Automated Author Profile

Borodina, Irina

Technical University of Denmark
0000-0002-8452-1393

Current S-Index

3.7

Sum of Dataset Indices for all datasets

Average Dataset Index per Dataset

0.7

Average Dataset Index per dataset

Total Datasets

5

Total datasets for this author

Average FAIR Score

78.8%

Average FAIR Score per dataset

Total Citations

4

Total citations to the author's datasets

Total Mentions

0

Total mentions of the author's datasets

S-Index Interpretation

S-Index Over Time

Cumulative Citations Over Time

Cumulative Mentions Over Time

Datasets

Dataset - Kinetic-model-guided engineering of multiple S. cerevisiae strains improves p-coumaric acid production

Dataset supporting the results presented in the paper entitled "Kinetic-model-guided engineering of multiple S. cerevisiae strains improves p-coumaric acid production" by Narayanan, Jiang & Wang et al (https://doi.org/10.1016/j.ymben.2025.06.008).Dataset contains:steady_states.csv- The set of 5,000 steady state profiles consistent with the strain ST10284 built using pyTFA- The sample closest to the mean of all the profiles (index 3191) was used for kinetic model constructionODE nonlinear runs aimed to verify NOMAD-derived designs.Time-series growth data from Saccharomyces cerevisiae cultures measured using the Growth Profiler 960. The values represent green intensity (G-values) from a 24-well plate, recorded every 30 minutes.The corresponding code can be found at the GitHub repository (https://github.com/EPFL-LCSB/NOMAD/tree/master/ME-p-coumaric-acid)

Authors

  • Narayanan, Bharath ;
  • Jiang, Wei ;
  • Wang, Shengbao ;
  • Saez Saez, Javier ;
  • Weilandt, Danierl Robert ;
  • Masid, Maria ;
  • Hesselberg-Thomsen, Victor ;
  • Borodina, Irina ;
  • Hatzimanikatis, Vassily ;
  • Miskovic, Ljubisa
2 Citations0 Mentions77% FAIR1.1 Dataset Index
10.5281/zenodo.154322602025

Dataset - Kinetic-model-guided engineering of multiple S. cerevisiae strains improves p-coumaric acid production

Dataset supporting the results presented in the paper entitled "Kinetic-model-guided engineering of multiple S. cerevisiae strains improves p-coumaric acid production" by Narayanan, Jiang & Wang et al (https://doi.org/10.1016/j.ymben.2025.06.008).Dataset contains:steady_states.csv- The set of 5,000 steady state profiles consistent with the strain ST10284 built using pyTFA- The sample closest to the mean of all the profiles (index 3191) was used for kinetic model constructionODE nonlinear runs aimed to verify NOMAD-derived designs.Time-series growth data from Saccharomyces cerevisiae cultures measured using the Growth Profiler 960. The values represent green intensity (G-values) from a 24-well plate, recorded every 30 minutes.The corresponding code can be found at the GitHub repository (https://github.com/EPFL-LCSB/NOMAD/tree/master/ME-p-coumaric-acid)

Authors

  • Narayanan, Bharath ;
  • Jiang, Wei ;
  • Wang, Shengbao ;
  • Saez Saez, Javier ;
  • Weilandt, Danierl Robert ;
  • Masid, Maria ;
  • Hesselberg-Thomsen, Victor ;
  • Borodina, Irina ;
  • Hatzimanikatis, Vassily ;
  • Miskovic, Ljubisa
1 Citation0 Mentions79% FAIR0.8 Dataset Index
10.5281/zenodo.157212862025

Dataset - Kinetic-model-guided engineering of multiple S. cerevisiae strains improves p-coumaric acid production

Dataset supporting the results presented in the paper entitled "Kinetic-model-guided engineering of multiple S. cerevisiae strains improves p-coumaric acid production" (https://doi.org/10.1101/2024.12.15.628543).Dataset contains:steady_states.csv- The set of 5,000 steady state profiles consistent with the strain ST10284 built using pyTFA- The sample closest to the mean of all the profiles (index 3191) was used for kinetic model constructionODE nonlinear runs aimed to verify NOMAD derived designsThe corresponding code can be found at the GitHub repository (https://github.com/EPFL-LCSB/NOMAD/tree/master/ME-p-coumaric-acid)

Authors

  • Narayanan, Bharath ;
  • Jiang, Wei ;
  • Wang, Shengbao ;
  • Saez Saez, Javier ;
  • Weilandt, Danierl Robert ;
  • Masid, Maria ;
  • Hesselberg-Thomsen, Victor ;
  • Borodina, Irina ;
  • Hatzimanikatis, Vassily ;
  • Miskovic, Ljubisa
1 Citation0 Mentions69% FAIR0.7 Dataset Index
10.5281/zenodo.154322612025

Additional file 3 of Rational and evolutionary engineering of Saccharomyces cerevisiae for production of dicarboxylic acids from lignocellulosic biomass and exploring genetic mechanisms of the yeast tolerance to the biomass hydrolysate

Additional file 3: Tables S5–S11.

Authors

  • Stovicek, Vratislav ;
  • Dato, Laura ;
  • Almqvist, Henrik ;
  • Schöpping, Marie ;
  • Chekina, Ksenia ;
  • Pedersen, Lasse Ebdrup ;
  • Koza, Anna ;
  • Figueira, Diogo ;
  • Tjosås, Freddy ;
  • Ferreira, Bruno Sommer ;
  • Forster, Jochen ;
  • Lidén, Gunnar ;
  • Borodina, Irina
0 Citations0 Mentions85% FAIR0.5 Dataset Index
10.6084/m9.figshare.19243446.v12022

Additional file 3 of Rational and evolutionary engineering of Saccharomyces cerevisiae for production of dicarboxylic acids from lignocellulosic biomass and exploring genetic mechanisms of the yeast tolerance to the biomass hydrolysate

Additional file 3: Tables S5–S11.

Authors

  • Stovicek, Vratislav ;
  • Dato, Laura ;
  • Almqvist, Henrik ;
  • Schöpping, Marie ;
  • Chekina, Ksenia ;
  • Pedersen, Lasse Ebdrup ;
  • Koza, Anna ;
  • Figueira, Diogo ;
  • Tjosås, Freddy ;
  • Ferreira, Bruno Sommer ;
  • Forster, Jochen ;
  • Lidén, Gunnar ;
  • Borodina, Irina
0 Citations0 Mentions85% FAIR0.5 Dataset Index
10.6084/m9.figshare.192434462022