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[The effect of resuscitation on the results obtained in identification of enterobacteriaceae by the API system (author's transl)].

During studies on the reliability of the API system, the question arose whether the small proportion of adequate results in cultures stored at 4 degrees C could be attributable to this method of storage. Therefore, the reactions of those cultures which had caused most problems were studied following periods of storage ofone day, six weeks and nine weeks at 4 degrees C, and in the freeze-dried state. Storage in particular conditions was found to have a definite effect on the reliability of the API system so that a period of resuscitation of forty-eight hours in a bouillon at 37 degrees C is required to restore the cultures to normal.

Bacteriological Techniques

[Evaluation of the antibiotic sensitivity of Pseudomonas sp. using the API-ATB-PSE system. Comparison with diffusion and the reference agar dilution method].

In vitro activity of twelve antibiotics (ticarcillin, mezlocillin, azlocillin, piperacillin, cefoperazone, cefsulodin, ceftazidime, gentamicin, netilmicin, pefloxacin and ciprofloxacin) was determined by measuring minimum inhibitory concentrations (MICs) using agar dilution according to WHO recommendations, agar diffusion and the API-ATB-PSE system. One-hundred and forty-two Pseudomonas strains were studied. Five species of Pseudomonas were represented, i.e. aeruginosa, maltophilia, cepacia, stutzeri and paucimobilis. Isolates came from two Paris hospitals. Percentages of total agreement, minor discrepancies and major discrepancies between the results obtained with the API-ATB-PSE method and those recorded with the reference methods were determined. After checking the discordant strains, the results are discussed in order to evaluate the reliability of the ATB method for antibiotic susceptibility testing with Pseudomonas sp.

Agar

[Evaluation of the API ATB-CMI system for testing the sensitivity of Haemophilus influenzae to antibiotics. Comparison with other technics and reflections on interpretation criteria].

The API ATB-MIC system was used for antibiotic sensitivity testing of H. influenzae (following addition of NAD and hemin). Results were compared to those obtained with agar dilution and disc diffusion. Eighty-four strains with a variety of resistance phenotypes (including beta-lactamase-producing strains and strains resistant to chloramphenicol, tetracycline or kanamycin) were tested. The API ATB-MIC system studies the susceptibility of H. influenzae to antibiotics by determining minimal inhibitory concentrations. Agreement between the methods ranged from 83% to 98% according to the antibiotic. Discrepancies involved ampicillin, minocycline and, to a lesser extent, chloramphenicol. These discrepancies had no influence on the interpretation of results except in one instance involving chloramphenicol. Comparison of the results obtained with each of the three methods leads to a discussion of the criteria that indicate resistance of H. influenzae and of the cutoff concentrations and diameters used for other species. Criteria indicating resistance are production of beta-lactamase for ampicillin, production of enzyme, a MIC above 2 mg/l or a diameter below 26 mm for chloramphenicol, and a diameter below 18 mm or a MIC above 4 mg/l for tetracycline and minocycline.

Anti-Bacterial Agents

Some features of coagulase positive staphylococci from bovine milk. 1. Carbohydrate metabolism: comparison of conventional techniques and the API 50 CH system.

When conventional techniques were applied to 84 isolates of Staphylococcus aureus from milk samples, it was found that they were all catalase and phosphatase positive and oxidase negative. They all fermented glucose within 24 h and mannitol within 24-48 h when inoculated into Hugh & Leifson's medium, enriched with 1% horse serum. When they were subjected to the carbohydrates of the API 50 CH system, all metabolized glucose aerobically, but only 85-89% of the isolates could utilize mannitol aerobically. Because of the difference in the utilization of mannitol observed, the value of the API 50 CH classification in the taxonomy of S. aureus becomes questionable. This system could be used as a handy tool, however, when selecting carbohydrates to be used in taxonomical studies.

Animals

[Use of the API 20E system for rapid identification of Enterobacteriaceae (six hours) (author's transl)].

