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Climate change and outbreaks of amphibian chytridiomycosis in a montane area of Central Spain; is there a link?

Amphibian species are declining at an alarming rate on a global scale in large part owing to an infectious disease caused by the chytridiomycete fungus, Batrachochytrium dendrobatidis. This disease of amphibians has recently emerged within Europe, but knowledge of its effects on amphibian assemblages remains poor. Importantly, little is known about the environmental envelope that is associated with chytridiomycosis in Europe and the potential for climate change to drive future disease dynamics. Here, we use long-term observations on amphibian population dynamics in the Peñalara Natural Park, Spain, to investigate the link between climate change and chytridiomycosis. Our analysis shows a significant association between change in local climatic variables and the occurrence of chytridiomycosis within this region. Specifically, we show that rising temperature is linked to the occurrence of chytrid-related disease, consistent with the chytrid-thermal-optimum hypothesis. We show that these local variables are driven by general circulation patterns, principally the North Atlantic Oscillation. Given that B. dendrobatidis is known to be broadly distributed across Europe, there is now an urgent need to assess the generality of our finding and determine whether climate-driven epidemics may be expected to impact on amphibian species across the wider region.

Amphibians↗

IL-18 modulates chronic fungal asthma in a murine model; putative involvement of Toll-like receptor-2.

UNLABELLED: Fungus-induced asthmatic disease is characterized by persistent airway hyperreactivity and remodeling. OBJECTIVE AND DESIGN: To determine the role of IL-18 in the allergic airway response to Aspergillus fumigatus conidia in a murine model of A. fumigatus-induced asthma. METHODS: A. fumigatus-sensitized mice were depleted of IL-18 using a polyclonal anti-IL-18 antibody for 3 days after a conidia challenge. RESULTS: Airway hyperresponsiveness and eosinophil numbers were significantly elevated 3-30 days after conidia challenge compared to the normal serum-treated group. Histological evidence showed retention of A. fumigatus conidia, airway remodeling, subepithelial fibrosis, and increased collagen deposition in the lungs of IL-18-depleted mice at day 30 after the conidia challenge. Prolonged retention of conidia in IL-18 depleted A. fumigatus-sensitized mice was associated with decreased Toll-like receptor-2 (TLR-2) expression compared with the control group. CONCLUSIONS: IL-18 modulates the innate immune response against A. fumigatus conidia and prevents the development of severe fungus-induced asthmatic disease.

Animals↗

Solution structure of the plant disease resistance-triggering protein NIP1 from the fungus Rhynchosporium secalis shows a novel beta-sheet fold.

Activation of the disease resistance response in a host plant frequently requires the interaction of a plant resistance gene product with a corresponding, pathogenderived signal encoded by an avirulence gene. The products of resistance genes from diverse plant species show remarkable structural similarity. However, due to the general paucity of information on pathogen avirulence genes the recognition process remains in most cases poorly understood. NIP1, a small protein secreted by the fungal barley pathogen Rhynchosporium secalis, is one of only a few fungal avirulence proteins identified and characterized to date. The defense-activating activity of NIP1 is mediated by barley resistance gene Rrs1. In addition, a role of the protein in fungal virulence is suggested by its nonspecific toxicity in leaf tissues of host and non-host cereals as well as its resistance gene-independent stimulatory effect on the plant plasma membrane H+-ATPase. Four naturally occurring NIP1 isoforms are characterized by single amino acid alterations that affect the different activities in a similar way. As a step toward unraveling the signal perception/transduction mechanism, the solution structure of NIP1 was determined. The protein structure is characterized by a novel fold. It consists of two parts containing beta-sheets of two and three anti-parallel strands, respectively. Five intramolecular disulfide bonds, comprising a novel disulfide bond pattern, stabilize these parts and their position with respect to each other. A comparative analysis of the protein structure with the properties of the NIP1 isoforms suggests two loop regions to be crucial for the resistance-triggering activity of NIP1.

