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From bioactive compounds to volatile profiles: a multidimensional characterization of Indonesian stingless bee honeys.

BACKGROUND: Stingless bee honeys are drawing increasing attention as ingredients for functional foods and health-oriented products because of their distinctive sensory characteristics and bioactive potential. In this study, honeys collected from nine stingless bee species reared in West Sumatra, Indonesia, were comprehensively characterized using physicochemical indices, antioxidant assays [DPPH (i.e. 2,2-diphenyl-1-picrylhydrazyl) and ferric reducing antioxidant power], microbiological screening, volatile profiling [gas chromatography-mass spectrometry (GC-MS)] and Fourier transform infrared (FTIR) fingerprinting. RESULTS: Marked between-sample variability was observed across key quality attributes, including pH (2.80-3.68), Brix (49.83-61.25), viscosity (23.36-175.22 cP) and color parameters. FTIR spectra were consistent with carbohydrate-rich matrices and exhibited carbonyl-related bands. GC-MS profiling identified linalool oxide isomers and junenol among the predominant volatiles. To the best of our knowledge, junenol has not previously been reported in stingless bee honey and may represent a potential regional chemical marker for Indonesian stingless bee honeys. Lactic acid bacteria were detected in selected samples, whereas yeast and mold were not detected. Antioxidant activities were comparatively low, which may reflect local environmental and ecosystem-related factors. CONCLUSION: The results provide a multi-parameter baseline for stingless bee honeys produced within a shared ecosystem in West Sumatra and demonstrate the value of integrating conventional chemical indices with FTIR and volatile fingerprints for quality assessment. This combined approach may also support future authentication and origin-tracing frameworks for Indonesian stingless bee honeys. © 2026 Society of Chemical Industry.

Animals

Allergens in bee venom. I. Separation and identification of the major allergens.

Honeybee venom was separated into seven fractions by gel filtration on Sephadex G-75. Allergenic activities of these fractions were assessed by the paper disc radioallergosorbent test (RAST) with a panel of sera from 24 individuals who had systemic reactions to bee stings, 7 who had large local reactions, and 10 control subjects who had reactions of 5 cm or less following bee stings. Three fractions were identified by enzyme or direct hemolytic activity. Twenty-nine of 31 sera from patients having either systemic or large local reactions to bee stings were positive when radioallergosorbent tested with whole bee venom; 22 were positive to phospholipase A, and 28 were positive to both fractions 1 and 2. Thirteen sera combined most strongly with fraction 1, 12 sera most strongly with fraction 2, hyaluronidase, and three sera about equally with fractions 1, 2, and 3. Reactions with other fractions were much weaker. Fractions 1 and 2 were potent inhibitors of RAST with whole venom in the sera reacting most strongly with fractions 1 or 2, respectively. Fraction 3, phospholipase A, and commercial bee venom phospholipase A were significantly less potent inhibitors with the sera tested. In the cases in which IgE antibody bindings to fractions 1, 2, and 3 were of similar magnitude, inhibitions of RAST using the various fractions both on the discs and as inhibitors demonstrated substantial cross-reactivity between the fractions. These results strongly indicate that by using RAST with human sera from bee sting-sensitive individuals, fraction 1, the high molecular materials, and fraction 2, hyaluronidase, are the major allergens in honeybee venom. Phospholipase A appears to be of secondary importance.

Allergens

Effect of honey bee venom on prostaglandin levels in mouse skin.

The effects of honey bee venom on prostaglandin (PG) E levels were studied in mouse skin under in vivo and in vitro conditions. Levels of PGE were increased 10.8-fold after 15 minutes exposure to reconstituted bee venom in vitro and 3.8-fold 35 minutes after a bee sting in vivo. Phospholipase A2 (PLA2), a major componet of bee venom, also caused a 10.9-fold increase in PGE levels in vitro and may be primarily responsible for this response of skin to bee venom.

Animals

Feeding the disease: The impact of nutritional supplementation on Nosema (Vairimorpha) infection in honey bees (Apis mellifera).

Honey bees (Apis mellifera) experience variable colony losses across regions and years, with infectious diseases representing a key component of colony health challenges. Among the most prevalent pathogens are the microsporidian parasites Nosema apis and Nosema ceranae, whose impacts on host survival and transmission vary widely depending on context. While nutritional supplementation is commonly used to support honey bee health, its effects on Nosema infection outcomes remain unclear. Here, we experimentally tested whether dietary enrichment alters survival and infection intensity following exposure to a mixed Nosema inoculum. Newly emerged worker bees were challenged with Nosema spores and maintained on either a basic sucrose diet or the same diet supplemented with a commercial pollen substitute. Dietary enrichment significantly increased both mortality risk and infection intensity in Nosema-infected bees, while having no detectable effect on survival in uninfected controls. These results indicate that supplementation can, counter intuitively, exacerbate nosemosis by promoting parasite replication rather than enhancing host resistance. Our findings highlight the importance of distinguishing nutritional effects on host tolerance versus resistance, and caution that interventions intended to improve bee nutrition may inadvertently increase pathogen production and transmission potential under certain conditions.

