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Virtual Parts Repository 2: Model-Driven Design of Genetic Regulatory Circuits (2021)
Journal Article
Yang, B., James, K., Wipat, A., & Misirli, G. (2021). Virtual Parts Repository 2: Model-Driven Design of Genetic Regulatory Circuits. ACS synthetic biology, 10(12), 3304-3315. https://doi.org/10.1021/acssynbio.1c00157

Engineering genetic regulatory circuits is key to the creation of biological applications that are responsive to environmental changes. Computational models can assist in understanding especially large and complex circuits for which manual analysis i... Read More about Virtual Parts Repository 2: Model-Driven Design of Genetic Regulatory Circuits.

Artificial shorelines lack natural structural complexity across scales (2021)
Journal Article
Lawrence, P. J., Evans, A. J., Jackson-Bué, T., Brooks, P. R., Crowe, T. P., Dozier, A. E., Jenkins, S. R., Moore, P. J., Williams, G. J., & Davies, A. J. (2021). Artificial shorelines lack natural structural complexity across scales. Proceedings of the Royal Society B: Biological Sciences, 288(1951), https://doi.org/10.1098/rspb.2021.0329

From microbes to humans, habitat structural complexity plays a direct role in the provision of physical living space, and increased complexity supports higher biodiversity and ecosystem functioning across biomes. Coastal development and the construct... Read More about Artificial shorelines lack natural structural complexity across scales.

Virtual Parts Repository 2: Model-driven design of genetic regulatory circuits (2021)
Preprint / Working Paper
Misirli. (2021). Virtual Parts Repository 2: Model-driven design of genetic regulatory circuits

<jats:title>Abstract</jats:title><jats:p>Engineering genetic regulatory circuits is key to the creation of biological applications that are responsive to environmental changes. Computational models can assist in understanding especially large and com... Read More about Virtual Parts Repository 2: Model-driven design of genetic regulatory circuits.