Comparative genomics provides new insights into the diversity, physiology, and sexuality of the only industrially exploited tremellomycete: Phaffia rhodozyma.

dc.contributor.author

Bellora, Nicolás

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Moliné, Martín

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David-Palma, Márcia

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Coelho, Marco A

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Hittinger, Chris Todd

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Sampaio, José P

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Gonçalves, Paula

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Libkind, Diego

dc.date.accessioned

2025-07-17T17:41:40Z

dc.date.available

2025-07-17T17:41:40Z

dc.date.issued

2016-11

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Background

The class Tremellomycete (Agaricomycotina) encompasses more than 380 fungi. Although there are a few edible Tremella spp., the only species with current biotechnological use is the astaxanthin-producing yeast Phaffia rhodozyma (Cystofilobasidiales). Besides astaxanthin, a carotenoid pigment with potent antioxidant activity and great value for aquaculture and pharmaceutical industries, P. rhodozyma possesses multiple exceptional traits of fundamental and applied interest. The aim of this study was to obtain, and analyze two new genome sequences of representative strains from the northern (CBS 7918T, the type strain) and southern hemispheres (CRUB 1149) and compre them to a previously published genome sequence (strain CBS 6938). Photoprotection and antioxidant related genes, as well as genes involved in sexual reproduction were analyzed.

Results

Both genomes had ca. 19 Mb and 6000 protein coding genes, similar to CBS 6938. Compared to other fungal genomes P. rhodozyma strains and other Cystofilobasidiales have the highest number of intron-containing genes and highest number of introns per gene. The Patagonian strain showed 4.4 % of nucleotide sequence divergence compared to the European strains which differed from each other by only 0.073 %. All known genes related to the synthesis of astaxanthin were annotated. A hitherto unknown gene cluster potentially responsible for photoprotection (mycosporines) was found in the newly sequenced P. rhodozyma strains but was absent in the non-mycosporinogenic strain CBS 6938. A broad battery of enzymes that act as scavengers of free radical oxygen species were detected, including catalases and superoxide dismutases (SODs). Additionally, genes involved in sexual reproduction were found and annotated.

Conclusions

A draft genome sequence of the type strain of P. rhodozyma is now available, and comparison with that of the Patagonian population suggests the latter deserves to be assigned to a distinct variety. An unexpected genetic trait regarding high occurrence of introns in P. rhodozyma and other Cystofilobasidiales was revealed. New genomic insights into fungal homothallism were also provided. The genetic basis of several additional photoprotective and antioxidant strategies were described, indicating that P. rhodozyma is one of the fungi most well-equipped to cope with environmental oxidative stress, a factor that has probably contributed to shaping its genome.
dc.identifier

10.1186/s12864-016-3244-7

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1471-2164

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1471-2164

dc.identifier.uri

https://hdl.handle.net/10161/33030

dc.language

eng

dc.publisher

Springer Science and Business Media LLC

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BMC genomics

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10.1186/s12864-016-3244-7

dc.rights.uri

https://creativecommons.org/licenses/by-nc/4.0

dc.subject

Basidiomycota

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Catalase

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Antioxidants

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Computational Biology

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Genomics

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Ultraviolet Rays

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Reproduction, Asexual

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Gene Order

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Genome, Fungal

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Genetic Variation

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High-Throughput Nucleotide Sequencing

dc.title

Comparative genomics provides new insights into the diversity, physiology, and sexuality of the only industrially exploited tremellomycete: Phaffia rhodozyma.

dc.type

Journal article

pubs.begin-page

901

pubs.issue

1

pubs.organisational-group

Duke

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School of Medicine

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Staff

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Basic Science Departments

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Molecular Genetics and Microbiology

pubs.publication-status

Published

pubs.volume

17

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