, which could be used to aid its conservation. In order to determine the prey that are important for the survival and growth of larvae of H. bowringii, we combined the results of field surveys of paddy fields and rearing experiments. In the field, H. bowringii larvae predominantly feed on tadpoles of five species of frogs and occasionally also on insects, loaches and worms. The phenology of the tadpoles was similar to that of larvae of H. bowringii, as their abundances increased from May to June and decreased in July. Experimentally reared larvae of H. bowringii grew faster when fed tadpoles than when fed Sigara nymphs or a mixture of both prey, and more emerged as adults when tadpoles were included in their diet. Adults were larger in the tadpole treatment than in the Sigara treatment. Based on these results, we conclude that tadpoles are more suitable prey for the survival and growth of larvae of H. bowringii than insects. The decline in the abundance of frogs could be one of the factors determining the decrease in the local abundances of H. bowringii. In conclusion, we affirm that in order to conserve populations of H. bowringii it is crucial to maintain paddy field environments in which frogs are abundant.

Ecological niche modelling of species of the rose gall wasp Diplolepis (Hymenoptera: Cynipidae) on the Iberian PeninsulaOriginal article

Sara SARDÓN-GUTIÉRREZ, Diego GIL-TAPETADO, José F. GÓMEZ, José L. NIEVES-ALDREY

Eur. J. Entomol. 118: 31-45, 2021 | DOI: 10.14411/eje.2021.004

Diplolepis (Hymenoptera: Cynipidae) are gall wasps that induce conspicuous galls on Rosa spp. (Rosaceae). These species are distributed globally and in Europe some are especially common and are founder organisms of biological communities composed of different insects. However, the ecological niches of these species have not been studied in detail. We modelled the potential distributions of these species using the locations of the galls of the four most abundant species of Diplolepis on the Iberian Peninsula (Diplolepis mayri, Diplolepis rosae, Diplolepis eglanteriae and Diplolepis nervosa, the galls of latter two are indistinguishable) using four different algorithms and identified the resulting consensus for the species. We compared the potential distributions of these species, considering their spatial complementarity and the distributions of their host plants. We found that D. mayri and D. eglanteriae/nervosa have complementary distributions on the Iberian Peninsula. The former species is found in the Mediterranean region, while D. eglanteriae and D. nervosa are distributed mainly in the Eurosiberian region. Diplolepis rosae has the widest distribution on the Iberian Peninsula. Our models constitute the first effort to identify suitable areas for species of Diplolepis species on the Iberian Peninsula and could be useful for understanding the evolutionary ecology of these species throughout their distribution in the western Palearctic.

Effectiveness of inundative releases of Anthocoris nemoralis (Hemiptera: Anthocoridae) in controlling the olive psyllid Euphyllura olivina (Hemiptera: Psyllidae)Original article

Naceur GHARBI

Eur. J. Entomol. 118: 135-141, 2021 | DOI: 10.14411/eje.2021.014

This study investigated the effectiveness of field releases of nymphs of Anthocoris nemoralis (F.) (Hemiptera: Anthocoridae) in controlling the olive psyllid, Euphyllura olivina Costa (Hemiptera: Psyllidae). Field trials were conducted in two successive years (2014 and 2015) in two organic olive orchards located in the region of Sfax (Tunisia) using two treatments: low (release of 10 A. nemoralis nymphs/tree) and high (release of 40 A. nemoralis nymphs/tree) applied two times, the first on March 3 and second on March 17. In both olive orchards, the high treatment was the most effective in controlling the increase of E. olivina in the spring. The A. nemoralis population grew gradually and reached a single peak towards the end of April. In control and low treatment plots, despite the significant increase in predator populations, psylla abundance was not controlled. After the second release, however, in high treatment plots a reduction in psyllid density was recorded. An expected effect of the A. nemoralis releases was a reduced parasitic activity of Psyllaephagus euphyllurae (Masi) (Hymenoptera: Encyrtidae).

