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Embryogenesis of Xyleborus ferrugineus (Fabr.) (Coleoptera, Scolytidae). I. External morphogenesis of male and female embryos.

A description of the external morphogenesis of male and female embryos of X. ferrugineus, derived from in vivo observation, is presented here. The embryogenesis of this beetle is typical of the Coleoptera, and is also similar in most respects to the generalized insect plan. Observed unusual aspects of X. ferrugineus embryogenesis include the precocious formation of primordial g/rm cells and their temporary exclusion from somatic blastoderm; the precocious in situ delineation of gnathal metameres, the closing of the gastral groove beginning at both ends and proceeding towards its middle, the formation of several paired lateral amnio-serosal folds, the formation of cellular processes between the amnion and serosa, and the absorption of the thoracic limbs to produce an apodous larva. The embryonic developmental picture provided here, and the previously established means of rearing X. ferrugineus in controlled laboratory culture jointly provide a promising basis for the further use of this insect in developmental studies.

Age Factors

PCR-based species identification tools for wireworms (Coleoptera: Elateridae) of economic importance in Canada.

BACKGROUND: Coexistence of pest and non-pest wireworms (Coleoptera: Elateridae) in agricultural fields makes species-level identification critical to determine when pest management measures are required. However, morphological identification of wireworms (larval stage of click beetles) is challenging, as larvae are difficult to distinguish based on morphological features and misidentifications are common. Here, we developed species-specific primers for 15 click beetle species to be used in PCR-based species-level identification for agricultural fields across Canada. RESULTS: Partial sequences of the gene regions cytochrome c oxidase I (COXI), 16S, 12S, 28S, 18S, internal transcribed spacer 2 (ITS2), cytochrome-b (CYTB), elongation factor 1 (EF1), ATP6/8, NADH dehydrogenase 1 (ND1), NADH dehydrogenase 2 (ND2), NADH dehydrogenase 3 (ND3), NADH dehydrogenase 4 (ND4), NADH dehydrogenase 5 (ND5) and NADH dehydrogenase 6 (ND6) were generated for elaterid species of interest. Of these gene regions, primers were designed on the mitochondrial gene regions COXI, CYTB and ND1 that had sufficient variation to discriminate among species and tested for species specificity using additional pest and non-pest species from the families Elateridae, Carabidae, Scarabidae and Silphidae. Specificity testing confirmed that all primer sets were species-specific. CONCLUSION: The novel primers designed in this study allow for PCR-based species identification of 15 economically important click beetle pest species in Canada. Further testing is needed to validate the assay for use outside of Canada. Accurate species-level identification will benefit pest management professionals by informing management decisions and reducing the use of insurance insecticide applications due to difficulties with identifications of wireworm pest species. © 2026 His Majesty the King in Right of Canada and The Author(s). Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry. Reproduced with the permission of the Minister of Agriculture and Agri-Food.

Animals

Chromosome-level genome assembly of the longhorn beetle Arhopalus rusticus (Coleoptera: Cerambycidae).

The longhorn beetle Arhopalus rusticus (Coleoptera: Cerambycidae) is a widely distributed wood-boring pest of conifers. Here, we assembled a chromosome-level genome of A. rusticus using Illumina, Oxford Nanopore, and Hi-C sequencing technologies. The assembled genome is 1180.40 Mb, with a scaffold N50 of 125.01 Mb, and BUSCO completeness of 93.6%. All contigs were assembled into ten pseudo-chromosomes. The genome contains 69.87% repeat sequences. We identify 18, 377 protein-coding genes in the genome, of which 11,368 were functionally annotated. This genome provides a valuable resource for understanding the ecology, genetics, and evolution of A. rusticus, as well as for controlling wood-boring pests.

Animals

A chromosomal-level genome assembly of Odontolabis cuvera Hope, 1842 (Coleoptera: Lucanidae).

The stag beetle (Coleoptera: Lucanidae) represents a captivating and evolutionarily significant group, regarded as one of the most basal lineages within the superfamily Scarabaeoidea. Despite their importance for studying beetle evolution and ecology, genomic resources for this family remain scarce. Here, we report a chromosome-level genome assembly of Odontolabis cuvera, generated by integrating PacBio HiFi, Illumina, and Hi-C data. The genome assembly spans 908.07 Mb, comprising 66 scaffolds (scaffold N50: 65.36 Mb) and 147 contigs (contig N50: 16.39 Mb). A total of 99.58% (904.22 Mb) of the assembly was anchored to 14 chromosomes. BUSCO analysis (insecta_odb10 dataset, n = 1,367) demonstrated high completeness, with 99.1% of conserved insect orthologs identified (98.3% single-copy, 0.8% duplicated). Repetitive elements accounted for 53.00% (281.28 Mb) of the genome, and a total of 18,332 protein-coding genes were annotated. This high-contiguity genome provides a critical foundation for uncovering the evolutionary mechanisms and ecological adaptations unique to Lucanidae.

