Literature DB >> 32307750

Development of new dominant selectable markers for the nonconventional yeasts Ogataea polymorpha and Candida famata.

Dmytro Bratiichuk1, Olena Kurylenko1, Roksolana Vasylyshyn1, MingXing Zuo1,2, Yingqian Kang2, Kostyantyn Dmytruk1, Andriy Sibirny1,3.   

Abstract

Nonconventional yeast Candida famata and Ogataea polymorpha are interesting organisms for basic and applied studies. O. polymorpha is methylotrophic thermotolerant yeast capable of xylose alcoholic fermentation whereas C. famata is capable of riboflavin overproduction. Still, the new tools for molecular research of these species are needed. The aim of this study was to develop the new dominant selective markers for C. famata and O. polymorpha usable in metabolic engineering experiments. In this work, the BSD gene from Aspergillus terreus coding for blasticidin S deaminase, O. polymorpha AUR1 gene required for sphingolipid synthesis and IMH3 gene, which encodes IMP dehydrogenase, were tested as the new dominant selective marker genes. Our results showed that AUR1 and IMH3 genes could be used as dominant selective markers for O. polymorpha with frequencies of transformation of 40 and 20 transformants per microgram of DNA, respectively. The IMH3 gene was successfully used as the marker for construction of O. polymorpha strains with increased ethanol production from xylose due to overexpression of TAL1, TKL1 and AOX1 genes. The BSD gene from A. terreus, conferring resistance to blasticidin, was found to be efficient for selection of C. famata transformants.
© 2020 John Wiley & Sons, Ltd.

Entities:  

Keywords:  Candida famata (Candida flareri); Ogataea (Hansenula) polymorpha; aureobasidin; blasticidin; mycophenolic acid; selectable markers

Year:  2020        PMID: 32307750     DOI: 10.1002/yea.3467

Source DB:  PubMed          Journal:  Yeast        ISSN: 0749-503X            Impact factor:   3.239


  1 in total

Review 1.  Expanding the promoter toolbox for metabolic engineering of methylotrophic yeasts.

Authors:  Chunxiao Yan; Wei Yu; Lun Yao; Xiaoyu Guo; Yongjin J Zhou; Jiaoqi Gao
Journal:  Appl Microbiol Biotechnol       Date:  2022-05-11       Impact factor: 4.813

  1 in total

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