Structure of canopy and ground-dwelling arthropod communities in olive orchards is determined by the type of soil coverOriginal article

Jesús CASTRO, Francisco S. TORTOSA, Antonio J. CARPIO

Eur. J. Entomol. 118: 159-170, 2021 | DOI: 10.14411/eje.2021.017

The intensification of agriculture in olive groves, especially the modification or elimination of spontaneous vegetation, alters the relationships in arthropod communities and reduces their interactions and ecosystem services. This study was carried out in nine olive groves in which there was either a planted cover crop, spontaneous cover crop or bare ground. The interactions of ground-dwelling, canopy and flying arthropods in trophic webs were calculated for each olive grove soil management regime at the family level taking into consideration their different functional traits: feeding guilds, specific agricultural traits and trophic level. Olive groves with spontaneous cover had trophic webs with a higher number of plausible links between arthropod families and a more balanced distribution of specimens among trophic levels compared to those with planted cover and bare ground. There was a similar number of arthropod families consisting of both pests and their natural enemies in the planted cover regime, while olive groves with bare ground had simpler trophic webs. The complexity of plausible trophic links was greater in olive groves with spontaneous plant cover despite the similar values for family richness in the three-olive grove soil management regimes. Qualitative values (such as functional traits) were more diverse in agroecosystems with spontaneous plant cover in which there were more sources of food.

Biogeography and habitat preferences of red wood ants of the Formica rufa group (Hymenoptera: Formicidae) in Finland, based on citizen science dataOriginal article

Jouni SORVARI

Eur. J. Entomol. 119: 92-98, 2022 | DOI: 10.14411/eje.2022.010

Red wood ants (RWA) of the Formica rufa group are ecosystem engineers and important species in boreal and temperate forests. However, the permanent and temporal loss of forest habitats is a serious threat to their existence and is likely to increase with climate change. Due to the current threat of losing species, quick actions are needed. Reported here is the biogeography, relative abundance and habitat preferences of five species of RWA in Finland based on citizen science data. Species that occur in the lowlands of the Alps also occur throughout the southern parts of Finland. Only two of the five species, F. aquilonia Yarrow, 1955 and F. lugubris Zetterstedt, 1838, were common throughout the country, including northern Lapland. As their name suggests, RWAs occur mostly in forests and forest edges, but they also sometimes inhabit open or semi-open yards, mires and meadows. The most forest-specialist species is F. aquilonia and the least F. rufa Linnaeus, 1761. Surprisingly, the meadow wood ant F. pratensis Retzius, 1783 is the second most forest dwelling species, however, its preference for forest edges is clearly higher than for forest interiors. Based on current data, F. rufa may be the most tolerant of living close to buildings as its relative abundance in yards was much higher than that of the other species. The data obtained on distributions and relative abundances could be compared in the future with the results of similar surveys to detect changes in species distributions, relative abundances and habitat preferences.

Mitochondrial DNA variation of Drosophila obscura (Diptera: Drosophilidae) across EuropeOriginal article

Pavle ERIĆ, Marina STAMENKOVIĆ-RADAK, Milan DRAGIĆEVIĆ, Maaria KANKARE, Megan A. WALLACE, Marija SAVIĆ VESELINOVIĆ, Mihailo JELIĆ

Eur. J. Entomol. 119: 99-110, 2022 | DOI: 10.14411/eje.2022.011

Drosophila obscura is a common fruit fly that inhabits the temperate forests of Europe. While it is abundant in the north compared to other Drosophila, its density decreases southwards, where it is gradually replaced by other Drosophila species. This study describes variation in the mitochondrial Cyt b gene of D. obscura from several European populations. We observed a large number of haplotypes, together with the structuring of genetic variation. Genetic variation is higher in the west where O1 and related divergent haplotypes dominate. In the east, the O2 haplotype is most frequent, together with haplotypes that recently arose from it. In the central part of the species range, both O1 and O2 are equally present, along with many others. These data reveal signs of population expansions that probably happened earlier in the west, and more recently in the east. Though our conclusions are based on only one genetic marker, limiting the power of the analysis, the results imply either postglacial expansion from two unique sources or, more likely, eastwards stepping-stone expansion. This study adds important information on genetic variation and phylogeography to the obscure biology of D. obscura, a species that has the potential to become an interesting model in evolutionary biology and conservation genetics.