Animals

The genome sequence of the comb-clawed beetle, Prionychus ater (Fabricius, 1775) (Coleoptera: Tenebrionidae).

We present a genome assembly from an individual male Prionychus ater (comb-clawed beetle; Arthropoda; Insecta; Coleoptera; Tenebrionidae). The assembly contains two haplotypes with total lengths of 385.22 megabases and 347.54 megabases. Most of haplotype 1 (97.6%) is scaffolded into 14 chromosomal pseudomolecules, including the X sex chromosome. Haplotype 2 was assembled to scaffold level. The mitochondrial genome has also been assembled, with a length of 16.26 kilobases. This assembly was generated as part of the Darwin Tree of Life project, which produces reference genomes for eukaryotic species found in Britain and Ireland.

Prionychus ater; comb-clawed beetle; genome sequen

The genome sequence of the 16-spot Ladybird, Tytthaspis sedecimpunctata (Linnaeus, 1758) (Coleoptera: Coccinellidae).

We present a genome assembly from an individual male Tytthaspis sedecimpunctata (16-spot Ladybird; Arthropoda; Insecta; Coleoptera; Coccinellidae). The genome sequence has a total length of 355.68 megabases. Most of the assembly (88.7%) is scaffolded into 10 chromosomal pseudomolecules, including the X sex chromosome. The mitochondrial genome has also been assembled, with a length of 18.38 kilobases. This assembly was generated as part of the Darwin Tree of Life project, which produces genomes for eukaryotic species found in Britain and Ireland.

16-spot Ladybird

Drosophila melanogaster as an experimental host for study of multiplication and biology of the mycoplasma inducing the "lethargy of coleoptera".

The mulitplication of the mycoplasma responsible for the "lethargy of coleoptera" on a laboratory host, Drosophila melanogaster, was obtained on the first passage. Independant series of successive passages on D. melanogaster were performed without any apparent modifications of the properties of the microorganism. Pathogenicity for its natural host Melolontha melolontha was retained. The different forms of mycoplasma observed lead us to propose a probable cycle of development, composed of a succession of globular and rod-shaped bodies, these later being often sinuous. The infected Drosophila flies presented a reduced life span and fertility. Infection of the cephalic nervous system seems to be responsible for death. Horizontal transmission of the microorganism was not observed.

Animals

[Evolution of the adipose tissue during the postembryonic development in Coleoptera Catopidae. I. Studies in Choleva fagniezi and Speophyes lucidulus (author's transl)].

Cytological studies of the fat body have been performed during the postembryonic development of 2 Coleoptera Catopidae: Choleva fagniezi and Speophyes lucidulus. As in other insects, the cells store large amounts of glycogen, lipids and proteins during the larval life; these reserves would be lysed and used during the metamorphosis. According to the species, protein globules are constituted at different larval life periods. In Choleva fagniezi they appear during the 3rd and last larval instar. In Speophyes lucidulus, protein globules appear during the 10 first days of the 1st larval instar. In the prenymphs of the 2 species, the protein globules become rich in RNA.

Adipose Tissue

Antennal transcriptome analysis of chemosensory proteins in the raspberry weevil, Aegorhinus superciliosus (Coleoptera: Curculionidae).

Aegorhinus superciliosus (Coleoptera: Curculionidae) is a polyphagous pest of economic importance in southern Chile, the chemical ecology of which remains poorly characterized. Across insect species, chemosensory proteins, including odorant receptors (ORs), gustatory receptors (GRs), ionotropic receptors (IRs), odorant-binding proteins (OBPs), chemosensory proteins (CSPs), and sensory neuron membrane proteins (SNMPs), mediate the detection of chemical cues involved in host selection, reproduction, and other ecologically relevant behaviors. In this study, the antennal transcriptome of adult A. superciliosus was sequenced and analyzed using a de novo RNA-seq approach. Three independent biological replicates per sex were used for RNA-seq, and the same number of independent biological replicates was used for RT-qPCR validation; sequencing yielded 147,409,936 high-quality reads after quality filtering. A total of 112 candidate chemosensory genes were identified, comprising 43 ORs, 34 OBPs, 10 CSPs, 18 IRs, 5 GRs, and 2 SNMPs. Phylogenetic analyses assigned these candidate proteins to established clades, providing a comparative framework for functional inference for ORs and OBPs. Sex- and tissue-biased expression analyses revealed that several ORs, including AsupOR4, AsupOR19, and AsupOBP13, exhibit antennal enrichment and sex-specific expression patterns. Notably, AsupOR19 and AsupOBP13 displayed strong female-biased expression. In addition, transcripts of selected ORs and OBPs were detected in non-antennal tissues, such as the rostrum and legs, suggesting potential functional versatility beyond canonical olfaction. Together, these findings represent the first molecular identification of the chemosensory repertoire of A. superciliosus. This study establishes a foundation for reverse chemical ecology approaches aimed at identifying behaviorally active volatile organic compounds (VOCs) toward environmentally sustainable strategies for integrated pest management.

