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Inhibition of the growth of Ascosphaera apis by Bacillus and Paenibacillus strains isolated from honey.

The fungus Ascosphaera apis, the causative agent of chalkbrood disease in honeybee larvae, occurs throughout the world and is found in many beekeeping areas of Argentina. The potential as biocontrol agents of 249 aerobic spore-forming bacterial antagonists isolated from honey samples was evaluated. Each isolate was screened against A. apis by a central disk test assay. Ten bacterial strains that showed the best antagonistic effect to A. apis were selected for further study and identified as Bacillus cereus (m363, mv86, mv81, mv75), Bacillus circulans (Fr231, m448b), Bacillus megaterium (m435), Bacillus pumilus (m354), Bacillus subtilis (m329), and Paenibacillus alvei (m321). For testing the efficiency of the selected strains, a paired culture test was used with 5 replicates of each combination bacterial antagonist/A. apis strain, and 5 replications for each control on 4 different culture media. The analysis of variance and posterior comparison of means according to LSD method showed that the best antagonists when using YGPSA medium were B. subtilis (m329) and B. megaterium (m435), and in the case of MYPGP medium the most efficient were B. circulans strains Fr 231 and m448b.

Animals↗

[Sensitivity of fungi in the genus Candida to antimicrobial preparations].

Sensitivity of 50 Candida fungus strains isolated from patients with chronic intestine diseases was studied with respect to amphotericin B, levorin, enteroseptol, intestopan and decamethoxin. The rate of forming resistant variants of the strains with respect to decamethoxin and development of their cross resistance to levorin was estimated. It was shown that decamethoxin was the most active antifungal drug among the drugs tested. Estimation of sensitivity of the Candida strains to enteroseptol and intestopan revealed that the fungicidal concentration of enteroseptol for 78 per cent of the strains ranged within 3.9-7.8 micrograms/ml. It was demonstrated that development of resistance to decamethoxin in the strains of Candida albicans was slow and did not reach high levels. No cross resistance between decamethoxin and levorin was detected.

Amphotericin B↗

Coccidioidomycosis of the knee with a 26-year follow-up evaluation. A case report.

A case of coccidioidomycosis of the knee caused by the fungus Coccidioides immitis demonstrates the chronicity of this disease as well as the disability incurred. The patient was completely asymptomatic for 11 years after initial treatment but developed progressive joint destruction, disabling pain, and loss of function. The nature of fungal infections in bone and joint necessitates long-term follow-up evaluation, even with adequate surgical debridement and medical therapy.

Arthritis, Infectious↗

[Mucormycosis of the maxillary sinus and the ethmoid labyrinth].

An observation of mucoromycotic sinusitis in a patient with diabetes mellitus is described. The disease was in the form of acute progressive suppurative-necrotic maxillary sinusitis-ethmoiditis complicating an abscess of the nasal septum. Mucoromycosis was diagnosed by histological examinations of tissues removed from the affected sinuses. Pathomorphology of this disease was characterized by deep invasion of the fungus into the tissues including blood vessels, the development of vascular disorders, extensive necroses, formation of nonspecific granulomas.

Adult↗

[Aspergillus fumigatus: from saprophytism to virulence. Phenotypic and genotypic biodiversity].

During the last two decades, deep changes have arised in aspergillosis. Thus, this fungal infection mainly due Aspergillus fumigatus is becoming a serious public health-hazard in the growing population of immunocompromised patients. From literature and their own experience, the authors present a synthesis of phenomenons promoting this evolution: the host predisposing factors, environment and potential contamination sources, then the fungus itself. Genetic research developed into the disease-causing organism could be of major interest in epidemiology of aspergillosis and to identify new targets of prophylaxis.

Aspergillosis↗

Principles in the management of oculomycosis. XXXI Edward Jackson memorial lecture.