Pelle and Tube contribute to the Toll pathway-dependent antimicrobial peptide production in the red flour beetle, Tribolium castaneum (Coleoptera: Tenebrionidae)Original article

Kakeru YOKOI, Daiki KATO, Ken MIURA

Eur. J. Entomol. 119: 111-121, 2022 | DOI: 10.14411/eje.2022.012

Insects are solely dependent on an innate immune system. Antimicrobial peptide production is the main immune response of insects. The molecular mechanisms underlying this reaction in Drosophila melanogaster involves the induction of antimicrobial peptide genes, which is regulated by the Toll and IMD pathways. The Toll pathway is mainly activated by fungi or Gram-positive bacteria and the IMD pathway by Gram-negative bacteria. In terms of comparative immunology, we investigated the antimicrobial peptide production system in the beetle, Tribolium castaneum, which differs from that in D. melanogaster. To obtain a more detailed understanding, we examined whether Pelle and Tube, orthologues of which in D. melanogaster are the Toll pathway components, contributed to antimicrobial peptide production and immune reactions. These two genes were not induced by challenges from any type of microbe, which in this case were Gram-positive bacteria, -negative bacteria and an eukaryote. Using Pelle and Tube knockdown pupae, it was demonstrated that Pelle and Tube are involved in the induction of Cec2 as a representative Toll pathway-dependent gene in T. castaneum by Gram-positive and -negative bacteria and eukaryote challenges. Furthermore, neither Pelle nor Tube contributed to immune defences against two entomopathogenic bacteria. These results, taken together with our previous findings, led to the conclusion that the Toll pathway immune signaling reported in D. melanogaster indeed occurs in T. castaneum, and the gene sets involved in Toll signal transduction in T. castaneum did not differ significantly from those in D. melanogaster, but transduced immune signals to challenges from Gram-positive bacteria, -negative bacteria and an eukaryote, which differed from those in D. melanogaster.

Photoperiodic induction of adult reproductive diapause in the ladybird beetle Cycloneda munda (Coleoptera: Coccinellidae)Ivo Hodek special issueShort Communication

John J. OBRYCKI

Eur. J. Entomol. 119: 148-151, 2022 | DOI: 10.14411/eje.2022.016

The developmental response and the induction and duration of adult hibernal diapause in a North American population of Cycloneda munda (Say) (collected at 38°N, 84.5°W) was determined by rearing individuals at four photoperiods (L:D 16:8, 14:10, 12:12, and 10:14) at 22°C. Preimaginal development of C. munda individuals was slower at L:D 10:14 than at three longer photoperiods. No C. munda females reared at L:D 16:8 entered diapause, 5% of females at L:D 14:10 were in diapause, whereas shorter photoperiods (L:D 12:12 and 10:14) induced diapause in 84% and 100% of females. Cycloneda munda females demonstrated a long-day response to photoperiod, similar to that observed in several other species of predaceous Coccinellidae that diapause as adults.

Sexual dimorphism and phylogenetic position of Chilodendron (Coleoptera: Curculionidae: Scolytinae) - a long isolated lineage endemic to MadagascarOriginal article

Bjarte H. JORDAL

Eur. J. Entomol. 119: 152-158, 2022 | DOI: 10.14411/eje.2022.017

Chilodendron Schedl, 1953 is resurrected as a valid genus based on Chilodendron planicolle Schedl, 1953. This is the only representative of the tribe Hylesinini Erichson, 1836 found on Madagascar and a molecular phylogenetic analysis of several genes supports a position separate from Hylesinopsis Eggers, 1920 and other putatively close relatives. It is likely that Chilodendron is the oldest living lineage of bark beetles on Madagascar and possibly originated in the late Cretaceous not long after the separation of Madagascar from the Indian subcontinent.

Distribution of butterflies (Lepidoptera) in a successional mosaic of Mediterranean mountain habitatsOriginal article

Jesús SÁNCHEZ-DÁVILA, José A. MOLINA, Francisco J. CABRERO-SAÑUDO

Eur. J. Entomol. 119: 159-169, 2022 | DOI: 10.14411/eje.2022.018

The distribution of butterflies was analysed in a mosaic of different types of habitats in a typical Ibero-Supramediterranean plant landscape. This mosaic landscape is composed of oak forests (Quercus pyrenaica) and their corresponding shrub and grassland successional communities. The observed patterns were based on butterfly-flower interactions in two consecutive years (2017-2018) recorded in different habitats. The results of the nestedness analysis indicated that the same butterfly community exploits all of the successional plant-communities, but some differences due to the availability of flowers. The foraging for nectar sources was mostly restricted to a few flowering plants: Rubus ulmifolius, Carduus carpetanus, Thymus pulegioides and Dianthus deltoides. Some butterflies changed their flower-visiting patterns over the two years studied. The distribution of butterflies was strongly linked to the distribution of their preferred nectar sources and changes in the use of these sources modified habitat use. The area of Rubus shrubland is a small but highly used habitat in this area, given the presence of Rubus ulmifolius, a plant species with high coverage and abundance of nectar, makes this area much better for foraging than other habitats. The Cytisus and Rubus shrublands were used more than grassland, indicating that seral habitats can be more valuable than traditional open grassland and forest habitats for butterflies.

