Zobrazeno 1 - 10
of 10
pro vyhledávání: '"Synthetic Biology/methods"'
Autor:
Harwood, Colin, Wipat, Anil
Publikováno v:
Science Progress. Sep2016, Vol. 99 Issue 3, p346-348. 3p.
Publikováno v:
Microbial Cell Factories, Vol 19, Iss 1, Pp 1-14 (2020)
Amer, M, Toogood, H & Scrutton, N S 2020, ' Engineering nature for gaseous hydrocarbon production ', Microbial Cell Factories, vol. 19, no. 1, 209, pp. 209 . https://doi.org/10.1186/s12934-020-01470-6
Microbial Cell Factories
Amer, M, Toogood, H & Scrutton, N S 2020, ' Engineering nature for gaseous hydrocarbon production ', Microbial Cell Factories, vol. 19, no. 1, 209, pp. 209 . https://doi.org/10.1186/s12934-020-01470-6
Microbial Cell Factories
The development of sustainable routes to the bio-manufacture of gaseous hydrocarbons will contribute widely to future energy needs. Their realisation would contribute towards minimising over-reliance on fossil fuels, improving air quality, reducing c
Akademický článek
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Publikováno v:
Schindler, D, Dai, J & Cai, Y 2018, ' Synthetic genomics : a new venture to dissect genome fundamentals and engineer new functions ', Current Opinion in Chemical Biology, vol. 46, pp. 56-62 . https://doi.org/10.1016/j.cbpa.2018.04.002
Current Opinion in Chemical Biology
Current Opinion in Chemical Biology
Highlights • Viral, organelle and bacterial genomes can be synthesized. • Sc2.0 is on the way to generating the first synthetic designer eukaryote. • 6 of 17 S. cerevisiae chromosomes are synthesized and published. • GP-write will open a new
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::6a0f83e99579a9bc5114afeaa1c5504e
https://doi.org/10.1016/j.cbpa.2018.04.002
https://doi.org/10.1016/j.cbpa.2018.04.002
Autor:
Schaerli, Yolanda, Jiménez, Alba, Duarte, José M, Mihajlovic, Ljiljana, Renggli, Julien, Isalan, Mark, Sharpe, James, Wagner, Andreas
Publikováno v:
Molecular Systems Biology
Molecular systems biology, vol. 14, no. 9, pp. e8102
Molecular systems biology, vol. 14, no. 9, pp. e8102
Phenotypic variation is the raw material of adaptive Darwinian evolution. The phenotypic variation found in organismal development is biased towards certain phenotypes, but the molecular mechanisms behind such biases are still poorly understood. Gene
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=pmid_dedup__::9390069bbd4349627533e7e7d05aac9f
http://hdl.handle.net/10044/1/63525
http://hdl.handle.net/10044/1/63525
Autor:
Darren N. Nesbeth
The Synthetic Biology Handbook explains the major goals of the field of synthetic biology and presents the technical details of the latest advances made in achieving those goals. Offering a comprehensive overview of the current areas of focus in synt
Publikováno v:
Integrative biology : quantitative biosciences from nano to macro. 8(4)
Position-dependent gene expression in gradients of morphogens is one of the key processes involved in cellular differentiation during development. Here, we study a simple artificial differentiation process, which is based on the diffusion of genetic
Autor:
Emilien Dubuc, Wilhelm T. S. Huck, Ardjan J. van der Linden, Tom F. A. de Greef, Maaruthy Yelleswarapu, Pascal A. Pieters, Bob van Sluijs
Publikováno v:
ACS Synthetic Biology
ACS Synthetic Biology, 7(12), 2879-2887. American Chemical Society
ACS Synthetic Biology, 7(12), 2879-2887. American Chemical Society
Cell-free transcription-translation provides a simplified prototyping environment to rapidly design and study synthetic networks. Despite the presence of a well characterized toolbox of genetic elements, examples of genetic networks that exhibit comp
Publikováno v:
Engelmann, N, Schwarz, T, Kubaczka, E, Hochberger, C & Koeppl, H 2023, ' Context-Aware Technology Mapping in Genetic Design Automation ', ACS Synthetic Biology, vol. 12, no. 2, pp. 446-459 . https://doi.org/10.1021/acssynbio.2c00361
Genetic design automation (GDA) tools hold promise to speed-up circuit design in synthetic biology. Their wide-spread adoption is hampered by their limited predictive power, resulting in frequent deviations between in-silico and in-vivo performance o
Autor:
B. V. V. S. Pavan Kumar, Shuo Yang, Stephen Mann, Andrew Phillips, Ardjan J. van der Linden, Tom F. A. de Greef, Neil Dalchau, Bas W. A. Bögels, Pascal A. Pieters, Alex Joesaar
Publikováno v:
Nature Nanotechnology, 14(4), 369-378. Nature Publishing Group
Joesaar, A, Yang, S, Bögels, B, van der Linden, A, Pieters, P, Kumar, B V V S P, Dalchau, N, Phillips, A, Mann, S & de Greef, T F A 2019, ' DNA-based communication in populations of synthetic protocells ', Nature Nanotechnology, vol. 14, no. 4, pp. 369-378 . https://doi.org/10.1038/s41565-019-0399-9
Nature Nanotechnology
Nature nanotechnology
Nature Nanotechnology, 14, 4, pp. 369
Nature Nanotechnology, 14, 369
Joesaar, A, Yang, S, Bögels, B, van der Linden, A, Pieters, P, Kumar, B V V S P, Dalchau, N, Phillips, A, Mann, S & de Greef, T F A 2019, ' DNA-based communication in populations of synthetic protocells ', Nature Nanotechnology, vol. 14, no. 4, pp. 369-378 . https://doi.org/10.1038/s41565-019-0399-9
Nature Nanotechnology
Nature nanotechnology
Nature Nanotechnology, 14, 4, pp. 369
Nature Nanotechnology, 14, 369
Developing molecular communication platforms based on orthogonal communication channels is a crucial step towards engineering artificial multicellular systems. Here, we present a general and scalable platform entitled ‘biomolecular implementation o