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Regulatory and coding sequences of TRNP1 co-evolve with brain size and cortical folding in mammals
Kliesmete, Z., Wange, L. E., Vieth, B., Esgleas, M., Radmer, J., Hülsmann, M., … Enard, W. (2023). Regulatory and coding sequences of TRNP1 co-evolve with brain size and cortical folding in mammals. eLife, 12, e83593 (29 pp.). https://doi.org/10.7554/elife.83593
Spatial structure favors microbial coexistence except when slower mediator diffusion weakens interactions
Lobanov, A., Dyckman, S., Kurkjian, H., & Momeni, B. (2023). Spatial structure favors microbial coexistence except when slower mediator diffusion weakens interactions. eLife, 12, e82504 (15 pp.). https://doi.org/10.7554/eLife.82504
Genome-wide base editor screen identifies regulators of protein abundance in yeast
Schubert, O. T., Bloom, J. S., Sadhu, M. J., & Kruglyak, L. (2022). Genome-wide base editor screen identifies regulators of protein abundance in yeast. eLife, 11, e79525 (29 pp.). https://doi.org/10.7554/eLife.79525
NICEdrug.ch, a workflow for rational drug design and systems-level analysis of drug metabolism
MohammadiPeyhani, H., Chiappino-Pepe, A., Haddadi, K., Hafner, J., Hadadi, N., & Hatzimanikatis, V. (2021). NICEdrug.ch, a workflow for rational drug design and systems-level analysis of drug metabolism. eLife, 10, e65543 (39 pp.). https://doi.org/10.7554/ELIFE.65543
Efficient mate finding in planktonic copepods swimming in turbulence
Michalec, F. G., Fouxon, I., Souissi, S., & Holzner, M. (2020). Efficient mate finding in planktonic copepods swimming in turbulence. eLife, 9, e62014 (25 pp.). https://doi.org/10.7554/eLife.62014
A microfluidic device for inferring metabolic landscapes in yeast monolayer colonies
Marinkovic, Z. S., Vulin, C., Acman, M., Song, X., Di Meglio, J. M., Lindner, A. B., & Hersen, P. (2019). A microfluidic device for inferring metabolic landscapes in yeast monolayer colonies. eLife, 8, e47951 (21 pp.). https://doi.org/10.7554/eLife.47951
Division of labor in bacteria
Dal Co, A., Brannon, C., & Ackermann, M. (2018). Division of labor in bacteria. eLife, 7, e38578 (3 pp.). https://doi.org/10.7554/eLife.38578