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Noa Ottilie Borst

@ottilie.bsky.social
155 followers 162 following 22 posts

PhD w/ Justin Crocker at EMBL 👩‍🔬 | developmental genetics & regulatory evolution 🪰🧬

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Reposted by Noa Ottilie Borst
Paco Majic @hhydrochaerus.bsky.social · 09/07/2026
What drives the variation in mutation rates between seals and walruses, gulls and pelicans? Maybe selection counteracting the burden of deleterious mutations- or maybe it is a spandrel, a neutral byproduct of the diversification of development and life-history academic.oup.com/evolut/advan...
academic.oup.com
Mutation rate variation as the neutral byproduct of developmental and life history diversification
Abstract. Understanding why species differ in their rates of mutation is central to explaining patterns of molecular and phenotypic evolution. Mutation rat
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Noa Ottilie Borst @ottilie.bsky.social · 19/06/2026
Such an incredible couple of days! I'll be thinking about the ideas and discussions for a long time to come. Many thanks to the organisers and @biologists.bsky.social for putting together such a fantastic workshop 🌟
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Rodrigo Senovilla-Ganzo @rodrisenovilla.bsky.social · 18/06/2026
The GRN future shines bright in the evo-devo landscape! ☀️Being surrounded of these amazing scientists for a week has been a total pleasure, I will need a whole summer to process all the results, discussions and advice. Profoundly grateful to @biologists.bsky.social and organizers James and Antonia
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Nature Reviews Genetics @natrevgenet.nature.com · 04/06/2026
ICYMI: New online! Pleiotropic effects of cis-regulatory mutations
dlvr.it
Pleiotropic effects of cis-regulatory mutations
Nature Reviews Genetics, Published online: 28 May 2026; doi:10.1038/s41576-026-00981-zIn this Comment, Patricia Wittkopp revisits assumptions that cis-regulatory mutations are weakly pleiotropic, ultimately calling for more data to assess the extent to which they are less pleiotropic and deleterious than trans-regulatory mutations.
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Noa Ottilie Borst @ottilie.bsky.social · 13/05/2026
Now published in Current Opinion in Genetics & Development as part of the special issue on Genome Architecture and Expression. 🧬 Part 1: doi.org/10.1016/j.gd... Part 2: doi.org/10.1016/j.gd...
doi.org
Redirecting
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EMBL DB unit @embldbunit.bsky.social · 20/04/2026
🔥New work from the Crocker group @justinmcrocker.bsky.social @embl.org on the mechanistic and evolutionary basis of dominance from cis-regulatory variation in Drosophila Congratulations to Noa @ottilie.bsky.social and all the authors 🥳
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Timothy Fuqua @timothyfuqua.bsky.social · 08/04/2026
Come listen to my talk about how enhancers evolve and how promoters emerge from randomly synthesized DNA sequences!
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Justin Crocker @justinmcrocker.bsky.social · 19/03/2026
New Preprint! When one enhancer allele changes another's regulatory output, is that bad? We found it could be a feature — interallelic cis-regulatory dominance buffers outputs AND enables evolutionary innovation. Two for one! Led by @ottilie.bsky.social from @embl.org doi: doi.org/10.64898/202...
doi.org
Interallelic cis-regulatory dominance promotes robustness and evolutionary innovation
Dominance is a central principle of genetics, yet the mechanistic basis and the evolutionary consequences of dominance arising from cis-regulatory variation remain poorly understood. We examined the evolutionary trajectories of a pleiotropic developmental enhancer in Drosophila . A genotype–phenotype map between D. melanogaster and D. simulans enhancer sequences reveals extensive epistasis, and many homozygous evolutionary paths reduce transcriptional output. In heterozygotes, however, regulatory dominance masks variants that reduce gene expression, potentially relaxing evolutionary constraints. Using allele-specific reporters and imaging, we show that this dominance arises from interallelic interactions (also known as transvection) reinforced by transcriptional hubs. Importantly, this enhancer dominance is cell-type specific, raising the possibility that it conceals deleterious effects in essential tissues while revealing novel, ectopic activity in others. Interallelic regulatory hubs may therefore expand the range of mutational paths available to diploid genomes while preserving essential transcriptional output. ### Competing Interest Statement The authors have declared no competing interest.
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Noa Ottilie Borst @ottilie.bsky.social · 18/03/2026
