ARO4 gene – a new dominant selective marker for yeasts Candida famata (Candida flareri) and Hansenula polymorpha (Pichia angusta)

ARO4 gene encodes the enzyme 3-deoxy-D-arabinoheptulosonate-7-phosphate (DAHP) synthase catalyses the first step in aromatic amino acid biosynthesis in prokaryotes, plants and fungi. Successful application of modified ARO4m gene encoding DAHP synthase insensitive to the feedback inhibition by tyrosi...

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Main Author: K. V. Dmytruk
Format: Article
Language:English
Published: Львівський національний університет імені Івана Франка 2010-09-01
Series:Біологічні студії
Subjects:
Online Access:http://publications.lnu.edu.ua/journals/index.php/biology/article/view/421
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author K. V. Dmytruk
author_facet K. V. Dmytruk
author_sort K. V. Dmytruk
collection DOAJ
description ARO4 gene encodes the enzyme 3-deoxy-D-arabinoheptulosonate-7-phosphate (DAHP) synthase catalyses the first step in aromatic amino acid biosynthesis in prokaryotes, plants and fungi. Successful application of modified ARO4m gene encoding DAHP synthase insensitive to the feedback inhibition by tyrosine for selection of Candida famata and Hansenula polymorpha yeasts transformants resistant to the DL-4-fluoro-phenylalanine is described in this work. Integrative plasmid harboring the marker transformed both yeasts with frequency up to 50 transformants per μg of DNA.
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2311-0783
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last_indexed 2024-12-16T13:03:07Z
publishDate 2010-09-01
publisher Львівський національний університет імені Івана Франка
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series Біологічні студії
spelling doaj.art-dcfe1bf39fcf449da3f197eefc3841d42022-12-21T22:30:47ZengЛьвівський національний університет імені Івана ФранкаБіологічні студії1996-45362311-07832010-09-014251210.30970/sbi.0402.090ARO4 gene – a new dominant selective marker for yeasts Candida famata (Candida flareri) and Hansenula polymorpha (Pichia angusta)K. V. Dmytruk0https://orcid.org/0000-0003-3661-8913Institute of Cell Biology NAS of UkraineARO4 gene encodes the enzyme 3-deoxy-D-arabinoheptulosonate-7-phosphate (DAHP) synthase catalyses the first step in aromatic amino acid biosynthesis in prokaryotes, plants and fungi. Successful application of modified ARO4m gene encoding DAHP synthase insensitive to the feedback inhibition by tyrosine for selection of Candida famata and Hansenula polymorpha yeasts transformants resistant to the DL-4-fluoro-phenylalanine is described in this work. Integrative plasmid harboring the marker transformed both yeasts with frequency up to 50 transformants per μg of DNA.http://publications.lnu.edu.ua/journals/index.php/biology/article/view/421dominant selective markeryeastcandida famatahansenula polymorpha
spellingShingle K. V. Dmytruk
ARO4 gene – a new dominant selective marker for yeasts Candida famata (Candida flareri) and Hansenula polymorpha (Pichia angusta)
Біологічні студії
dominant selective marker
yeast
candida famata
hansenula polymorpha
title ARO4 gene – a new dominant selective marker for yeasts Candida famata (Candida flareri) and Hansenula polymorpha (Pichia angusta)
title_full ARO4 gene – a new dominant selective marker for yeasts Candida famata (Candida flareri) and Hansenula polymorpha (Pichia angusta)
title_fullStr ARO4 gene – a new dominant selective marker for yeasts Candida famata (Candida flareri) and Hansenula polymorpha (Pichia angusta)
title_full_unstemmed ARO4 gene – a new dominant selective marker for yeasts Candida famata (Candida flareri) and Hansenula polymorpha (Pichia angusta)
title_short ARO4 gene – a new dominant selective marker for yeasts Candida famata (Candida flareri) and Hansenula polymorpha (Pichia angusta)
title_sort aro4 gene a new dominant selective marker for yeasts candida famata candida flareri and hansenula polymorpha pichia angusta
topic dominant selective marker
yeast
candida famata
hansenula polymorpha
url http://publications.lnu.edu.ua/journals/index.php/biology/article/view/421
work_keys_str_mv AT kvdmytruk aro4geneanewdominantselectivemarkerforyeastscandidafamatacandidaflareriandhansenulapolymorphapichiaangusta