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A BioBrick compatible strategy for genetic modification of plants
by
Winn, Julia C
, Brenner, Tamara J
, DeWerd, Jonathan G
, Deardon, Aaron
, Quinn, Jacqueline Y
, Boyle, Patrick M
, Theilmann, Mark R
, Haynes, Karmella A
, Viel, Alain
, Schellenberg, Kurt
, Raman, Anugraha M
, Agapakis, Christina M
, Paull, Morgan L
, Burrill, Devin R
, Inniss, Mara C
, Gedeon, Michael A
, Shah, Jagesh V
, Wang, Lu
, Silver, Pamela A
, Medvedik, Oliver
, Church, George M
in
Analysis
/ Applied Microbiology
/ Arabidopsis
/ Arabidopsis thaliana
/ Biological Techniques
/ Biology
/ Biomedical Engineering and Bioengineering
/ Biotechnology
/ Cloning
/ Competition
/ E coli
/ Engineering
/ Environmental Engineering/Biotechnology
/ Genes
/ Genetic engineering
/ Genetically modified organisms
/ iGEM
/ Methodology
/ Microbiology
/ Nucleic Acid Chemistry
/ Plant biotechnology
/ Plant engineering
/ Plant genetics
/ Proteins
/ Scholarships & fellowships
/ Synthetic biology
/ Yeast
2012
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A BioBrick compatible strategy for genetic modification of plants
by
Winn, Julia C
, Brenner, Tamara J
, DeWerd, Jonathan G
, Deardon, Aaron
, Quinn, Jacqueline Y
, Boyle, Patrick M
, Theilmann, Mark R
, Haynes, Karmella A
, Viel, Alain
, Schellenberg, Kurt
, Raman, Anugraha M
, Agapakis, Christina M
, Paull, Morgan L
, Burrill, Devin R
, Inniss, Mara C
, Gedeon, Michael A
, Shah, Jagesh V
, Wang, Lu
, Silver, Pamela A
, Medvedik, Oliver
, Church, George M
in
Analysis
/ Applied Microbiology
/ Arabidopsis
/ Arabidopsis thaliana
/ Biological Techniques
/ Biology
/ Biomedical Engineering and Bioengineering
/ Biotechnology
/ Cloning
/ Competition
/ E coli
/ Engineering
/ Environmental Engineering/Biotechnology
/ Genes
/ Genetic engineering
/ Genetically modified organisms
/ iGEM
/ Methodology
/ Microbiology
/ Nucleic Acid Chemistry
/ Plant biotechnology
/ Plant engineering
/ Plant genetics
/ Proteins
/ Scholarships & fellowships
/ Synthetic biology
/ Yeast
2012
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Do you wish to request the book?
A BioBrick compatible strategy for genetic modification of plants
by
Winn, Julia C
, Brenner, Tamara J
, DeWerd, Jonathan G
, Deardon, Aaron
, Quinn, Jacqueline Y
, Boyle, Patrick M
, Theilmann, Mark R
, Haynes, Karmella A
, Viel, Alain
, Schellenberg, Kurt
, Raman, Anugraha M
, Agapakis, Christina M
, Paull, Morgan L
, Burrill, Devin R
, Inniss, Mara C
, Gedeon, Michael A
, Shah, Jagesh V
, Wang, Lu
, Silver, Pamela A
, Medvedik, Oliver
, Church, George M
in
Analysis
/ Applied Microbiology
/ Arabidopsis
/ Arabidopsis thaliana
/ Biological Techniques
/ Biology
/ Biomedical Engineering and Bioengineering
/ Biotechnology
/ Cloning
/ Competition
/ E coli
/ Engineering
/ Environmental Engineering/Biotechnology
/ Genes
/ Genetic engineering
/ Genetically modified organisms
/ iGEM
/ Methodology
/ Microbiology
/ Nucleic Acid Chemistry
/ Plant biotechnology
/ Plant engineering
/ Plant genetics
/ Proteins
/ Scholarships & fellowships
/ Synthetic biology
/ Yeast
2012
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A BioBrick compatible strategy for genetic modification of plants
Journal Article
A BioBrick compatible strategy for genetic modification of plants
2012
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Overview
Background
Plant biotechnology can be leveraged to produce food, fuel, medicine, and materials. Standardized methods advocated by the synthetic biology community can accelerate the plant design cycle, ultimately making plant engineering more widely accessible to bioengineers who can contribute diverse creative input to the design process.
Results
This paper presents work done largely by undergraduate students participating in the 2010 International Genetically Engineered Machines (iGEM) competition. Described here is a framework for engineering the model plant
Arabidopsis thaliana
with standardized, BioBrick compatible vectors and parts available through the Registry of Standard Biological Parts (
http://www.partsregistry.org
). This system was used to engineer a proof-of-concept plant that exogenously expresses the taste-inverting protein miraculin.
Conclusions
Our work is intended to encourage future iGEM teams and other synthetic biologists to use plants as a genetic chassis. Our workflow simplifies the use of standardized parts in plant systems, allowing the construction and expression of heterologous genes in plants within the timeframe allotted for typical iGEM projects.
Publisher
BioMed Central,BioMed Central Ltd,Springer Nature B.V,BMC
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