Effective antifungal therapy must be long-term, nondamaging, penetrating to the eye, and highly active against each patient's fungus. Results of antifungal sensitivity testing of 61 collected ocular fungal pathogens and observations in 25 cases treated with one of the nonpolyene antifungal drugs indicated that infection was rapidly controlled and eradicated with restoration of visual acuity, determined by the degree of disorganization present at the time of commencement of rational specific antifungal therapy. Pimaricin has the widest spectrum, a medium level of activity, and rather poor penetration but is recommended as an antifungal prophylactic and as first-line-therapy for ocular fungal disease while awaiting identification and sensitivity testing of the fungus. Flucytosine combined with amphotericin B, or possibly with clotrimazole or miconazole, is recommended for Candida infections. Clotrimazole is the drug of choice for Aspergillus species although miconazole and econazole are more effective with some isolates. Miconazole and econazole are recommended for miscellaneous filamentous fungi although clotrimazole or thiabendazole are superior in some cases. Each of these drugs may be useful in patients infected with Fusarium who do not respond to primaricin. In these cases, drug use should be guided by the results of antifungal sensitivity testing. In addition to medical antifungal therapy some eyes may require excisional keratoplasty with the lens removal and evacuation of the posterior chamber and anterior vitreous cavity.

Adrenal Cortex Hormones↗

Host-parasite relation in invasive aspergillosis.

Invasive aspergillosis has become one of the most important infectious complications of intensive modern medicine often limiting the success of oncological treatments and transplantation. The rationale for this is found in the effects of immunosuppressive therapies and to a lesser degree underlying disease processes as well as in properties of the fungus. The double pronged nature of host defenses directed against spores and hyphae of Aspergilli is affected by glucocorticoids and myeloablative therapy. Resident alveolar macrophages are the major players eliminating inhaled conidia. Neutrophils, efficiently killing hyphae. These defense mechanisms are so solid that even after the inhalation of billions of spores infection is reliably prevented in man. Mechanisms by which glucocorticoids prevent macrophages from first inhibiting germination of ingested conidia and then killing them have not been elucidated. Mobilization of neutrophils is also hampered by glucocorticoids that have the potential to suppress the expression of an array of neutrophil chemokines by macrophages. Glucocorticoids are thus able to abrogate defenses against Aspergilli on their own, affecting both lines of defense. In neutrophil granulocytes oxidative killing systems directed against hyphae are of major importance as pointed out by infections in children with chronic granulomatous disease, but other killing systems such as defensins and possibly thrombocidins are also of importance. To date it remains speculative that platelet derived thrombocidins play an important role, but such speculations are tempting in view of the angio-invasive nature of the fungus and the coexisting thrombocytopenia in many patients with aspergillosis.

Aspergillosis↗

Chemical induction of disease resistance in rice is correlated with the expression of a gene encoding a nucleotide binding site and leucine-rich repeats.

Probenazole (3-allyloxy-1,2-benzisothiazole-1,1-dioxide) is an agricultural chemical primarily used to prevent rice blast disease. Probenazole-treated rice acquires resistance to blast fungus irrespective of the rice variety. The chemical is applied prophylactically, and is thought to induce or bolster endogenous plant defenses. However, the mechanisms underlying this effect have not been established. To understand the mode of the chemical's action, we screened for novel probenazole-responsive genes in rice by means of differential display and identified a candidate gene, RPR1. RPR1 contains a nucleotide binding site and leucine-rich repeats, thus sharing structural similarity with known disease resistance genes. The expression of RPR1 in rice can be up-regulated by treatment with chemical inducers of systemic acquired resistance (SAR) and by inoculation with pathogens. RPR1-related sequences in rice varieties seem to be varied in sequence and/or expression, indicating that RPR1 itself is not a crucial factor for induced resistance in rice. However, Southern blot analysis revealed the existence of homologous sequences in all varieties examined. While the role of RPR1 has yet to be clarified, this is the first report of the identification of a member of this gene class and its induction during the systemic expression of induced disease resistance.

Amino Acid Sequence↗

Visualization of interactions between a pathogenic and a beneficial Fusarium strain during biocontrol of tomato foot and root rot.