The authors propose a modification of the method of use of the API 20E system permitting more rapid identification of Enterobacteriaceae within six hours (3 hours preculture and 3 hours incubation on an API 20E plate) it was possible to identify correctly 67% of 192 strains studied at species level and 75.5% studied at generic level. One may note four mistakes (2.1%) of which 3 were minor, (species within the same genus). The construction of a base of numerical data adapted to the technic within six hours would no doubt permit us to reduce the percentage undetermined.

Enterobacteriaceae

[Comparative evaluation of 3 miniaturized systems (API 20E, Enterotube II, Sensititre AP60) commonly used in clinical microbiology laboratories].

API 20E, Enterotube II, Sensititre AP60 have been evaluated. Some biochemical tests (lysine, ornithine, VP, H2S, adonitol , arabinose, citrate) have revealed significative differences among three systems. The total correlations about bacterial identifications have been very similar. The repetibility of identifications of strains isolated from clinical specimens has been 98.7% for Enterotube and API 20E, 95.5% for Sensititre . The biochemical tests have revealed repetibility greater than or equal to 94%, citrate repetibility instead has been 91%.

Bacteriological Techniques

[Comparison of API-10s and Minitek with conventional biochemical tests (author's transl)].

2 biochemical test-kits, API-10S and MINITEK, and conventional biochemical tests were used in parallel for testing 292 strains of the family Enterobacteriaceae. The same 10 biochemical tests were performed in all three systems. In addition the Voges-Proskauer reaction was tested in the conventional and the Minitek-system. The individual biochemical testreactions and diagnoses were compared. An overall average of tests indicated an agreement of 92.6% (Tab. 2). Urease-activity and citrate-utilisation showed the lowest agreement (70.5 and 74.3% respectively). 93.4% of the diagnose obtained with API- and 96.2% of those with MINITEK were identical to the diagnosis obtained by the conventional method. The Voges-Proskauer reaction was found to be more reliable for correct identification than the citrate-utilisation which - inspite of its very low agreement (Tab. 3) - has not influenced the diagnoses.

Bacteriological Techniques

Evaluation of API 20E System and Encise Enterotube for the identification of Enterobacteriaceae of animal origin.

The API 20E System and the Encise Enterotube were evaluated for the identification of the Enterobacteriaceae isolated from clinical specimens of animal origin at a veterinary diagnostic laboratory. Compared to conventional tubed media, the API 20E System identified 235 of 240 isolates (97.9%) correctly. The Encise Enterotube correctly identified 229 of the 240 isolates (95.4%). Thus, both these identification systems could be used to replace conventional methods for identifying members of this family isolated from animal origin.

Animals

[Must pefloxacin and norfloxacin be studied separately against bacteria isolated from urinary tract infections by the API-ATB method?].

2113 bacterial strains were isolated from urinary tract infections in 1992 in 133 French pathology laboratories, 2069 strains were tested using the API-ATB method and the UR-14030 system including NFX and an additional test for PFX. Frequencies of susceptible (S), intermediate (I) and resistant (R) strains to PFX and NFX were respectively (%): 83.3; 8.6; 8.1 and 83.1; 9.5; 7; 4. Overall rate of concordance (C), SS, II and RR, between the two antibiotics reached 92.8, minor discrepancies (Dm), SI, IS, RI and IR, 6.3 and major discrepancies (DM), SR and RS, 0.9 (K = 0.82). For Enterobacteriaceae (n = 1830), frequencies of strains S, I and R were: 90.4; 5.9 and 3.7 with PFX and 90.4; 6.1 and 3.5 with NFX. Percentages of C, Dm and DM were 95.1; 4.4 and 0.5 respectively. The Lee test showed that results obtained with NFX and PFX were equivalent (p < 0.001) allowing to consider that the test of NFX is sufficient to conclude for susceptibility or resistance to both antibiotics using the API-ATB method and the UR-14030 system. Dm were probably related in some cases to a low level resistance mechanism and to the difference between the higher breakpoints (4 micrograms/ml for PFX and 8 micrograms/ml for NFX). DM might be due to artefacts related to the bacterial inoculum size or to the antibiotic concentration obtained in the cupules.