Seasonal changes in mycophagous insect communitiesOriginal article

Rohit BANGAY, Alan C. GANGE, Deborah J. HARVEY

Eur. J. Entomol. 119: 260-271, 2022 | DOI: 10.14411/eje.2022.028

The phenology of fungal fruiting has changed in the UK over the last 70 years, but whether the associated mycophagous insects are able to exploit 'out of season' fruit bodies is unknown. This study focused on whether fungal baits can be used as a proxy to examine changes in fungal fruiting on insect communities. Using Agaricus bisporus as a bait, mushrooms were placed into two separate woodlands monthly from November 2020 to July 2021. Megaselia rufipes (Phoridae) and Bradysia spp. (Sciaridae) were reared from both wild fungi and fungal baits at different times, making them appropriate species to consider for possible host tracking. Various factors affect an insect's ability to track a fungal host, these include host preference, season, period of fungal fruiting and age of mushroom. Increased fruiting of macrofungi in the future may benefit generalist mycophagous insects, by providing enhanced temporal and spatial resource opportunities. Using fungal baits as a proxy for the effects of climate change on fungal fruiting should be beneficial in uncovering the host preferences of mycophagous insects and may potentially indicate whether mycophagous insects can track fungal hosts across seasons.

DNA barcoding reveals long-term speciation processes in subspecies of the Melipona (Michmelia) seminigra complex (Hymenoptera: Apidae)Original article

Izaura Bezerra FRANCINI, João Marcos Guimarães CAPURUCHO, Antônio Saulo Cunha MACHADO, Carlos Gustavo NUNES-SILVA, Jacqueline Da Silva BATISTA, Luciano COSTA, Gislene Almeida CARVALHO-ZILSE

Eur. J. Entomol. 119: 309-317, 2022 | DOI: 10.14411/eje.2022.032

The stingless bee Melipona (Michmelia) seminigra Friese is a polytypic species widely distributed in Brazilian Amazon and Bolivia. Seven subspecies are recognized, four are described, which inhabit mutually exclusive areas in the Amazon basin, although zones of hybridization are recorded. The three other subspecies, despite being recognized by taxonomists are undescribed. Melipona seminigra is a good honey-producer and an important pollinator of native flora and crops. Partial DNA sequence of cytochrome c oxidase subunit 1 (COI) mitochondrial gene (526 bp) was used to identify the four described subspecies of M. seminigra (M. s. abunensis, M. s. merrillae, M. s. pernigra, M. s. seminigra) and two other possible subspecies (M. s. ssp1 and M. s. ssp2). We added public data (sequences of ten other Melipona species) of the same subgenera and carried out phylogenetic analyses. The aim was to evaluate if subspecies in the M. seminigra complex could be delimited using COI and measure the genetic distances between them. Our results revealed that the genetic distances between subspecies of M. seminigra ranged from 0.4 to 2.7% (average 1.80 ± 0.47) and among Melipona species from 0.2 to 2.9% (average 2.13 ± 0.5). The average haplotype diversity was 0.8770 ± 0.0140 and average nucleotide diversity 0.0166 ± 0.0004. Phylogenetic and clustering analysis revealed well delimited clusters for subspecies of M. seminigra and that the inter subspecies divergences are similar to inter species divergence. Our findings indicate that the COI gene can be used for delimiting subspecies of M. seminigra.

The bee fauna (Hymenoptera: Apoidea: Anthophila) of allotments in downtown LisbonOriginal article

Miguel AZEVEDO, Elisabete FIGUEIREDO, Maria Teresa REBELO

Eur. J. Entomol. 119: 327-336, 2022 | DOI: 10.14411/eje.2022.034

In the last ten years, a growing number of studies have focused on urban green areas as potential refuges for biodiversity, where private gardens, urban parks and green roofs have relatively high diversities of wild bees. However, the western Mediterranean is still poorly studied and is a biodiversity hotspot that is already suffering the consequences of climate change. It is essential to rectify this and understand how urban settings can support biodiversity. In this context, this study provides an assessment of the taxonomic and functional composition of bee assemblages in three allotments in downtown Lisbon, Portugal. Using only an entomological net, we collected 202 specimens from April to July 2018, belonging to five families, 20 genera and 58 species, of which six are rare species in Portugal and nine first records for the Lisbon district. Megachilidae was the most diverse family, comprising 15 species, while Apidae was the most abundant family. Most of the species identified were solitary and had a generalist pollen diet, with a low incidence of social and parasitic species.

