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Characterization of two beta-tubulin genes from Geotrichum candidum.
Authors:Scott E Gold  William L Casale and Noel T Keen
Institution:(1) Department of Plant Pathology, University of California, 92521 Riverside, CA, USA;(2) Present address: Biotechnology Laboratory, University Boulevard, University of British Columbia, Room 237-Wesbrook Building 6174, V6T 1W5 Vancouver, B.C., Canada
Abstract:Summary The beta-tubulin genes Gbeta1 and Gbeta2 from the phytopathogenic hemiascomycete Geotrichum candidum were found to be highly diverged in amino acid sequence from those of other filamentous fungi. Gbeta1 and Gbeta2 were also divergent from each other, with the coding regions sharing only 66% nucleotide sequence homology and 64% amino acid identity. However, the proteins shared 82% similarity and only 25 of the 161 non-identical amino acid substitutions were non-conservative. The organization of Gbeta1 is similar to other fungal beta-tubulin genes, but Gbeta2 has several unusual features; it has 2 amino acid additions in the N-terminal 40 residues and must employ an uncommon 5prime splice junction sequence in preference to an overlapping perfect consensus. The amino acid change found to confer benomyl resistance in Neurospora crassa was also present in Gbeta2. Gbeta1 has four introns which are located similarly to those of beta-tubulin genes in other fungi. Gbeta2, however, has a single intron in a unique location. Translational fusions employing the 5prime non-coding regions of the two Geotrichum beta-tubulin genes were made with the hygromycin phosphotransferase gene and shown to function in Schizosaccharomyces pombe and Trichoderma hamatum. However, G. candidum could not be transformed with these or other tested plasmids commonly used for fungal transformation.
Keywords:Geotrichum candidum  Galactomyces citriaurantii  beta-tubulin" target="_blank">gif" alt="beta" align="MIDDLE" BORDER="0">-tubulin  Introns  Fungal promoters
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