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Identification of Corynebacterium jeikeium and Corynebacterium CDC group D2 with the API 20 Strep system.

A total of 170 strains of Corynebacterium jeikeium and 23 strains of Corynebacterium group D2 were examined in three British laboratories using the API 20 Strep identification system and three supplementary tests (catalase production, urease production and nitrate reduction). The isolates were collected from clinical specimens in various laboratories over a three-year period. The two species produced consistent reactions in these tests after 24 h. Two tests were highly discriminatory, with positive reactions for ribose fermentation seen for Corynebacterium jeikeium while urease production was observed with Corynebacterium group D2. This method allows routine clinical laboratories to rapidly identify these emerging pathogens.

Corynebacterium

Evaluation of two test-kits--API and Oxi Ferm tube--for identification of oxidative-fermentative Gram-negative rods.

Two test-kits--API and Oxi Ferm tube--have been compared for accuracy in individual tests and for identification on the genus or species level with conventional biochemical tests on 154 oxidative-fermentative gram-negative rods. The two test systems were found to be reliable and permit identification of the clinically most significant oxidative-fermentative strains.

Bacteriological Techniques

Evaluation of the API ZYM system for identification of Bacteroides and Fusobacterium species.

The API ZYM patterns of 97 Bacteroides and 25 Fusobacterium strains were examined. The system discriminated between B. asaccharolyticus, B. melaninogenicus ss. melaninogenicus, and B. melaninogenicus ss. melaninogenicus, but not between other Bacteroides species or between species of Fusobacterium. The results provided new information on the enzymatic activity of these groups of bacteria.

Alkaline Phosphatase

Fertile diploid drones in africanized honeybees, Apis mellifera adansonii.

59 diploid drones of Apis mellifera adansonii, 12-37 days old, were tested for the presence of semen after provoked ejaculation; 13 drones ejaculated semen enough to be used in an instrumental insemination, but only three on them (5%) furnished 1 mm3 of semen. The problems referring to the attainment of descendants from the 2n drones are briefly discussed.

Animals

Ultrastructural analysis of the freeze-etched spore envelope of the microsporidian, Nosema apis Zander.

The outer limiting layer of the spore coat of Nosema apis is relatively smooth. The inner limiting layer shows two fractured faces, the concave face carrying many stud-like projections, 120 nm long and 50 nm high, while the convex face carries numerous depressions which are complementary to the projections. In addition, the convex face bears 7 nm particles. In between the outer and inner limiting layers lies the thick homogeneous portion of spore coat which is comprised of numerous microfibres, each 9 nm in diameter. These microfibres resemble those in the freeze-etched host endocuticle. Next to the inner limiting layer of the spore coat are double spore membranes. The convex faces of these spore membranes have a dense population of particles, each 7 nm in diameter.

Animals

5-Hydroxytryptamine in the venom of the honey bee (Apis mellifera L.): variation with season and with insect age.

We used liquid chromatography with electrochemical detection to show that 5-HT is present in the venom of worker honey bees (Apis mellifera L.). Immunohistochemical demonstration of 5-HT-like immunoreactivity within the venom reservoir supports this finding. Measurements were made on bees of known age at various times during the summer season. The amount of 5-HT in the venom system varies with the age of the bee and with the time of year at which the bees reached a specific age. 5-HT is shown to be a component of pure venom, rather than simply present in venom gland and reservoir tissues, by its presence in venom collected by electrical 'milking' of worker bees.

Age Factors

Toxinology of venoms from the honeybee genus Apis.

The venoms of Apis dorsata, A. cerana, A. florea, and three different populations of A. mellifera were compared for lethal activity toward mice. All venoms exhibited identical activities, a finding consistent with recent evolutionary history within the genus. Young queen honeybees use their venoms only for stinging other queens and possess a venom only half as lethal to mice as worker venom, and by the time queens are 1-2 years of age their venom has become essentially inactive. Phospholipase A2 is the most lethal of the honeybee venom peptides, whereas melittin, which is only slightly less lethal, is the most abundant. Concurrent analyses of melittin, phospholipase, and the combination of the two at their natural 3:1 mixture in bee venom revealed that the lethal activity of the mixture was about the same as native honeybee venom. This value was less than that for either melittin or phospholipase alone and indicates that synergism of the two peptides is not occurring. The results are consistent with independent lethal activities for the venom components, and show that melittin is not only the dominant, but also the main lethal component in honeybee venom.