Patterns of DNA barcode diversity in butterfly species (Lepidoptera) introduced to the NearcticOriginal article

Jacopo D'ERCOLE, Leonardo DAPPORTO, B. Christian SCHMIDT, Vlad DINCĂ, Gerard TALAVERA, Roger VILA, Paul D.N. HEBERT

Eur. J. Entomol. 119: 379-387, 2022 | DOI: 10.14411/eje.2022.039

One of the main consequences of globalization is the intensification of biological introductions. Because of their negative impact on environments, the early detection and monitoring of introduced species through molecular approaches is gaining increased uptake. This study assembles 2,278 DNA barcode records to examine contemporary patterns of sequence variation in mitochondrial cytochrome c oxidase I (COI) in five butterfly species introduced to the Nearctic, with a focus on Pieris rapae Linnaeus (Lepidoptera: Pieridae) and Thymelicus lineola Ochsenheimer (Lepidoptera: Hesperiidae). Parameters of genetic diversity were low (i.e., h < 0.606, π < 0.0039) for Nearctic populations of all analyzed species. Those of P. rapae and T. lineola showed marked genetic differentiation from their source populations in the Palearctic. Haplotype distributions in their Nearctic populations exposed a starburst pattern with a few common haplotypes known from Palearctic, and infrequent haplotypes diverging from them at only one or two nucleotide sites. Some uncommon haplotypes were only found in the Nearctic suggesting they originated after invasion, while others also occur in the Palearctic. This study provides an example of genetic paradox of invasion, where species often rapidly expand their distribution and become dominant in the new habitat despite their depleted levels of sequence variation.

Screening of immune-related genes against bacterial infection in Ostrinia furnacalis (Lepidoptera: Crambidae)Original article

Wan ZHOU, Zengxia WANG, Baohong HUANG

Eur. J. Entomol. 119: 388-397, 2022 | DOI: 10.14411/eje.2022.040

Ostrinia furnacalis Guenée is an important pest of maize. The current use of microbial agents to control O. furnacalis have been relatively successful. However, upon infestation with microorganisms, O. furnacalis initiates an innate immune response to defend itself against foreign invaders. Therefore, understanding the immune mechanisms in O. furnacalis is important to ensure a more efficient use of microbial agents for the control of this pest. In the present study, a gram-positive bacterium, Staphylococcus aureus, and a gram-negative bacterium, Escherichia coli, were used to induce an immune response in O. furnacalis. Transcriptomic sequencing was then used to screen for genes that were significantly differentially expressed after microbial induction and sequence comparison and phylogenetic analysis to identify immune-related genes the expression of which was significantly induced. The results show a large number of genes were differentially expressed in O. furnacalis after microbial induction, the majority of which were immune-related genes. The expression of some immune-related genes such as those encoding antimicrobial peptides, peptidoglycan recognition proteins and serine protease inhibitors were strongly induced. Overall, our study increases the understanding of the mechanism of the innate immune response in O. furnacalis and provides a theoretical basis for better biological control using microbial agents.

The effect of temperature and photoperiod on the time taken for a meal to pass through the gut, defecation and digestion in the last larval instar of Spodoptera littoralis (Lepidoptera: Noctuidae)Original article

Esmat HEGAZI, Wedad KHAFAGI, Essam AGAMY, Ibrahim ABDALLAH

Eur. J. Entomol. 119: 398-404, 2022 | DOI: 10.14411/eje.2022.041

Spodoptera littoralis (Boisduval) is a highly destructive and polyphagous insect pest of great economic importance. It develops throughout the year and the larvae are non-diapausing. Little work has been done on the time taken for food to pass through the gut of S. littoralis. Thus, this study on starving and well fed last instar larvae of S. littoralis aimed to determine the effect of temperature and photoperiod on the time taken for a meal to pass through the gut, defecation and digestion. The results indicate that it depended on temperature, photoperiod and hunger. The time that elapsed between a larva being fed and the production of the first faecal pellet, which is a measure of the time it takes for food pass to pass through the gut (SFP), differed significantly at different temperatures and photoperiods. The SFP was longer at 15°C than at 30°C. At 20°C and under a short photoperiod, SFP was very much shorter than under a long photoperiod (18L : 6D). In addition, at 20°C, the time to defecation was significantly longer under a photoperiod of 12L : 12D than under continuous light. In all the tests > 95% of the larvae produced four faecal pellets per meal. The digestibility values varied significantly in the different tests. This study offers new insights into the passage of food from the crop to the rectum at different temperatures and photoperiods. This might help in understanding the adaptability of S. littoralis and may also help in controlling this important pest.