Excited to share my first preprint from my PhD w/ @justinmcrocker.bsky.social. We show that cell type-specific regulatory dominance promotes robustness and evolutionary innovation through interallelic transcriptional hubs, potentially expanding the mutational paths available to diploids. (1/18)
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Takashi Fukaya @fukayalab.bsky.social · 05/02/2026
New preprint from the lab! We identify the ZnF protein Mulberry as a condensation-dependent structural regulator of genome topology that organizes “multi-way regulatory hubs” in early Drosophila embryos. www.biorxiv.org/content/10.6...
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Reposted by Noa Ottilie Borst
Michalis Averof @michalis-averof.bsky.social · 04/02/2026
Just discovered the wonderful covers of 'Genes to Cells', the journal of the Molecular Biology Society of Japan @mbsj-official.bsky.social – absolutely beautiful! here some examples inspired by mitosis, CRISPR, the DNA helix, and plant pigments
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Justin Crocker @justinmcrocker.bsky.social · 30/01/2026
🧬✨ New 2-part review on the evolution of regulatory DNA (enhancers & promoters)! What started as conversations between Gasper Tkačik @istaresearch.bsky.social and our group @embl.org grew into a broader synthesis. Preprints here: Part 1: arxiv.org/abs/2601.19681 Part 2: arxiv.org/abs/2601.21480
arxiv.org
Long-term evolution of regulatory DNA sequences. Part 1: Simulations on global, biophysically-realistic genotype-phenotype maps
Promoters and enhancers are cis-regulatory elements (CREs), DNA sequences that bind transcription factor (TF) proteins to up- or down-regulate target genes. Decades-long efforts yielded TF-DNA interac...
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EMBL DB unit @embldbunit.bsky.social · 14/11/2025
✨This week at the DB unit seminar @embl.org, Noa Ottilie Borst, a PhD student in the Crocker group @justinmcrocker.bsky.social presented her work on cell-type-specific interallelic interactions, and how they simultaneously allow for robustness and evolutionary innovation.
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Timothy Fuqua @timothyfuqua.bsky.social · 24/06/2025
Hey y'all, grant-pending, I may be unemployed starting from October. If you have any leads on biotech / postdoc positions in the German-speaking part of Switzerland, I'd greatly appreciate a message. I'm great with Data Analysis, Molecular Biology, and Teaching. (Plz RT!) More at timothyfuqua.com
timothyfuqua.com
Home | Timothy Fuqua
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Lucas Waltzer @lucaswaltzer.bsky.social · 03/06/2025
#drosophila @flybase.bsky.social request emergency funding: "As it stands, by the end of July, 2025, there will be no future updates to FlyBase, and in the worst case scenario access to the website will also be lost" => please donate! www.philanthropy.cam.ac.uk/give-to-camb...
philanthropy.cam.ac.uk
Drosophila Genetic Database
The Drosophila Genetic Database, FlyBase, is on the brink of collapse due to the sudden termination of the FlyBase NIH grant, which includes salaries for 5 literature curators based at the University ...
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Justin Crocker @justinmcrocker.bsky.social · 16/05/2025
Leaving synthetic pesticides behind | Science www.science.org/doi/10.1126/... Nice write-up on our work from @embl.org, along with possible solutions.
science.org
Leaving synthetic pesticides behind
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Aafke Gros @aafkegros.bsky.social · 30/01/2025
Quantifying distribution of intensity can be very helpful in many biological systems. For example, in D. melanogaster data, we extract a peak for the level of embryonic patterning in development. 🪰 In collaboration with @ottilie.bsky.social, @timothyfuqua.bsky.social, @justinmcrocker.bsky.social
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Aafke Gros @aafkegros.bsky.social · 30/01/2025
Now out in PLOS CB: Spherical Texture extraction! doi.org/10.1371/jour... This method quantifies the intensity distribution in microscopy objects, and is implemented parameter-free in @ilastik-team.bsky.social object classification! We show applications in cells, C. elegans and Drosophila! 😁
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Justin Crocker @justinmcrocker.bsky.social · 21/01/2025
Nice write-up about our work from Philip Batterham. Agrochemicals: Insect declines in a warming world: Current Biology www.cell.com/current-biol...
cell.com
Agrochemicals: Insect declines in a warming world
Worldwide declines in the abundance of non-pest insects threaten ecosystems, food production and human wellbeing. A large-scale study has systematically examined field and environmental levels of 1,02...
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