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Correlation among phenotypical and molecular techniques in comparing ascomycetous yeast type strains.

Different phenotypical or molecular techniques can be used to describe and classify microorganisms for taxonomic, phylogenetic or genetic purposes. In yeast taxonomy the official hierarchic classification, based on morphological and physiological characters, is used together with more convenient molecular techniques such as the DNA sequencing. The question on whether these procedures produce coherent classifications is critical both to interpret taxonomic data consistently and to outline species correctly. In this paper, a set of type strains from the major genera of the budding hemiascomycetes yeast is examined with a series of physiological and molecular techniques, widely employed in taxonomy, in order to compare the among-strains correlations obtained with different methods. Results showed that the level of correlation among different techniques is relatively low, showing that different classifications and species organization could be obtained with diverse approaches. This is particularly interesting, considering that the official description of the yeast species is based on characters different from those becoming increasingly popular in the routine identification.

Animals↗

Toxin production in Pyrenophora teres, the ascomycete causing the net-spot blotch disease of barley (Hordeum vulgare L.).

Toxin production in a large number of Pyrenophora teres isolates have been investigated. During fungal growth, the pH of the medium decreases from 6.5 to about 3.0. Aspergillomarasmine A is the major toxin excreted into the culture medium. Nonenzymatic acid-catalyzed conversion of aspergillomarasmine A to anhydroaspergillomarasmine A proceeds at low pH and is prevented by repeated titration of the culture medium to pH 6.5. The four possible stereoisomers of N-(2-amino-2-carboxyethyl)aspartic acid have been chemically synthesized and their absolute configuration determined. From circular dichroism and NMR spectroscopy and by measurements of specific optical rotation, the LL-form is identified as the stereoisomer produced by P. teres. Biosynthetic experiments using radioisotopes demonstrate that the LL-isomer of N-(2-amino-2-carboxyethyl) aspartic acid is a direct precursor of aspergillomarasmine A. Consequently, L-configuration is assigned to the two corresponding asymmetric carbon atoms of aspergillomarasmine A. This is in contrast to earlier reports which had indicated D configuration. The phytotoxicity of anhydroaspergillomarasmine A is comparable with that of L-aspartic acid, whereas LL-N-(2-amino-2-carboxyethyl)aspartic acid exerts strong phytotoxicity in the bioassays as shown previously for aspergillomarasmine A. The amount of LL-N-(2-amino-2-carboxyethyl)aspartic acid which accumulates in the P. teres cultures is low, indicating that aspergillomarasmine A is the toxin which plays the major role in the pathological changes associated with the barley net-spot blotch disease.

Ascomycota↗

Occurrence of Arthroderma gloriae, a geophilic, keratinophilic ascomycete, in Italy.

The first European isolate of Arthroderma gloriae was recovered from one of 81 soil samples taken from a wheat field in the Lombardy region of Italy. A mixture of human and horse hair, as well as chicken feathers, were used as bait. The isolate was identified on the basis of its gross and microscopic features and successful mating with a "-" tester strain of A. gloriae. The geographic distribution of this apparently rare keratinophilic fungus is reviewed.

Ascomycota↗