Genome-wide screening of genes involved in programming diapause in the next generation in silkworm, Bombyx mori (Lepidoptera: Bombycidae)Original article

Yuichi EGI, Katsuhiko SAKAMOTO

Eur. J. Entomol. 119: 405-412, 2022 | DOI: 10.14411/eje.2022.042

Maternal silkworms (Bombyx mori) of bivoltine strains are destined to produce either diapause or non-diapause eggs depending on environmental factors, such as, temperature and photoperiod experienced during the egg and larval stages. However, the molecular mechanisms that program diapause, which depend on information about the environment, remain unclear. We aimed to identify genes that are involved in programming diapause in the next generation in bivoltine silkworms. We therefore screened differentially expressed genes (DEGs) in the larval brains of diapause- and non-diapause-egg producers kept under three different diapause-inducing conditions using cap analysis of gene expression. Under each condition, only temperature, illumination or photoperiod was changed during the egg or larval stage as a diapause-controlling stimulus to induce the production of diapause or non-diapause eggs. We then verified the expression of DEGs that were common to all the three conditions using real-time quantitative PCR. We investigated the functional involvement of candidate genes in programming diapause using double-stranded RNA interference (RNAi) for gene knockdown. The results showed more abundant juvenile hormone acid methyltransferase (Jhamt) and proton-coupled folate transporter (Pcft) gene expression in the brains of fifth instar larvae of producers of diapause eggs than those of non-diapause eggs under the three conditions. Furthermore, RNAi against either of these genes significantly decreased the incidence of diapause in the next generation. These findings indicate that both Jhamt and Pcft are involved in the programming of diapause in the silkworm brain. These genes could function in retaining information that leads to diapause in the next generation.

Winged insects associated with the poorly studied forest fire ant Solenopsis virulens (Hymenoptera: Formicidae)Original article

Thalles P.L. PEREIRA, Carolina De A. GARCIA, Freddy BRAVO, Jacques H.C. DELABIE

Eur. J. Entomol. 119: 439-447, 2022 | DOI: 10.14411/eje.2022.046

The present study documents new records of winged insects collected from fragments of nests of the tropical fire ant Solenopsis virulens (Smith), using a trap, which is also described in detail. The emergence chamber consisted of a 5L opaque plastic container, a 50 ml transparent vial and a 1.5 ml microcentrifuge tube. This trap captured 70 insects from 12 nests of Solenopsis virulens. They were classified into two orders, 13 families, 18 genera and 39 morphospecies. The most abundant order was Diptera, with nine families. The richest family was Cecidomyiidae, with 12 morphospecies, followed by Sciaridae with seven. Ceratopogonidae, Chironomidae, Chloropidae, Drosophilidae, Hybotidae, Phoridae and Psychodidae were also represented. Hymenoptera included a total of three families: Figitidae (Eucoilinae), Platygastridae (Scelioninae and Platygastrinae) and Diapriidae. Although the association of several genera (Diptera: 11/ Hymenoptera: 1) and families (Diptera: 1/ Hymenoptera: 1) with ant nests was recorded for the first time, it is likely that many of these insects are only fortuitous or temporary inquilines and not obligatory myrmecophiles. The trap described is also useful for catching insects that emerge from other substrates such as leaves, logs, galls, termite nests, etc. Furthermore, it could enable researchers to sample and further study important material in the laboratory and decrease the costs of sampling during field trips.

