author_facet Ossanna, Nina
Mischke, Sue
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Mischke, Sue
author Ossanna, Nina
Mischke, Sue
spellingShingle Ossanna, Nina
Mischke, Sue
Applied and Environmental Microbiology
Genetic Transformation of the Biocontrol Fungus Gliocladium virens to Benomyl Resistance
Ecology
Applied Microbiology and Biotechnology
Food Science
Biotechnology
author_sort ossanna, nina
spelling Ossanna, Nina Mischke, Sue 0099-2240 1098-5336 American Society for Microbiology Ecology Applied Microbiology and Biotechnology Food Science Biotechnology http://dx.doi.org/10.1128/aem.56.10.3052-3056.1990 <jats:p> Methodology was developed to isolate and regenerate protoplasts from the biocontrol fungus <jats:italic>Gliocladium virens</jats:italic> and to transform them to benomyl resistance with a <jats:italic>Neurospora crassa</jats:italic> β-tubulin gene. Southern blots demonstrated that multiple copies of the vector integrated into the chromosomal DNA of stable biotypes but not of abortive transformants. Analysis of nuclear condition in vegetative and asexual structures demonstrated that no structure of <jats:italic>G. virens</jats:italic> is dependably uninucleate and thus preferentially suitable for transformation. </jats:p> Genetic Transformation of the Biocontrol Fungus <i>Gliocladium virens</i> to Benomyl Resistance Applied and Environmental Microbiology
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title Genetic Transformation of the Biocontrol Fungus Gliocladium virens to Benomyl Resistance
title_unstemmed Genetic Transformation of the Biocontrol Fungus Gliocladium virens to Benomyl Resistance
title_full Genetic Transformation of the Biocontrol Fungus Gliocladium virens to Benomyl Resistance
title_fullStr Genetic Transformation of the Biocontrol Fungus Gliocladium virens to Benomyl Resistance
title_full_unstemmed Genetic Transformation of the Biocontrol Fungus Gliocladium virens to Benomyl Resistance
title_short Genetic Transformation of the Biocontrol Fungus Gliocladium virens to Benomyl Resistance
title_sort genetic transformation of the biocontrol fungus <i>gliocladium virens</i> to benomyl resistance
topic Ecology
Applied Microbiology and Biotechnology
Food Science
Biotechnology
url http://dx.doi.org/10.1128/aem.56.10.3052-3056.1990
publishDate 1990
physical 3052-3056
description <jats:p> Methodology was developed to isolate and regenerate protoplasts from the biocontrol fungus <jats:italic>Gliocladium virens</jats:italic> and to transform them to benomyl resistance with a <jats:italic>Neurospora crassa</jats:italic> β-tubulin gene. Southern blots demonstrated that multiple copies of the vector integrated into the chromosomal DNA of stable biotypes but not of abortive transformants. Analysis of nuclear condition in vegetative and asexual structures demonstrated that no structure of <jats:italic>G. virens</jats:italic> is dependably uninucleate and thus preferentially suitable for transformation. </jats:p>
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author Ossanna, Nina, Mischke, Sue
author_facet Ossanna, Nina, Mischke, Sue, Ossanna, Nina, Mischke, Sue
author_sort ossanna, nina
container_issue 10
container_start_page 3052
container_title Applied and Environmental Microbiology
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description <jats:p> Methodology was developed to isolate and regenerate protoplasts from the biocontrol fungus <jats:italic>Gliocladium virens</jats:italic> and to transform them to benomyl resistance with a <jats:italic>Neurospora crassa</jats:italic> β-tubulin gene. Southern blots demonstrated that multiple copies of the vector integrated into the chromosomal DNA of stable biotypes but not of abortive transformants. Analysis of nuclear condition in vegetative and asexual structures demonstrated that no structure of <jats:italic>G. virens</jats:italic> is dependably uninucleate and thus preferentially suitable for transformation. </jats:p>
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spelling Ossanna, Nina Mischke, Sue 0099-2240 1098-5336 American Society for Microbiology Ecology Applied Microbiology and Biotechnology Food Science Biotechnology http://dx.doi.org/10.1128/aem.56.10.3052-3056.1990 <jats:p> Methodology was developed to isolate and regenerate protoplasts from the biocontrol fungus <jats:italic>Gliocladium virens</jats:italic> and to transform them to benomyl resistance with a <jats:italic>Neurospora crassa</jats:italic> β-tubulin gene. Southern blots demonstrated that multiple copies of the vector integrated into the chromosomal DNA of stable biotypes but not of abortive transformants. Analysis of nuclear condition in vegetative and asexual structures demonstrated that no structure of <jats:italic>G. virens</jats:italic> is dependably uninucleate and thus preferentially suitable for transformation. </jats:p> Genetic Transformation of the Biocontrol Fungus <i>Gliocladium virens</i> to Benomyl Resistance Applied and Environmental Microbiology
spellingShingle Ossanna, Nina, Mischke, Sue, Applied and Environmental Microbiology, Genetic Transformation of the Biocontrol Fungus Gliocladium virens to Benomyl Resistance, Ecology, Applied Microbiology and Biotechnology, Food Science, Biotechnology
title Genetic Transformation of the Biocontrol Fungus Gliocladium virens to Benomyl Resistance
title_full Genetic Transformation of the Biocontrol Fungus Gliocladium virens to Benomyl Resistance
title_fullStr Genetic Transformation of the Biocontrol Fungus Gliocladium virens to Benomyl Resistance
title_full_unstemmed Genetic Transformation of the Biocontrol Fungus Gliocladium virens to Benomyl Resistance
title_short Genetic Transformation of the Biocontrol Fungus Gliocladium virens to Benomyl Resistance
title_sort genetic transformation of the biocontrol fungus <i>gliocladium virens</i> to benomyl resistance
title_unstemmed Genetic Transformation of the Biocontrol Fungus Gliocladium virens to Benomyl Resistance
topic Ecology, Applied Microbiology and Biotechnology, Food Science, Biotechnology
url http://dx.doi.org/10.1128/aem.56.10.3052-3056.1990