Animals

Social evolution and diminished olfactory function in larval honey bees.

Social evolution made larval honey bees dependent on adult colony members for feeding; they are confined to cells in waxen honeycombs and visited about 100 times per day by adult "nurse" bees. Based on organismal resource conservation theory, we predicted larvae have diminished olfactory capabilities at both the molecular and behavioral levels. Consistent with theory, larvae expressed very low levels of Orco, an essential gene for olfactory receptor (OR) function. By contrast, they showed higher expression of Ir25a, essential for other forms of sensory perception including gustation. Also consistent with theory, behavioral assays demonstrated that larvae cannot find food via olfaction, suggesting they use taste for feeding. By contrast, it is known that adult honey bees use OR-based olfaction extensively for a variety of behavioral functions, and the honey bee genome contains many OR-encoding genes. Comparative transcriptomic analyses of social and nonsocial insects suggest that this developmentally regulated suppression of olfactory function is related to social evolution, especially systems of offspring care.

Animals

Evaluation of bee sting allergy by skin tests and serum antibody assays.

We studied 55 subjects who had had anaphylactic reactions to bee stings within the previous 3 years. 38 out of 54 tested had IgE antibody to honey bee venom (HBV) as measured by radioallergosorbent test (RAST). On skin testing, 30 out of 34 had a positive test to HBV. Of these, 26 had a positive RAST. A positive skin test to HBV at high dilution or else a high anti-HBV RAST score appeared to identify those who, in a 6-month follow-up period, were at risk of developing further anaphylaxis following bee stings or immunotherapy. Of the two tests, RAST appeared to be the less sensitive. Measurements of IgG antibody to phospholipase A were seldom available for the period immediately preceding an anaphylactic episode and proved to be a poor means of predicting the liability to bee sting anaphylaxis in subsequent months.

Anaphylaxis

Anti-arthritic effect of bee venom.

Bee venom, administered subcutaneously, suppressed the development of carrageenan-induced paw edema and adjuvant arthritis in the rat in a dose-related manner. A single dose of bee venom administered subcutaneously the day before or on the day of injection of complete Freund's adjuvant (CFA) effectively suppressed the development of polyarthritis. This suppressive effect decreased progressively as dosing was delayed. Bee venom was found to be most effective when mixed and injected (sub-plantar) together with CFA, the disease-inducing agent. Similarly, antigens such as egg albumin, when incorporated into CFA, and injected into the hind paw, prevented the development of arthritis. These results suggest that at least two mechanisms are involved in the anti-arthritic action of bee venom: (1) alteration of the immune response, probably via antigen competition, and (2) an anti-inflammatory action via corticosteroids or through an as yet undetermined mechanism.

Animals

Dual origin of highly social behavior among bees.

A study of behavior and structure indicates that highly eusocial behavior arose twice in the bees--i.e., in the stingless bees (Meliponinae) and in the honeybees (Apinae). Morphological features demonstrate the distinctiveness of these two groups and the relationship of the latter to bumblebees (Bombini) and orchid bees (Euglossin). The social behaviors of the stingless bees and honeybees, while more or less equally elaborate, are so different as to support their independent origins. The primitive apids, along with the related Xylocopinae (in the Anthophoridae), appear to have had the potential for parasocial, subsocial, and primitively eusocial behavior and from such forms the two highly eusocial groups arose.

Animals

Reactions of anti-bee venom mouse reagins and other antibodies with related antigens.

Reaginic type antibodies, as well as gamma G1 and hemagglutinating antibodies were raised in mice following bee venom immunization. The optimal immunizing dose was 1 mug bee venom in 1 mg A1(OH)3 gel. All antibodies were specific for bee venom and failed to react to yellow jacket and hornet venoms or to bee, wasp, yellow jacket and hornet whole body extracts.

Aluminum Hydroxide

Bee-sting anaphylaxis in childhood.