North vs. South: Contrasting patterns in the phenotypic plasticity of the firebug Pyrrhocoris apterus (Hemiptera: Pyrrhocoridae) at the latitudinal extremes of its distribution rangeIvo Hodek special issueOriginal article

Dmitry KUTCHEROV, Elena B. LOPATINA

Eur. J. Entomol. 119: 454-465, 2022 | DOI: 10.14411/eje.2022.048

In widely distributed insects, some life-history traits are conserved across the whole distribution range and are considered species-specific while other such traits differ geographically. This interplay of geographic variation and phenotypic conservatism is poorly understood even in relatively well-studied model species. Furthermore, a careful study may reveal that conventionally stable traits, such as the lower temperature threshold for development and the sum of degree-days, are both geographically variable and environmentally plastic. We studied how photoperiodic conditions and temperature jointly affect immature development, adult body size and wing polymorphism in two populations of the firebug from the opposite latitudinal margins of this species' range. All the three traits rarely clearly differ under short-day and long-day conditions or between north and south. Instead, we find prevalent temperature-by-photoperiod and temperature-by-origin interactions, which emphasize that it is not only the absolute values of these traits but the degree of their temperature-dependence, or thermal plasticity, that varies in time (in response to seasonal changes in day length) and in space (along latitudinal gradients). These results indicate that caution should be exercised when extrapolating any life-history traits in P. apterus beyond the season when and the location where these were measured. In particular, the use of a constant lower temperature threshold coupled with a constant sum of degree-days is likely to oversimplify the diversity of current and projected phenological patterns in this species.

Ants of the genus Protalaridris (Hymenoptera: Formicidae), more than just deadly mandiblesOriginal article

John E. LATTKE, Thibaut DELSINNE, Gary D. ALPERT, Roberto J. GUERRERO

Eur. J. Entomol. 115: 268-295, 2018 | DOI: 10.14411/eje.2018.027

The ants of the genus Protalaridris are revised based upon their morphology. Seven species are recognized; the type species (P. armata Brown, 1980) and six species described as new: P. aculeata Lattke & Alpert, sp. n., P. arhuaca Guerrero, Lattke & Alpert, sp. n., P. bordoni Lattke, sp. n., P. leponcei Delsinne & Lattke, sp. n., P. loxanensis Lattke, sp. n., and P. punctata Lattke, sp. n. The genus is patchily distributed in mesic forested areas from western Panama to northern Venezuela and along the Andes to the Amazon watershed of southwestern Peru. The generic description is modified to accommodate a short-mandibulate species. Sporadic biological observations of one long-mandibulate species suggest they are sit-and-wait ambush predators that open their jaws to approximately 180° when stalking. All species are described and imaged, an identification key and a distribution map is provided. Comparing the mandibular morphology of long-mandibulate Protalaridris with other extant and extinct ants bearing elongate, dorsoanterior arching mandibles suggests the supposed mandibular apex in these taxa is actually a hypertrophied, preapical tooth and their supposed basal mandibular tooth is the main mandibular shaft.

Increased duration of extreme thermal events negatively affects cold acclimation ability in a high-latitude, freshwater ectotherm (Ischnura elegans; Odonata: Coenagrionidae)Original article

Lesley A. SMITH, Lesley T. LANCASTER

Eur. J. Entomol. 117: 93-100, 2020 | DOI: 10.14411/eje.2020.010

Instances of heat waves and cold snaps are becoming more frequent and of increasing duration worldwide. It is well established that short exposure to high or low-temperatures, such as during extreme weather events, often results in adaptive (acclimation/hardening) or maladaptive plastic changes in tolerance of organisms to subsequent thermal stressors. However, little information is available about how the duration of a prior stressful thermal event mediates future organismal thermal responses. Understanding durational effects of thermal conditioning can help predict ectothermic survival in response to novel extreme weather patterns.

A review of the genus Mecistorhabdia (Lepidoptera: Erebidae: Arctiinae: Syntomini) with a description of a new species from the Central African RepublicOriginal article

Nikolai IGNATEV, Beata GRZYWACZ, Łukasz PRZYBYŁOWICZ

Eur. J. Entomol. 117: 139-148, 2020 | DOI: 10.14411/eje.2020.016

The genus Mecistorhabdia Kiriakoff, 1953 is reviewed and one new species M. sulaki sp. n. from the Central African Republic and Cameroon (Afrotropical region) described. The holotype female of the type species M. haematoessa (Holland, 1893) is matched with a conspecific male using a molecular technique. M. burgessi Kiriakoff, 1957 is removed from the synonymy as it is considered to be a valid species. Habitus and male genitalia of all three species are illustrated along with the female genitalia of M. haematoessa. A key for identification of species based on the structure of male genitalia and a map of their distribution are provided. The results of a study of the genetic diversity of the three species of Mecistorhabdia, based on cytochrome c oxidase subunit I gene, are presented. Relationships between species are briefly discussed.

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