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Unraveling the Molecular Basis of Mycosporine Biosynthesis in Fungi

Sepúlveda, Dionisia et al · Molecular Diversity Preservation International · 2023

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The Phaffia rhodozyma UCD 67-385 genome harbors a 7873 bp cluster containing DDGS, OMT, and ATPG, encoding 2-desmethy-4-deoxygadusol synthase, O-methyl transferase, and ATPgrasp ligase, respectively, of the mycosporine glutaminol (MG) biosynthesis pathway. Homozygous deletion mutants of the entire cluster, single-gene mutants, and the ∆ddgs−/−;∆omt−/− and ∆omt−/−;∆atpg−/− double-gene mutants did not produce mycosporines. However, ∆atpg−/− accumulated the intermediate 4-deoxygadusol. Heterologous expression of the DDGS and OMT or DDGS, OMT, and ATPG cDNAs in Saccharomyces cerevisiae led to 4-deoxygadusol or MG production, respectively. Genetic integration of the complete cluster into the genome of the non-mycosporine-producing CBS 6938 wild-type strain resulted in a transgenic strain (CBS 6938_MYC) that produced MG and mycosporine glutaminol glucoside. These results indicate the function of DDGS, OMT, and ATPG in the mycosporine biosynthesis pathway. The transcription factor gene mutants ∆mig1−/−, ∆cyc8−/−, and ∆opi1−/− showed upregulation, ∆rox1−/− and ∆skn7−/− showed downregulation, and ∆tup6−/− and ∆yap6−/− showed no effect on mycosporinogenesis in glucose-containing medium. Finally, comparative analysis of the cluster sequences in several P. rhodozyma strains and the four newly described species of the genus showed the phylogenetic relationship of the P. rhodozyma strains and their differentiation from the other species of the genus Phaffia. Fil: Sepúlveda, Dionisia. Universidad de Chile; Chile Fil: Campusano, Sebastián. Universidad de Chile; Chile

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APA 7

Sepúlveda, D. E. A. (2023). Unraveling the Molecular Basis of Mycosporine Biosynthesis in Fungi. http://hdl.handle.net/11336/235559

MLA

Sepúlveda, Dionisia et al. "Unraveling the Molecular Basis of Mycosporine Biosynthesis in Fungi." 2023. http://hdl.handle.net/11336/235559.

Chicago

Sepúlveda, Dionisia et al. 2023. "Unraveling the Molecular Basis of Mycosporine Biosynthesis in Fungi.". http://hdl.handle.net/11336/235559.

Harvard

Sepúlveda, D. E. A. 2023, Unraveling the Molecular Basis of Mycosporine Biosynthesis in Fungi, Molecular Diversity Preservation International, available at: http://hdl.handle.net/11336/235559 [Accessed 8 Aug. 2026].

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Title
Unraveling the Molecular Basis of Mycosporine Biosynthesis in Fungi
Author / contributors
Sepúlveda, Dionisia et al
Publisher
Molecular Diversity Preservation International
Publication year
2023
ISSN
1422-0067
ISSN
1422-0067
Language
English

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