Anti-Bacterial Agents

Evaluation of the ATB 32C, automicrobic system and API 20C using clinical yeast isolates.

The ATB 32C (bioMerieux, Spain), AMS-YBC (Vitek System, bioMerieux, Spain) and API 20C (bioMerieux, Spain) systems were evaluated for their reliability in identifying 100 clinical yeast isolates. The ATB 32C, AMS-YBC and API 20C systems correctly identified 97%, 98% and 100% of the isolates respectively. There were no significant differences in incubation periods between ATB 32C and AMS-YBC systems. One isolate of Candida tropicalis was wrongly identified by the ATB 32C and the AMS-YBC systems. The Saccharomyces cerevisiae isolate was wrongly identified by the ATB 32C system while the AMS-YBC failed to identify it and a third isolate of Candida krusei was wrongly identified by the ATB 32C system. The overall accuracy and rapidity of the ATB 32C and AMS-YBC systems were sufficient to permit recommendation of either of these systems for routine use in the clinical microbiology laboratory, although the first system enjoys the advantages of having a wider data-base and the possibility of manual reading.

Automation

[Effect of dietary proteins on the multiplication of the protozoon Nosema apis Z].

By counting the spores of protozoon Nosema apis Z. in Bürker's chamber the author was able to find, in 1495 caged bees sacrificed one week after the parasite invasion, from altogether 26 samples of various feeds statistically sifnificant differences of influencing the protozoon development only in sallow pollen. The differences between the individual feeds were statistically more significant in bees sacrificed 14 days after the invasion. Examination of 1260 bees 14 days after the invasion demonstrated that, as compared with glycide food, the parasite development was enhanced by a feed consisting of 6, 9, and 12 per cent fresh rape pollen, 3 and 6 per cent of fresh and dried sallow pollen, 6 per cent freeze-dried pollen mixture, pollen deposited in honeycombs, 7.5, 10, and 12.5 per cent yeast dough, "Arnika" and 3 per cent Bacto peptone. Even 14 days after the invasion no statistically sifnificant differences of influencing the schizogony of protozoon Nosema apis Z. could be demonstrated in bees fed pure glycide feed, dough with 3 and 6 per cent casein hydrolyzate, 3 and 6 per cent Hammarsten casein, 3 per cent dried whole eggs, 3 per cent rape pollen and 3 and 6 per cent fresh pollen mixtures. In the study the possibility of an indirect effect of pollen on the parasite schizogony through the secrete of the pharyngeal glands is being discussed.

Animals

Uncovering hidden complexity in the Apis mellifera mitotranscriptome: a polyadenylation-centered perspective.

Mitochondrial transcription is gaining increasing attention as researchers seek to better understand the full coding potential of mitochondrial DNA (mtDNA). Emerging evidence suggests that mtDNA may encode additional elements beyond classical oxidative phosphorylation genes, pointing to a more complex transcriptional architecture than previously recognized. In this study, we explored the mitochondrial transcriptome of Apis mellifera (Insecta: Hymenoptera), with a particular focus on polyadenylation-associated features. Our analysis revealed that both sense and antisense transcripts undergo polyadenylation, although transcript abundance and poly(A) tail lengths varied markedly across mitochondrial genes. Several transcripts exhibited alternative isoforms, either extended or truncated, frequently including intergenic regions. These regions may represent functional non-coding elements or structural variants rather than conventional untranslated regions (UTRs). Interestingly, some transcripts also contained non-templated nucleotide additions particularly cytosine residues immediately upstream of the poly(A) tails. Monocistronic units that included portions of downstream intergenic regions were among the most abundantly represented, suggesting a possible regulatory role for these sequences. To experimentally validate our in silico findings, we performed RT-qPCR to assess relative gene expression and applied 3' RACE-PCR to define transcript boundaries. These approaches confirmed the presence of multiple transcript isoforms and supported the involvement of polyadenylation in shaping mitochondrial RNA diversity. Together, our findings reveal a previously underappreciated level of complexity in the A. mellifera mitochondrial transcriptome and highlight the potential regulatory significance of polyadenylation dynamics and intergenic region transcription.

