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Evolutionary context improves regulatory network predictions

(2017) CELL SYSTEMS. 4(5). p.478-479
Author
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Abstract
A novel algorithm harnesses phylogenetic information and facilitates a better understanding of the evolutionary divergence of gene regulation between species.
Keywords
SPECIFICITY, BINDING

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Citation

Please use this url to cite or link to this publication:

MLA
Gordon, Jonathan L et al. “Evolutionary Context Improves Regulatory Network Predictions.” CELL SYSTEMS 2017 : 478–479. Print.
APA
Gordon, J. L., Gallone, B., Maere, S., & Verstrepen, K. J. (2017). Evolutionary context improves regulatory network predictions. CELL SYSTEMS.
Chicago author-date
Gordon, Jonathan L, Brigida Gallone, Steven Maere, and Kevin J Verstrepen. 2017. “Evolutionary Context Improves Regulatory Network Predictions.” Cell Systems.
Chicago author-date (all authors)
Gordon, Jonathan L, Brigida Gallone, Steven Maere, and Kevin J Verstrepen. 2017. “Evolutionary Context Improves Regulatory Network Predictions.” Cell Systems.
Vancouver
1.
Gordon JL, Gallone B, Maere S, Verstrepen KJ. Evolutionary context improves regulatory network predictions. CELL SYSTEMS. 2017. p. 478–9.
IEEE
[1]
J. L. Gordon, B. Gallone, S. Maere, and K. J. Verstrepen, “Evolutionary context improves regulatory network predictions,” CELL SYSTEMS, vol. 4, no. 5. pp. 478–479, 2017.
@misc{8537565,
  abstract     = {A novel algorithm harnesses phylogenetic information and facilitates a better understanding of the evolutionary divergence of gene regulation between species.},
  author       = {Gordon, Jonathan L and Gallone, Brigida and Maere, Steven and Verstrepen, Kevin J},
  issn         = {2405-4712},
  keywords     = {SPECIFICITY,BINDING},
  language     = {eng},
  number       = {5},
  pages        = {478--479},
  series       = {CELL SYSTEMS},
  title        = {Evolutionary context improves regulatory network predictions},
  url          = {http://dx.doi.org/10.1016/j.cels.2017.05.004},
  volume       = {4},
  year         = {2017},
}

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