The syndrome of bee-sting anaphylaxis is described. Children who have suffered crescendo reactions to previous bee stings, especially children with a history of asthma, are significantly at risk. Desensitization is required in such cases; adrenaline should be kept in the home, and parents should be trained in its emergency use. The immunological mechanisms of bee-sting anaphylaxis are described. The striking seasonal incidence of anaphylaxis suggests that pollen or plant products which are incorporated in the venom may also be important in its genesis; it suggests also that antigens prepared from either whole-body or pure-venom extracts should be prepared from bees which are collected in late spring.

Aerosols

Whole-genome sequences of the dwarf honey bee subgenus Micrapis: Apis andreniformis and Apis florea.

The Micrapis subgenus, which includes the black dwarf honey bee (Apis andreniformis) and the red dwarf honey bee (Apis florea), remains underrepresented in genomic studies despite its ecological significance. Here, we present high-quality de novo genome assemblies for both species, generated using a hybrid sequencing approach combining Oxford Nanopore Technologies long reads with Illumina short reads. The final assemblies are highly contiguous, with contig N50 values of 5.0 Mb (A. andreniformis) and 4.3 Mb (A. florea), representing a major improvement over the previously published A. florea genome. Genome completeness assessments indicate high quality, with BUSCO scores exceeding 98.5% using the Hymenoptera database and k-mer analyses supporting base-level accuracy. Repeat annotation revealed a relatively low repetitive sequence content (∼6%), consistent with other Apis species. Using RNA sequencing data, we annotated 12,189 genes for A. andreniformis and 12,207 genes for A. florea, with ∼98% completeness in predicted proteomes. These genome assemblies provide a valuable resource for comparative and functional genomic studies, with the potential to offer new insights into the genetic basis of dwarf honey bee adaptations.

Male

Allergens in bee venom II. Two new high molecular weight allergenic specificities.

Two new allergenic specificites were detected in honeybee venom and the two corresponding protein substances isolated by gel filtration, immunoadsorption, and ion exchange chromatography. The first of these, allergen B, has a molecular weight ranging from 49,000 to more than 200,00 d and can be recognized by rabbit and guinea pig antisera as well as by human reaginic sera using the radioallergosorbent test (RAST). Allergen B gives a single line in immunodiffusion distinct from hyaluronidase, phospholipase A, melittin, and the other high molecular weight substances described and gives a single band at 49,000 d in sodium dodecyl sulfate (SDS) polyacrylamide gel. The second substance, allergen C, has a molecular weight of 105,000 d and was separated from allergen B by immunoadsorption with insoluble antibody. Allergen C was shown to be distinct from the other sustances in bee venom by immunodiffusion with animal antisera. One human reaginic serum was monospecific for allergen C. Two other minor components of 86,000 and 71,000 d are present in bee venom; their allergenic activities are unknown. The two specifities, B and C, comprise most of the reactivity of the previously described Sephadex G-75 fraction 1 and clearly are important allergens, reacting with 98% of sera from bee venom-allergic individuals.

Allergens

Chromosome-level genome assembly of the large carpenter bee Xylocopa dejeanii Lepeletier, 1841 (Hymenoptera: Apidae).

Xylocopinae, a diverse bee subfamily comprising over 1,000 bee species, and also a major model system for studying the pollination and evolution of sociality. The lack of chromosome-level genome assembly resources for the Xylocopinae limits our research of their biology and evolution. Here, we provided the first pseudo-chromosomes genome assembly of the Xylocopa dejeanii combined PacBio CLR long reads, Illumina sequences, and Hi-C data. The final genome is 194.44 Mb located in 16 chromosomes. Our assembly includes 141 scaffolds, with a scaffold N50 length of 13.15 Mb. BUSCO analysis revealed 99.00% completeness. Genome annotation identified 28.27 Mb of repetitive elements, 10,970 protein-coding genes, and 432 ncRNAs. This high-quality X. dejeanii assembly advances our understanding of Xylocopinae genomics and provides new insights into bee evolution.

Animals

[Hyposensitisation treatment with pure bee venom (author's transl)].

Hyposensitisation with pure bee venom was undertaken in eleven persons with proven allergy to bee stings. Rapid hyposensitisation led to side effects in seven of them during dosage increase. Serial determination of total IgA, IgG, IgM and alpha1-antitrypsin revealed no changes, while allergen-specific IgG and IgE and total IgE increased maximally after 30 days. All persons were exposed to one bee sting during the treatment: all tolerated it well without the allergic reactions which had previously been noted.

Adolescent

Ethological study of African carpenter bees of the genus Xylocopa (Hymenoptera, Anthophoridae).

