The eLignin Microbial Database

A curated resource for microbial metabolism of lignin-derived aromatic compounds

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Qi et al (2007)

Qi, S., Chaudhry, M. T., Zhang, Y., Meng, B., Huang, Y., Zhao, K., Poetsch, A., Jiang, C., Liu, S., & Liu, S. (2007). Comparative proteomes of Corynebacterium glutamicum grown on aromatic compounds revealed novel proteins involved in aromatic degradation and a clear link between aromatic catabolism and gluconeogenesis via fructose‐1,6‐bisphosphatase. PROTEOMICS, 7(20), 3775–3787. https://doi.org/10.1002/pmic.200700481

Reference Details

Short Citation Qi et al (2007)
APA7 Qi, S., Chaudhry, M. T., Zhang, Y., Meng, B., Huang, Y., Zhao, K., Poetsch, A., Jiang, C., Liu, S., & Liu, S. (2007). Comparative proteomes of Corynebacterium glutamicum grown on aromatic compounds revealed novel proteins involved in aromatic degradation and a clear link between aromatic catabolism and gluconeogenesis via fructose‐1,6‐bisphosphatase. PROTEOMICS, 7(20), 3775–3787. https://doi.org/10.1002/pmic.200700481
Citation Key Qi_2007
BibTeX Type article
Authors Qi, Su‐Wei and Chaudhry, Muhammad Tausif and Zhang, Yun and Meng, Bo and Huang, Yan and Zhao, K.‐X. and Poetsch, Ansgar and Jiang, Cheng‐Ying and Liu, Siqi and Liu, Shuang‐Jiang
Year 2007
Title Comparative proteomes of Corynebacterium glutamicum grown on aromatic compounds revealed novel proteins involved in aromatic degradation and a clear link between aromatic catabolism and gluconeogenesis via fructose‐1,6‐bisphosphatase
Journal PROTEOMICS
Volume 7
Pages 3775–3787

BibTeX

@article{Qi_2007,
  author = {Qi, Su‐Wei and Chaudhry, Muhammad Tausif and Zhang, Yun and Meng, Bo and Huang, Yan and Zhao, K.‐X. and Poetsch, Ansgar and Jiang, Cheng‐Ying and Liu, Siqi and Liu, Shuang‐Jiang},
  doi = {10.1002/pmic.200700481},
  issn = {1615-9861},
  journal = {PROTEOMICS},
  month = {oct},
  number = {20},
  pages = {3775–3787},
  pmid = {17880007},
  publisher = {Wiley},
  title = {Comparative proteomes of Corynebacterium glutamicum grown on aromatic compounds revealed novel proteins involved in aromatic degradation and a clear link between aromatic catabolism and gluconeogenesis via fructose‐1,6‐bisphosphatase},
  url = {http://dx.doi.org/10.1002/pmic.200700481},
  volume = {7},
  year = {2007},
}

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