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Overcoming recalcitrant transformation and gene manipulation in Pucciniomycotina yeasts
by
Idnurm, Alexander
, Castoria, Raffaello
, Ianiri, Giuseppe
, Abbott, Erika P.
in
Agrobacterium
/ Antifungal Agents
/ Antifungal Agents - toxicity
/ Applied Genetics and Molecular Biotechnology
/ Auxotrophs
/ Basidiomycota
/ Basidiomycota - genetics
/ Biodiesel fuels
/ biolistics
/ Biomedical and Life Sciences
/ Biosynthesis
/ Biosynthetic Pathways
/ Biosynthetic Pathways - genetics
/ Biotechnology
/ Deoxyribonucleic acid
/ DNA
/ Drug Resistance, Fungal
/ Gene disruption
/ Gene manipulation
/ gene targeting
/ Gene Transfer Techniques
/ Genes
/ Genetic aspects
/ Genetic engineering
/ Genetic transformation
/ Genetic Vectors
/ genetics
/ Genetics, Microbial
/ Genetics, Microbial - methods
/ Genomes
/ Homologous Recombination
/ Homology
/ Life Sciences
/ methods
/ Microbial Genetics and Genomics
/ Microbiological research
/ Microbiology
/ Molecular biology
/ molecular cloning
/ Mutagenesis, Insertional
/ Physiological aspects
/ pigments
/ Plasmids
/ Pucciniomycotina
/ Rhodotorula
/ Selection, Genetic
/ Species
/ Sporobolomyces
/ Streptothricins
/ Streptothricins - toxicity
/ toxicity
/ Transformation, Genetic
/ Transformations
/ transgenes
/ Uracil
/ Uracil - biosynthesis
/ Yeast
/ Yeast fungi
/ yeasts
2013
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Overcoming recalcitrant transformation and gene manipulation in Pucciniomycotina yeasts
by
Idnurm, Alexander
, Castoria, Raffaello
, Ianiri, Giuseppe
, Abbott, Erika P.
in
Agrobacterium
/ Antifungal Agents
/ Antifungal Agents - toxicity
/ Applied Genetics and Molecular Biotechnology
/ Auxotrophs
/ Basidiomycota
/ Basidiomycota - genetics
/ Biodiesel fuels
/ biolistics
/ Biomedical and Life Sciences
/ Biosynthesis
/ Biosynthetic Pathways
/ Biosynthetic Pathways - genetics
/ Biotechnology
/ Deoxyribonucleic acid
/ DNA
/ Drug Resistance, Fungal
/ Gene disruption
/ Gene manipulation
/ gene targeting
/ Gene Transfer Techniques
/ Genes
/ Genetic aspects
/ Genetic engineering
/ Genetic transformation
/ Genetic Vectors
/ genetics
/ Genetics, Microbial
/ Genetics, Microbial - methods
/ Genomes
/ Homologous Recombination
/ Homology
/ Life Sciences
/ methods
/ Microbial Genetics and Genomics
/ Microbiological research
/ Microbiology
/ Molecular biology
/ molecular cloning
/ Mutagenesis, Insertional
/ Physiological aspects
/ pigments
/ Plasmids
/ Pucciniomycotina
/ Rhodotorula
/ Selection, Genetic
/ Species
/ Sporobolomyces
/ Streptothricins
/ Streptothricins - toxicity
/ toxicity
/ Transformation, Genetic
/ Transformations
/ transgenes
/ Uracil
/ Uracil - biosynthesis
/ Yeast
/ Yeast fungi
/ yeasts
2013
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Overcoming recalcitrant transformation and gene manipulation in Pucciniomycotina yeasts
by
Idnurm, Alexander
, Castoria, Raffaello
, Ianiri, Giuseppe
, Abbott, Erika P.
in
Agrobacterium
/ Antifungal Agents
/ Antifungal Agents - toxicity
/ Applied Genetics and Molecular Biotechnology
/ Auxotrophs
/ Basidiomycota
/ Basidiomycota - genetics
/ Biodiesel fuels
/ biolistics
/ Biomedical and Life Sciences
/ Biosynthesis
/ Biosynthetic Pathways
/ Biosynthetic Pathways - genetics
/ Biotechnology
/ Deoxyribonucleic acid
/ DNA
/ Drug Resistance, Fungal
/ Gene disruption
/ Gene manipulation
/ gene targeting
/ Gene Transfer Techniques
/ Genes
/ Genetic aspects
/ Genetic engineering
/ Genetic transformation
/ Genetic Vectors
/ genetics
/ Genetics, Microbial
/ Genetics, Microbial - methods
/ Genomes
/ Homologous Recombination
/ Homology
/ Life Sciences
/ methods
/ Microbial Genetics and Genomics
/ Microbiological research
/ Microbiology
/ Molecular biology
/ molecular cloning
/ Mutagenesis, Insertional
/ Physiological aspects
/ pigments
/ Plasmids
/ Pucciniomycotina
/ Rhodotorula
/ Selection, Genetic
/ Species
/ Sporobolomyces
/ Streptothricins
/ Streptothricins - toxicity
/ toxicity
/ Transformation, Genetic
/ Transformations
/ transgenes
/ Uracil
/ Uracil - biosynthesis
/ Yeast
/ Yeast fungi
/ yeasts
2013
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Overcoming recalcitrant transformation and gene manipulation in Pucciniomycotina yeasts
Journal Article
Overcoming recalcitrant transformation and gene manipulation in Pucciniomycotina yeasts
2013
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Overview
The red yeasts of the
Pucciniomycotina
have rarely been transformed with DNA molecules. Transformation methods were recently developed for a species of
Sporobolomyces
, based on selection using uracil auxotrophs and plasmids carrying the wild-type copies of the
URA3
and
URA5
genes. However, these plasmids were ineffective in the transformation of closely related species. Using the genome-sequenced strain of
Rhodotorula graminis
as a starting point, the
URA3
and
URA5
genes were cloned and tested for the transformation ability into different
Pucciniomycotina
species by biolistic and
Agrobacterium
-mediated transformations. Transformation success depended on the red yeast species and the origin of the
URA3
or
URA5
genes, which may be related to the high G + C DNA content found in several species. A new vector was generated to confer resistance to nourseothricin, using a native promoter from
R
.
graminis
and the naturally high G + C nourseothricin acetyltransferease gene. This provides a second selectable marker in these species. Targeted gene disruption was tested in
Sporobolomyces
sp. IAM 13481 using different lengths of homologous DNA with biolistic and
Agrobacterium
transformation methods. Both DNA delivery methods were effective for targeted replacement of a gene required for carotenoid pigment biosynthesis. The constructs also triggered transgene silencing. These developments open the way to identify and manipulate gene functions in a large group of basidiomycete fungi.
Publisher
Springer-Verlag,Springer,Springer Nature B.V
Subject
/ Antifungal Agents - toxicity
/ Applied Genetics and Molecular Biotechnology
/ Biomedical and Life Sciences
/ Biosynthetic Pathways - genetics
/ DNA
/ Genes
/ genetics
/ Genetics, Microbial - methods
/ Genomes
/ Homology
/ methods
/ Microbial Genetics and Genomics
/ pigments
/ Plasmids
/ Species
/ toxicity
/ Uracil
/ Yeast
/ yeasts
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