Amino Acid Sequence↗

Detection of IgE reactivity to fungus antigens by immunoblotting in allergic diseases in children.

BACKGROUND: Fungi are well-known as sources for allergens that cause allergic rhinitis and allergic asthma. The aim of this study was to evaluate the prevalence of sensitization to airborne fungi in allergic diseases in children. METHODS: The presence of IgE antibodies to common allergens in serum samples from 77 atopic and 5 non-atopic children was determined by multiple allergosorbent (MAST) chemiluminescent assay. The allergic extracts, Penicillium notatum, Penicillium oxalicum, and Aspergillus fumigatus, were prepared. IgE-binding fungal components were identified by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE)-immunoblotting, using sera from the above-mentioned patients. RESULTS: The MAST data demonstrated that 62 (81%) of the 77 sera tested showed IgE antibodies to both Dermatophagoides pteronyssinus and Dermatophagoides farinae. Only 2 and 1 of the 77 atopic sera were positive to Penicillium and Aspergillus, respectively. However, 13 (17%) sera showed positive IgE-immunoblotting. Eight and 6 of them demonstrated IgE antibodies to more than 10 different components of P. notatum and P. oxalicum respectively. Ten of the 13 sera showed IgE-immunoblot reactivity to A. fumigatus, and only 1 of the 10 positive samples showed a positive MAST of class I to Aspergillus. All the other sera showed negative results in the MAST test to Aspergillus. The discrepancy observed between the results of IgE-immunoblotting using self-prepared extracts and the commercial MAST test of the serum samples tested may be due to the variations in the fungal strains and the allergenic extracts used, and the different assay systems employed. CONCLUSIONS: The results confirmed the importance of airborne fungi in association with allergic disorders in children.

Adolescent↗

Investigation of the radiation effects on Brown Rot disease of Golden Delicious apples, inoculated with the fungus Monilinia fructigena.

The effects of 0, 1.5 and 3 KGy gamma-irradiation on Brown Rot disease affecting Golden Delicious apples are investigated. The apples were artificially inoculated with Monilinia fructigena fungus before and after irradiation. Results show clearly that radiation induces a delay in fungus development, even when it is not directly affected. The effect of radiation on the apples' substrate seems to be considerable, being the main factor affecting fungal growth. Radiation doses of 1.5 and 3 KGy do not seem to produce strong differences in the fungal growth. Irradiation, however, is very effective, producing important changes of practical interest for apples infected before or after irradiation.

Journal Article↗

Identification and possible disease mechanisms of an under-recognized fungus, Aureobasidium pullulans.

BACKGROUND: Investigations into the occurrence and health effects of yeast-like fungi in the outdoor air in the US have been limited. We sought to identify a respirable-sized fungus common in the Pasadena air, locate a major source for the emissions and investigate its relevance to allergic disease. METHODS: Yeast-like fungi sampled from the environment were isolated, microscopically examined and sequenced. Pasadena allergy patients were skin tested with commercially available fungal extracts. Patient serum was immunoanalyzed for specific IgE reactivity. Nearby vegetation was analyzed in a controlled emission chamber to find a major source for the aerosols. RESULTS: Hyaline unicellular conidia comprised up to 90% (41,250 m(-3) of air) of total fungal counts and generally peaked at night and during periods of rainfall and ensuing winds throughout the fall and winter. Flowers were determined to be a major source of the emissions. The cellular and colonial morphology of isolates were consistent with Aureobasidium species. The sequence of the D1/D2 region of the 26S ribosomal subunit of isolates from flowers showed identity to two strains of Aureobasidium pullulans (black yeast). Seventeen percent (16/94) of atopic individuals had positive skin testing with A. pullulans extract. Patient sera IgE identified several high molecular weight allergens in Aureobasidium extracts. CONCLUSIONS: Respirable-sized conidia of A. pullulans are emitted from flowers and form high concentrations in the air. They are associated with immediate reactivity on skin tests, bind to patient sera IgE, and might be relevant in allergic upper and lower airway diseases.