Over 200 bees of 4 African Xylocopa species were observed for 3 months on the island of Rubondo (L. Victoria, Tanzania). Some 40 burrows were investigated, 100 bees marked. Building techniques are minutely reported; burrow construction simplifies defence and allows re-use by succeeding generations. Food plants, collecting, provisioning and all aspects of ontogenesis are treated, insight given into pupal leg mobility and the much-debated emergence order after eclosion: the first-hatched bee, in the rearmost cell, prepares the way for siblings. Copulation and the copulatory hold are studied using tethered femalefemale, and illustrated. A few colonization experiments are described and s spectrogram of begging sounds given. Meeting of the generations, feeding of the young and nest-defence by young siblings throw light on the evolution of primitively eusocial communities. The known literature is reviewed in each chapter.

Africa

Properties of a free and a solubilized form of bound alpha,alpha-trehalase purified from honey bee thorax.

The free and bound forms of alpha,alpha-trehalase (EC 3.2.1.28) of the honey bee thorax were separated and the bound enzyme was solubilized by raising the pH to 8.0 for 10 h. Both enzymes were purified. They were homogeneous as determined by several electrophoretic criteria. It was found that the two enzymes had very similar Km's (each about 0.89 mM), Vm's (53.2 and 54.3 U/mg for free and solubilized, respectively), inhibition characteristics, specificities (both only hydrolyzed alpha,alpha-trehalose), pH maxima (each had maxima at about 3.5 and 6.5), molecular weights (65,000), isoelectric points (5.1), reactivities to sulfhydryl reagents, electrophoretic mobilities, activation energies (about 12.8 kcal/mol), and similar stabilities to heat, pH, and urea. Some significant differences between the two enzymes were, however, found: the solubilized alpha,alpha-trehalase floated at 70% saturation of ammonium sulfate while the free alpha,alpha-trehalase did not; the solubilized alpha,alpha-trehalase did not dissociate into subunits as readily as did the free one; and the solubilized alpha,alpha-trehalase was found to bind more readily to a hydrophobic grouping than the free enzyme. In addition to these comparisons, three new findings relating to thorax alpha,alpha-trehalases are reported. (1) Thorax alpha,alpha-trehalases are strongly inhibited by beta-glucosides (Ki values of about 8 x 10(-4) M); (2) under certain conditions thorax alpha,alpha-trehalases from honey bees dissociated into subunits of one-half the normal molecular weight; (3) honey bee thorax alpha,alpha-trehalases have unusual biphasic pH activity profiles.

Animals

The localization of honey bee thorax trehalase.

Differential and sucrose gradient centrifugation of honey bee thoraces, disrupted by gentle methods and using mannitol-triethanolamine-EDTA buffer at pH 6.5, showed that in the honey bee thorax 92-94.8% of the trehalase was mitochondrial. Since only 92-95% of the cytochrome c oxidase, a known mitochondrial enzyme, was found in the mitochondrial fraction by these methods, it was concluded that honey bee trehalase is totally mitochondrial. Significant amounts of 'microsomal' or 'soluble' trehalase were formed only by harsh methods of thorax disruption and similar 'microsomal' or 'soluble' trehalases were also formed by harsh treatment of purified whole mitochondria. They thus seem to be artifacts of the isolation procedure. Studies (using marker enzymes) with purified intact mitochondria which were dispersed by various chemical, enzymatic, and physical methods showed that the trehalase in the mitochondria was membrane bound and that it was bound to either the outside of the inner membrane or to one of the sides of the outer membrane.

Animals

Genetic variation influences food-sharing sociability in honey bees.

Individual variation in sociability is a central feature of every society. This includes honey bees, with some individuals well connected and sociable, and others at the periphery of their colony's social network. However, the genetic and molecular bases of sociability are poorly understood. Trophallaxis-a behavior involving sharing liquid with nutritional and signaling properties-comprises a social interaction and a proxy for sociability in honey bee colonies: more sociable bees engage in more trophallaxis. Here, we identify genetic and molecular mechanisms of trophallaxis-based sociability by combining genome sequencing, brain transcriptomics, and automated behavioral tracking. A genome-wide association study (GWAS) identified 18 single nucleotide polymorphisms (SNPs) associated with variation in sociability. Several SNPs were localized to genes previously associated with sociability in other species, including in the context of human autism, suggesting shared molecular mechanisms of sociability. Variation in sociability also was linked to differential brain gene expression, particularly genes associated with neural signaling and development. Using comparative genomic and transcriptomic approaches, we also detected evidence for divergent mechanisms underpinning sociability across species, including those related to reward sensitivity and encounter probability. These results highlight both potential evolutionary conservation of the molecular roots of sociability and points of divergence.

Animals