Animals

Simulation of CRISPR/Cas9-mediated gene editing for the&#xa0;Vitellogenin gene in Apis mellifera.

CRISPR/Cas9 genome editing provides a powerful framework for interrogating gene function in Apis mellifera. Yet, empirical application remains challenging due to biological constraints, including haplodiploid genetics, narrow embryonic injection window, and the social rearing requirements that complicate functional validation. These constraints necessitate in silico pre-screening to maximize editing success before resource-intensive wet-lab implementation. Within the omnigenic framework, which distinguishes core regulatory genes from peripheral loci buffered by network effects, vitellogenin (Vg) represents an optimal target which is ancestrally dedicated to yolk provisioning; it has been co-opted to orchestrate diverse non-reproductive functions including longevity, stress resistance, immunity, and social behavior. We developed a computational pipeline to design a list of 57 and 56 candidate guide RNAs&#xa0;(gRNA) for targeted Vg knockout, evaluating candidate sites in both functional exons 2 and 3 based on structural accessibility and frameshift efficiency. Comparative analysis revealed complementary strengths in two top-best candidates from initial target pool of predicted gRNAs. The gRNA targeting exon 2 exhibits weaker secondary structure (&#x394;G&#x2009;=&#x2009;-0.25&#x202f;kcal/mol versus -2.10&#x202f;kcal/mol for exon 3), aligning with empirical evidence that sites with &#x394;G&#x2009;>&#x2009;-1.0&#x202f;kcal/mol achieve 2-5&#x2009;&#xd7;&#x2009;higher Cas9 binding efficiency. This site yielded moderate frameshift frequency (77.8%; 61.9 percentile). Conversely, the predicted editing outcome for the gRNA targeting exon 3, despite stronger structural constraints, demonstrated superior functional disruption metrics demonstrating very high frameshift frequency (88.3%; 95.2 percentile), high in silico editing precision, minimal microhomology-mediated repair bias, and reproducible outcomes wherein nearly all predicted indels disrupt the coding sequence. Protein structure and domain analyses further predict that frameshift edits will generate a truncated protein missing all downstream functional domains. We recommend parallel empirical validation of both exon 2 and exon 3 targets to resolve the trade-off between structural accessibility (favoring higher editing rates) and frameshift efficacy (favoring complete loss-of-function). This dual-target strategy accommodates uncertainty in in vivo performance while maximizing the probability of generating informative phenotypes. Our in silico framework enables rational CRISPR design in non-model organisms by computationally balancing biophysical accessibility with functional impact, accelerating functional genomics in species where empirical optimization faces substantial biological constraints.

Animals

Peptide amidation in an invertebrate: purification, characterization, and inhibition of peptidylglycine alpha-hydroxylating monooxygenase from the heads of honeybees (Apis mellifera).

Peptidylglycine alpha-hydroxylating monooxygenase (PHM), an enzyme involved in formation of neuropeptides with a C-terminal amide functionality in mammals and amphibians, was isolated from the head of an invertebrate, the honeybee, Apis mellifera, and purified 220-fold in 1% overall yield. The bee PHM has a molecular weight of 71,000, is membrane associated but can be solubilized with a detergent (n-octyl-beta-D-glucopyranoside), and cross-reacts with rabbit antibodies generated toward bacterially expressed rat PHM. In the presence of copper, oxygen, and ascorbic acid, the enzyme hydroxylates model tripeptides such as dansyl-L-Phe-L-Phe-Gly on the methylene carbon of the glycine residue with retention of configuration. Using this tripeptide as substrate, the Km is 1.7 microM and the Vmax is 2.3 nmol.micrograms-1.h-1. Treatment of the insect PHM with D-Phe-L-Phe-D-vinylglycine, a substrate analogue and mechanism-based inactivator of PHM from pig pituitary, results in irreversible loss of activity. The diastereomeric analogue, D-Phe-L-Phe-L-vinylglycine, is only a competitive inhibitor (IC50 = 320 microM).