Air Microbiology↗

[An unusual form of neurosarcoidosis isolated in association with a tumoral lesion, chronic meningitis, hydrocephalus and hypothalamo-hypophyseal involvement].

A 30-year-old woman developed progressive left sided hemiparesis with intracranial hypertension signs. CT scan and MRI showed a large temporo parietal cystic mass with marked surrounding edema. Surgical excision was performed, and histological analysis revealed an inflammatory granuloma. No disease elsewhere was found and all classical causes of granulomas such as tuberculosis, toxoplasma, fungus infections, inflammatory diseases, lymphomas and cancers were excluded. No treatment was administered and she remained neurologically stable for two years. Afterwards, she developed chronic meningo-encephalitis, hypothalamic-pituitary dysfunction and hydrocephalus requiring decompression. Sarcoidosis was suspected, a steroid therapy was initiated, she gradually improved and a ventricular biopsy confirmed this diagnosis. Nervous system lesions complicate the course of sarcoidosis in 5 to 15% of patients and most commonly involve the cranial and peripheral nerves. CNS involvement is typically meningeal with a predilection for the hypothalamic region. Intracranial mass lesions are rare and their occurrence in the absence of disease elsewhere is still more unusual. Three presentations have been described: an isolated intra parenchymatous mass, multiples nodules, and subdural plaques, that can be mistaken for meningiomas, gliomas or metastases. When systemic manifestations of sarcoidosis are absent, the diagnosis is difficult, and Gd-enhanced MRI is now considered the diagnostic method of choice. However brain biopsy is sometimes necessary. Corticosteroids are the mainstay of therapy. Immunosuppressive agents are also used and brain irradiation has been tried in some refractory cases. Surgical approach may be indicated to establish tissue diagnosis, to perform decompression and to remove brain tumors.

Adult↗

Isocitrate lyase is essential for pathogenicity of the fungus Leptosphaeria maculans to canola (Brassica napus).

A pathogenicity gene has been identified in Leptosphaeria maculans, the ascomycetous fungus that causes blackleg disease of canola (Brassica napus). This gene encodes isocitrate lyase, a component of the glyoxylate cycle, and is essential for the successful colonization of B. napus. It was identified by a reverse genetics approach whereby a plasmid conferring hygromycin resistance was inserted randomly into the L. maculans genome. Twelve of 516 transformants tested had reduced pathogenicity on cotyledons of B. juncea and B. napus, and 1 of these 12 had a deletion of the isocitrate lyase gene, as well as an insertion of the hygromycin resistance gene. This mutant was unable to grow on fatty acids, including monolaurate, and the isocitrate lyase transcript was not detected. When the wild-type gene was reintroduced into the mutant, growth on monolaurate was restored and pathogenicity was partially restored. L. maculans isocitrate lyase is produced during infection of B. napus cotyledons, while the plant homologue is not. When 2.5% glucose was added to the inoculum of the isocitrate lyase mutant, lesions of sizes similar to those caused by wild-type isolate M1 developed on B. napus cotyledons. These findings suggest that the glyoxylate pathway is essential for disease development by this plant-pathogenic fungus, as has been shown recently for a fungal and bacterial pathogen of animals and a bacterial pathogen of plants. Involvement of the glyoxylate pathway in pathogenesis in animals and plants presents potential drug targets for control of diseases.

Amino Acid Sequence↗

Phialophora verrucosa: a new cause of mycetoma.

A 29-year-old Thai woman had draining sinus tracts, tumefaction, and granules on the plantar aspect of the foot. Phialophora verrucosa was isolated from the lesion. P. verrucosa is a major agent of chromoblastomycosis, which is known to rarely cause subcutaneous phaeohyphomycosis. This dematiaceous fungus has not been previously reported to cause mycetoma. This case illustrates the clinical spectrum of disease of this fungus. The salient features of mycetoma and management options are presented.

Adult↗