The soilborne fungus Fusarium oxysporum f. sp. radicis-lycopersici causes tomato foot and root rot (TFRR), which can be controlled by the addition of the nonpathogenic fungus F. oxysporum Fo47 to the soil. To improve our understanding of the interactions between the two Fusarium strains on tomato roots during biocontrol, the fungi were labeled using different autofluorescent proteins as markers and subsequently visualized using confocal laser scanning microscopy. The results were as follows. i) An at least 50-fold excess of Fo47over F. oxysporum f. sp. radicis-lycopersici was required to obtain control of TFRR. ii) When seedlings were planted in sand infested with spores of a single fungus, Fo47 hyphae attached to the root earlier than those of F. oxysporum f. sp. radicis-lycopersici. iii) Subsequent root colonization by F. oxysporum f. sp. radicis-lycopersici was faster and to a larger extent than that by Fo47. iv) Under disease-controlling conditions, colonization of tomato roots by the pathogenic fungus was significantly reduced. v) When the inoculum concentration of Fo47 was increased, root colonization by the pathogen was arrested at the stage of initial attachment to the root. vi) The percentage of spores of Fo47 that germinates in tomato root exudate in vitro is higher than that of the pathogen F. oxysporum f. sp. radicis-lycopersici. Based on these results, the mechanisms by which Fo47 controls TFRR are discussed in terms of i) rate of spore germination and competition for nutrients before the two fungi reach the rhizoplane; ii) competition for initial sites of attachment, intercellular junctions, and nutrients on the tomato root surface; and iii) inducing systemic resistance.

Bacterial Proteins↗

Fatal mycotic pulmonary disease of captive American alligators.

Fatal pulmonary disease occurred in two captive American alligators. The entomopathogenic fungus, Beauveria bassiana, was isolated from pulmonary lesions in both alligators. An extended hibernation period because of a severe winter and a failure of the zoo heating system may have predisposed the alligators to infection.

Alligators and Crocodiles↗

Infections due to Wangiella dermatitidis in humans: report of the first documented case from the United States and a review of the literature.

Wangiella dermatitidis, a normally saprophytic dematiaceous fungus, has rarely been reported as a cause of disease in humans. A review of the worldwide literature yielded eight validly documented cases of W. dermatitidis infections. Reported herein is a subcutaneous knee infection due to W. dermatitidis in a diabetic man with impaired T-cell function and cutaneous anergy. Repeated cultures of the lesion were positive for W. dermatitidis despite therapy with amphotericin B. It is believed that this represents the first well-documented case of infection due to W. dermatitidis in North America, although the fungus has previously been isolated from nature in several states. The current state of knowledge of this organism, based on previously reported cases and isolations from nature, are discussed. No curative medical therapy is known for this infection, but surgical excision seems to be the treatment of choice for circumscribed W. dermatitidis infections.

Adolescent↗

Local modulation of host pH by Colletotrichum species as a mechanism to increase virulence.

The phytopathogenic fungus Colletotrichum gloeosporioides produces one pectate lyase (PL) that is a key virulence factor in disease development. During growth of C. gloeosporioides, Colletotrichum acutatum, and Colletotrichum coccodes in acidified yeast extract medium, the fungus secreted ammonia and increased the medium pH. Ammonia accumulation and the consequent pH change increased as a function of initial pH and buffer capacity of the medium. PL secretion by C. gloeosporioides correspondingly increased as the pH of the medium increased. The C. gloeosporioides pelB gene-disrupted mutant was able to increase ammonia accumulation and pH of the media similarly to the wild-type isolate. C. gloeosporioides in avocado, C. coccodes in tomato, and C. acutatum in apple showed ammonia accumulation in the infected area where pH increased to 7.5 to 8 and PL activity is optima. In nonhost interactions where C. gloeosporioides was inoculated in apples, the addition of ammonia-releasing compounds significantly enhanced pathogenicity to levels similar to those caused by the compatible C. acutatum-apple interaction. The results therefore suggest the importance of ammonia secretion as a virulence factor, enhancing environmental pH and pathogenicity of the Colletotrichum species.

Ammonia↗

Experimental phaeohyphomycosis.

The authors performed an experimental infection of the rabbit eye with Wangiella dermatitidis which had been isolated from the corneal ulcer of a patient. The fungus was inoculated into the front chamber and the vitreous body. The disease showed a trend to spontaneous recovery. The individual phases of the experimental infection were followed by histology and electronmicroscopy, both TEM and SEM. Different stages of development of the polymorphous fungus, as sclerotic bodies, mycelial filaments and yeast-like cells, could be demonstrated.

Animals↗