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Full-Text Articles in Biotechnology

Optimization Of A Genomic Editing System Using Crispr/Cas9-Induced Site-Specific Gene Integration, Jillian L. Mccool Ms., Nick Hum, Gabriela G. Loots Aug 2016

Optimization Of A Genomic Editing System Using Crispr/Cas9-Induced Site-Specific Gene Integration, Jillian L. Mccool Ms., Nick Hum, Gabriela G. Loots

STAR Program Research Presentations

The CRISPR-Cas system is an adaptive immune system found in bacteria which helps protect against the invasion of other microorganisms. This system induces double stranded breaks at precise genomic loci (1) in which repairs are initiated and insertions of a target are completed in the process. This mechanism can be used in eukaryotic cells in combination with sgRNAs (1) as a tool for genome editing. By using this CRISPR-Cas system, in addition to the “safe harbor locus,” ROSAβ26, the incorporation of a target gene into a site that is not susceptible to gene silencing effects can be achieved through few …


A Tale Of Two Investigations In Molecular Biology: The Use Of Pcr Technology To Identify Bacteria Containing Genes For Pha Synthesis And The Antibiotic Sensitivity Profile Of Vibrio Species B-18, Diana B. Lizarazo Jan 2008

A Tale Of Two Investigations In Molecular Biology: The Use Of Pcr Technology To Identify Bacteria Containing Genes For Pha Synthesis And The Antibiotic Sensitivity Profile Of Vibrio Species B-18, Diana B. Lizarazo

Honors Projects

The Vibrio species, B-18, produces PHA, a bacterial storage material with application as a biodegradable plastic. Phase one of this project aimed at determining if PCR technology could be used to find other bacteria that produce a similar type of PHA. Results showed that the primer sets utilized were not able to identify bacteria with PHA genes. Phase two hoped to discover if it would be possible to introduce Escherichia coli plasmids into B-18 using electroporation. Results demonstrated that electroporation was not useful for introducing plasmids into B-18.