Animals

Melittin synthesis in the venom system of the honey bee (Apis mellifera L.).

The amount of melittin (measured by a direct hemolytic assay) contained in the venom system of single honey bees (Apis mellifera), of known age, increases from the time of eclosion to an age of about 4 weeks when about 500 micrograms of melittin is present. In older bees (5-6 weeks) the melittin level falls to about 250 micrograms. Measurements of the incorporation of [3H]leucine (injected into the haemolymph) into melittin show that melittin synthesis is most active in bees aged between 1 and 2 weeks after eclosion. The melittin content of the venom system changes as the summer progresses. Melittin levels in a bee of any age greater than 1 week are lower in mid-August than in a bee of the same age in early June.

Animals

FMRFamide-like immunoreactivity in the brain of the honeybee (Apis mellifera). A light-and electron microscopical study.

Peptide-FMRFamide-like immunoreactivity in the brain and suboesophageal ganglion of the honeybee Apis mellifera L. is demonstrated with the peroxidase-antiperoxidase technique. Immunoreactivity is found in about 120 perikarya of the brain and in about 30 of the suboesophageal ganglion. These cells are distributed in 13 paired clusters representing neurons of different types including neurosecretory neurons projecting to neurohemal organs. Immunoreactivity of different intensity is found in the non-glomerular neuropil around the mushroom bodies, in the lateral protocerebrum, the central body, the optic tubercles, the lobula and medulla of optic lobe, the ocellar neuropil, in multiglomerular elements of the antennal lobes and in the dorsal deuterocerebrum. In the mushroom bodies, immunoreactivity is located in layers of the lobes and stalks, corresponding to intrinsic fibre bundles of some Kenyon cell types. The somata of these intrinsic cells did not show FMRFamide-like immunoreactivity. Electron microscopy of immunostained somata and nerve fibres was performed employing a pre-embedding peroxidase-antiperoxidase technique. Fibres of optic lobes and the non-glomerular neuropil contain immunoreactive dense core vesicles (diameter 50-165 nm) accumulated in boutons besides small synaptic vesicles and synaptic membrane specializations. Immunoreactive layers of the mushroom body neuropil were analysed at the ultrastructural level. Axon profiles with dense-core vesicles of a small type (diameter 35-75 nm) show only faint immunoreactive products. Immunoreactivity of intrinsic mushroom body neurons does not appear to be specifically correlated with synaptic organelles. Our results indicate that FMRFamide or related peptides peptides may be neuroactive compounds in different classes of nerve cells in the bee brain.

Animals

Enzymatic activities of Dermatophilus congolensis measured by API ZYM.

API ZYM kit was used to test enzymatic activities on eighteen strains of Dermatophilus congolensis. All strains produced lipase and acid phosphatase, which act on lipids, and leucine arylamidase which act on proteins. Another 10 exoenzymes were present in at least one of the strains.

Actinomycetales

Phylogenetic relationships in the honeybee (genus Apis) as determined by the sequence of the cytochrome oxidase II region of mitochondrial DNA.

The complete nucleotide sequence of the mitochondrial cytochrome oxidase II (COII) gene was determined for five species of the honeybee (Genus: Apis): A. andreniformis, A. cerana, A. dorsata, A. florea, and A. koschevnikovi; these were then compared to the known sequence of the A. millifera gene from Crozier et al. (1989, Mol. Biol. Evol., 6: 399-411) and the wasp Excristes roborator (Liu and Beckenbach, 1992, Mol. Phylogenet. Evol., 1:41-52). Phylogenetic relationships were derived using the parasimony methods DNAPARS and PROTPARS of Felsenstein ("PHYLIP Manual Version 3.4, "University Herbarium, Univ. of California, Berkeley). The results suggest that A. dorsata is the most ancestral species, followed by the branching of A. florea/A. andreniformis and A. koschevnikovi, and then A. mellifera and A. cerana. This inference differs from the currently accepted view that considers the A. florea/A. andreniformis line to be the most ancestral.

