Enhanced production of taxadiene in Saccharomyces cerevisiae is a research paper published in Microbial Cell Factories (2020). On theSindex it has a DataRank of 0. It has been cited 120 times.
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Royal Society
Grant: RSG\R1\180345
Engineering and Physical Sciences Research Council
Grant: EP/R513209/1
DTP 2018-19 University of Edinburgh
University of Edinburgh Global Challenges Theme Development Fund
Grant: TDF_03
US National Science Foundation
Grant: 1330914
Synthetic Biology of Yeast
Wellcome Trust
Grant: IFFF3_Biomededical automation
NNF Center for Biosustainability
Grant: Synthetic Biology Tools for Yeast
Novo Nordisk Fonden
Grant: NNF10CC1016517
Wellcome Trust
Grant: unidentified
unidentified
National Institutes of Health
Grant: 5R01AT010593-03
Synthetic biology tools for scalable production of medicinal plant terpenes
The University of Edinburghâs Principal Career development Scholarship
YLSY Program of the Ministry of National Education of the Republic of Turkey
Wellcome Trust
Wellcome Trust
FWCI
8.75
Citation Percentile
1.0%
Influential Citations
5
Citation Trend
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 1 of Enhanced production of taxadiene in Saccharomyces cerevisiae
Additional file 1 of Enhanced production of taxadiene in Saccharomyces cerevisiae
Additional file 1 of Plasticity engineering of plant monoterpene synthases and application for microbial production of monoterpenoids
Additional file 1 of Plasticity engineering of plant monoterpene synthases and application for microbial production of monoterpenoids
Additional file 1 of Exploring optimal TaxolÂź CYP725A4 activity in Saccharomyces cerevisiae
Additional file 1 of Exploring optimal TaxolÂź CYP725A4 activity in Saccharomyces cerevisiae
Additional file 1 of Increased paclitaxel recovery from Taxus baccata vascular stem cells using novel in situ product recovery approaches
Additional file 1 of Increased paclitaxel recovery from Taxus baccata vascular stem cells using novel in situ product recovery approaches
Additional file 1 of Improved production of TaxolÂź precursors in S. cerevisiae using combinatorial in silico design and metabolic engineering
Additional file 1 of Improved production of TaxolÂź precursors in S. cerevisiae using combinatorial in silico design and metabolic engineering
Additional file 1 of Enhancing the biosynthesis of taxadien-5α-yl-acetate in Escherichia coli by combinatorial metabolic engineering approaches
Additional file 1 of Enhancing the biosynthesis of taxadien-5α-yl-acetate in Escherichia coli by combinatorial metabolic engineering approaches
Additional file 2 of Enhancing the biosynthesis of taxadien-5α-yl-acetate in Escherichia coli by combinatorial metabolic engineering approaches
Additional file 2 of Enhancing the biosynthesis of taxadien-5α-yl-acetate in Escherichia coli by combinatorial metabolic engineering approaches
Additional file 3 of Enhancing the biosynthesis of taxadien-5α-yl-acetate in Escherichia coli by combinatorial metabolic engineering approaches
Additional file 3 of Enhancing the biosynthesis of taxadien-5α-yl-acetate in Escherichia coli by combinatorial metabolic engineering approaches