Animals

[Pests at Baltic Sea coast. II. Summary of most important groups on insects besides Coleoptera and Diptera].

In the special holiday situations at the Baltic coast of GDR, species of very different insect groups may become annoying to man. Own experiences in this field are reported (excepting Coleoptera and Diptera). The earwig, Forficula auricularia, has many varying aspects of a health pest (also in the respect of social hygiene). This species, too, may pinch painfully with his pincers. The lice species Pediculus capitis and Pthirus pubis are met with sometimes. Limothrips cerealium may be annoying not only when swarming in mass, but also individual specimens (crawling on the skin or piercing it). Ants may be a pest in varying manners. A special example of this is if they invade sand castles [sun bathing places on the beaches surrounded by sand walls]. Wasps are attracted by different ways to childrens' holiday camps. In 1973, they were even aggressive on the beach of Hiddensee. Caterpillars of Thaumatopaea pinivora may become a serious health pest in individual cases. The real cause is not always detected by laymen. Fleas occur more or less regularly. Sometimes they are incorrectly diagnosed or reported.

Animals

Embryogenesis of Xyleborus ferrugineus (Fabr.). (Coleoptera, Scolytidae) II. Developmental rates of male and female embryos.

The developmental rates of male and female embryos of Xyleborus ferrugineus were compared by charting for each sex the mean age for each of ten discrete morphological stages of embryogenesis from pole cell exclusion to eclosion male and female embryos developed synchronously from stage 1 (which begins with pole cell exclusion) through stage 4 (which ends with the completion of germ band extension and metamerization). After stage 4 and throughout the remainder of embryogenesis, the mean ages per morphological stage of male embryos were significantly greater than those for female embryos. The expected physiological consequences of a haploid genome in the male embryo as compared to a diploid condition in the female embryo are discussed as the possible basis for the persistent lag observed in male developmental rate after stage 4.

Animals

Ultrastructural dynamics of the corpus allatum of Choleva angustata Fab. (Coleoptera, Catopidae).

The ultrastructure of the corpora allata (CA) during postembryonic stages of Choleva angustata Fab. shows cyclic changes, in particular regarding the endoplasmic reticulum and the mitochondria. During the last larval instar, at the short transitory period which follows the cessation of alimentation, we observed a highly unusual appearance of the CA, characterized by intensive vacuolization. After this transitory period, the smooth endoplasmic reticulum (ser) disappears until the imago emerges. These observations along with our experimental data permit a physiological interpretation.

Animals

Effect of parental age and developmental rate on the production of active form of Callosobruchus maculatus (F.) (Coleoptera: Bruchidae).

Three similar experiments were conducted to see the effect of parental age and parental developmental speed on the production of "active-form" (i.e., capable of flight) offspring in Callosobruchus maculatus (F.). In experiment I, using the adults which emerged on three different days (as fast, intermediate, and slow in development), eggs were collected on three different days (at young, middle, and old age) during the adult life span. The results showed that the older parents produced more active-form offspring irrespective of the parents' own rate of development. In experiment II, the parental rate of development was investigated in more detail by using the adults that emerged over the entire span of their emergence period. In experiment III, the effect of parental age was investigated in more detail by collecting the eggs daily during the female adult's entire life span. Both experiments confirmed the trend observed in experiment I. From these results it can be concluded that the older the parents, the higher the percentage of the active form in their offspring. However, there was no significant systematic trend due to the length of the developmental period of the parents as seen in the parental age. This trend, that more active forms emerge from older parents, seems to be related to the decreased viability of older parents. It is thought that the less viable eggs produced by older parents are more susceptible to stimuli which induce the active form.

Animals