Amino Acid Sequence

Comparative in silico analysis of Apis mellifera immune responses to Varroa destructor and Tropilaelaps mercedesae: Common and mite-specific molecular signatures.

Parasitic mites Varroa destructor and Tropilaelaps mercedesae represent major threats to global honey bee (Apis mellifera) health and productivity, yet comparative molecular insights into host responses remain limited. To address this, we systematically compiled published studies (2015-2025) reporting genes associated with honey bee interactions with V. destructor (11 studies, 87 genes), T. mercedesae (4 studies, 35 genes), and hygienic behavior (6 studies, 44 genes). Gene identifiers were harmonized to the Amel_HAv3.1 genome assembly, yielding three non-redundant sets: 64 Varroa-associated, 34 Tropilaelaps-associated, and 44 hygienic behavior-associated genes. Venn analysis identified 10 overlapping genes (including A0A088A8D5, A0A088ADL8, ABAE_APIME, Def1, Def2, Gapdh, HYTA_APIME, Imd, LOC726783, and Vg), suggesting conserved defense mechanisms, while 41 and 24 genes were uniquely associated with Varroa and Tropilaelaps, respectively. Enrichment analyses revealed Varroa-responsive genes were enriched in immune processes, chitin catabolism, and signaling pathways (Toll/Imd, MAPK, Wnt). Tropilaelaps-associated genes were enriched for antibacterial defense and stress response, with Toll/Imd signaling as the sole significantly enriched pathway. Overlapping genes reinforced core innate immunity activation. Protein-protein interaction network centrality analysis identified key hub genes: Def1, HYTA_APIME, ABAE_APIME, PPO, Imd, PGRP-LC, Vg for Varroa; and ACPH1_APIME, MRJP1, Vg, LOC726783 for Tropilaelaps. Results demonstrate that, despite differences in mite biology, honey bees show a conserved immune response against both parasites, centered on antibacterial defense, humoral immunity, and activation of the Toll/Imd pathway. Although limited by the in-silico nature and research asymmetries reflecting Tropilaelaps' emergence, this curated resource establishes a comprehensive framework for elucidating shared and distinct molecular defense mechanisms. Ultimately, this approach prioritizes diagnostic markers and candidate genes for functional validation and breeding strategies to enhance colony resilience against mite‑driven disease globally.

Animals

Phospholipase A2 in venom extracts from honey bees (Apis mellifera L.) of different ages.

We measured phospholipase A2 activity in the venom of worker honey bees (Apis mellifera L.) of known ages using chemical (titrimetric) and radioallergosorbent methods. The two techniques give similar results. Low levels of phospholipase A2 are present in the venom system at the time of eclosion. Phospholipase A2 activity in the venom increases steadily through the 10 days after eclosion. Maximal phospholipase A2 levels (about 40 micrograms phospholipase A2/venom sac) are maintained through the rest of the life of a worker bee in summer.

Aging

Enzyme activities of the strains belonging to family Leptospiraceae detected by the API ZYM system.

A total of 32 strains of the family Leptospiraceae (23 strains of Leptospira interrogans, 6 strains of Leptospira biflexa, 2 strains of Leptonema and 1 strain of Leptospira parva) were examined for enzyme activities using 89 substrates (API ZYM system). More than 90% of the strains belonging to the family Leptospiraceae possessed strong activities of beta-D-galactosidase, beta-D-glucosidase and 5 esterases (C5, C6, C8, C9 and C10). More than 90% of the strains belonging to the genus Leptospira, except L. parva, had strong activities of L-lysine arylamidase and alpha-L-glutamate arylamidase. L. biflexa strains, except serovar andamana, were different from the other strains examined in that they possessed glycyl-glycine arylamidase, glycyl-phenylalanine arylamidase and L-tryptophan arylamidase. L. biflexa strains, except andamana, L. parva and Leptonema strains possessed strong activities of glycine arylamidase and leucyl-glycine arylamidase. Two strains of the genus Leptonema were different from the strains belonging to the genus Leptospira in that they possessed strong activities of beta-D-lactosidase. L. parva lacked alpha-D-galactosidase which other strains belonging to the family Leptospiraceae possessed. Dendrogram analysis revealed that strains belonging to the family Leptospiraceae were divided into 4 groups. The first group consisted of all strains belonging to L. interrogans and serovar andamana of L. biflexa; the second group consisted of the remaining 5 serovars of L. biflexa; the third group consisted of the genus Leptonema; and the fourth group consisted of only L. parva.