Amides

Common projection areas of antennal and visual pathways in the honeybee brain, Apis mellifera.

The convergence of primary sensory neurons of the antennae, higher order visual interneurons, and antennal motoneurons was analysed with neuroanatomical techniques in the honeybee, Apis mellifera. The different modalities evoke specific antennal responses in this insect. Three different fluorescent dyes were applied successively in the same preparation in order to visualise the various fiber projections from the antennae and the lobula in the brain of the honeybee. Three neuropile areas where sensory fibers of the antennae overlap with visual projection neurons from the lobula were found. Within the posterior-median protocerebrum the antennal tract T6-1 comes in close vicinity to the lobula tract LoT-9 and to some other lobula fibers that cannot be assigned to a special tract. Antennal T6-3 fibers overlap with lobula LoT-7 neurons within the posterior protocerebrum more laterally. Antennal T5 fibers arborise in the dorsal lobe and show common projection sites with lobula LoT-3 neurons. The multimodal convergence in the three common neuropiles demonstrates that these areas are important centers for multimodal information processing between sensory, motor, and descending neurons in insects.

Animals

Fine structural localisation of acetylcholinesterase activity in the compound eye of the honeybee (Apis mellifica L.).

Acetylcholinesterase (AChE) activity was demonstrated histochemically at the electron microscopic level in the compound eye of the worker bee (Apis mellifica L.) by use of the method of Lewis and Shute (1969). All photoreceptor axons (short and long visual fibres) display AChE activity. The reaction product is located in the axoplasm and at the plasma membrane. Substantial amounts of the reaction product can be detected in the intercellular spaces between the visual fibres. Along the visual fibres, the enzyme activity is unevenly distributed. High AChE activity is present in the distal parts of te axons, in contrast to lower enzyme levels in the lamina. However, AChE is also present in the proximal terminals of the visual fibres as well as in the intercellular spaces between visual fibre terminals and the postsynaptic neurones (monopolar cells). Intracellular enzyme activity is almost absent in the monopolars. The authors assume the high AChE activity in the visual fibres to be indicative of acetylcholine as the transmitter at the first synapse of the compound eye. This hypothesis is discussed in view of the results of autoradiographic, electrophysiological and pharmacological investigations of the compound eye and of hte ocellus. Our data are a variance with results of studies on the eyes of Diptera.

Acetylcholinesterase

Antennal hygroreceptors of the honey bee, Apis mellifera L.

Antennal hygroreceptors of the honey bee, Apis mellifera L., have been investigated electrophysiologically and the sensillum containing these receptors with SEM. Moist and dry hygroreceptors have been identified along with a thermal receptor in a specialized coeloconic sensillum. This sensillum comprises a cuticular, shallow depression (diameter; 4 micrometer) having a central opening (1.4-1.5 micrometer) and a mushroom-shaped protrusion (1.4-1.5 micrometer) from the opening. The head of the protrusion is irregular in shape and is not perforated. This sensillum has been thus far referred to as a "sensillum campaniformium" (Dietz and Humphreys 1971), henceforth, it is referred to as a coelocapitular sensillum. The responses of both moist and dry hygroreceptors are of a phasic-tonic manner. Both receptors are antagonistic with respect to their responses to humidity; one responds with an increase in impulse frequency to rising humidity, the other to falling humidity. The humidity-response relationship is independent of stimulus flux.

Animals