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PMID: 2138934 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Biolistic nuclear transformation of Saccharomyces cerevisiae and other fungi.

Current genetics ·Vol. 17 ·No. 2 ·1990-02-00 ·Pages 97-103

Armaleo D, Ye GN, Klein TM, Shark KB, Sanford JC, Johnston SA

Abstract

Tungsten microprojectiles coated with nucleic acid and accelerated to velocities of approximately 500 m/s, can penetrate living cells and tissues with consequent expression of the introduced genes (Klein et al. 1987). Saccharomyces cerevisiae is used here as a model system to define the basic parameters governing the biolistic (biological-ballistic) delivery of DNA into cells. Among the physical factors affecting the efficiency of the process in yeast are the microprojectile's constitution, size, concentration and amount, and the procedure used for binding DNA to it. The biological parameters that affect the process include the cell's genotype, growth phase, plating density, and the osmotic composition of the medium during bombardment. By optimizing these physical and biological parameters, rates of transformation between 10(-5) and 10(-4) were achieved. Stable nuclear transformants result primarily from penetration of single particles of 0.5-0.65 micron in diameter, delivering on average 10-30 biologically active plasmids into the cell. The tungsten particles detectably increase the buoyant density of the transformants' progenitors.

MeSH Terms
Cell Nucleus/metabolism Culture Media DNA, Fungal/genetics Neurospora/genetics Neurospora crassa/genetics,growth & development Saccharomyces/genetics,growth & development Saccharomyces cerevisiae/genetics,growth & development Transformation, Genetic
Chemicals
Culture Media DNA, Fungal
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Armaleo D
Department of Botany, Duke University, Durham, NC 27706.
Ye G N
Klein T M
Shark K B
Sanford J C
Johnston S A
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Article Info
Journal
Current genetics
Abbr.
Curr Genet
ISSN
0172-8083
Published
1990-02-00
Pages
97-103
Language
English
Region
United States
NLM ID
8004904
Subset
IM
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