Aminopeptidases

Transfer of the methyl group of methionine to choline and to tRNA in the honeybee Apis mellifica L.

Contrary to some previous reports on the absence of biological transmethylation reactions in some insect species, the transfer of the methyl group of methionine-methyl 14C leading to choline and to methylated bases in tRNA was shown in the honeybee Apis mellifica. The addition of antibiotics to the food of the insect does not diminish the incorporation of radioactivity, proving that intestinal bacteria are not responsible for the methylation reactions observed.

Animals

Antimicrobial susceptibility testing of Actinomyces pyogenes: comparison of disk diffusion test and Api ATB Strep system with the agar dilution method.

The use of the disk diffusion and the Api ATB Strep system or a related technique for a few antibiotics was compared with the agar dilution method for antimicrobial susceptibility testing of 103 clinical isolates of Actinomyces pyogenes. There was complete agreement between disk diffusion and MIC in 98.8%, with minor errors, in 0.7% and with very large errors, in 0.5% of cases. The common criteria for the interpretation of zones could be kept for penicillin G, amoxicillin, methicillin, cephalothin, erythromycin, lincomycin, pristinamycin, vancomycin, rifampin, streptomycin, kanamycin, gentamicin and chloramphenicol. The proposed breakpoints for a tetracycline 30 IU disk were > or = 22 mm for susceptibility and < 22 mm for resistance. There was complete agreement between the ATB strip system and MIC in 98.3% of cases, with minor errors in 0.9% and with very large errors, in 0.8% of cases. All the dissimilarities were due to streptomycin and tetracycline and results could not be reported for these 2 antibiotics when using this system. Wells with kanamycin and gentamicin at low concentrations as well as chloramphenicol should be included by the manufacturer.

Actinomyces

Antibiogram typing of methicillin-resistant Staphylococcus aureus: a comparison with phage typing, biotyping and API Staph.

68 strains of methicillin- and gentamicin-resistant Staphylococcus aureus (MRSA) have been characterized by four different methods. First, by their production of lecithinase, lipase, pigment and sheep haemolysin. Second, by API Staph code. Third, by their sensitivity to 9 antibiotics. Fourth, by phage typing using the International Set and Supplementary phages. The third method was the most discriminatory. The combination of the first three techniques provides a highly effective, cheap and simple system to type MRSA. 80 separate MRSA strains from 26 countries were found to belong to a wide variety of phage types. Most were of group III. The most commonly found types were 85 (6 strains), 84 (4 strains) and 47 (3 strains).

Bacterial Typing Techniques

Purification and properties of a very high density lipoprotein from the hemolymph of the honeybee Apis mellifera.

A larval-specific very high density lipoprotein (VHDL) has been isolated from the hemolymph of the honeybee Apis mellifera. VHDL was isolated by a combination of density gradient ultracentrifugation and gel filtration. The purified protein is a dimer of Mr 160,000 apoproteins as shown by chemical cross-linking with dimethyl suberimidate. N-Terminal sequence analysis indicates that the two polypeptide chains are identical. The holoprotein contains 10% lipid by weight and 2.6% covalently bound carbohydrate. A native Mr 330,000 species was obtained by gel permeation chromatography. Antiserum directed against VHDL was used to show that VHDL is distinct from other hemolymph proteins and appears to constitute a novel lipoprotein of unknown function. However, the lipoprotein is present in high amounts in hemolymph only at the end of larval life, suggesting a potential role in lipid transport and/or storage protein metabolism during metamorphosis.

Amino Acid Sequence