's Avatar

@covolab.bsky.social

71 Followers  |  327 Following  |  2 Posts  |  Joined: 14.11.2024  |  1.4127

Latest posts by covolab.bsky.social on Bluesky

Preview
Machine learning reveals genes impacting oxidative stress resistance across yeasts - Nature Communications Yeasts are exposed to oxidative stress during routine metabolism, bioproduction, and interactions with other organisms. Here, the authors use a machine learning classifier to identify genes that are p...

Very happy to share our new paper on how machine learning predicts gene family expansions which contribute to oxidative stress resistance across diverse yeast species:

www.nature.com/articles/s41...

01.07.2025 21:04 β€” πŸ‘ 19    πŸ” 9    πŸ’¬ 2    πŸ“Œ 0
Preview
Ancient co-option of LTR retrotransposons as yeast centromeres The evolutionary origins of the genetic point centromere in the brewer's yeast Saccharomyces cerevisiae, a member of the order Saccharomycetales, are still unknown. Competing hypotheses suggest that t...

It’s out! The evolutionary origins of yeast point centromeres uncovered!

β€œAncient co-option of LTR retrotransposons as yeast centromeres”

www.biorxiv.org/content/10.1...

25.04.2025 13:59 β€” πŸ‘ 97    πŸ” 38    πŸ’¬ 2    πŸ“Œ 6

Please tell us all about it

16.05.2025 16:38 β€” πŸ‘ 0    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0

Two mycologists profiled here discussing the enormous recent changes in their careers πŸ„β€πŸŸ«πŸ„πŸ’”

04.05.2025 03:39 β€” πŸ‘ 7    πŸ” 3    πŸ’¬ 0    πŸ“Œ 0
LinkedIn This link will take you to a page that’s not on LinkedIn

Excited to share our latest paper, now online in Molecular Cell. First, it shows that the RNAPII-CTD kinases CDK9 and CDK12 are Ser5-Ser2 kinases. Secondly, it describes the activation mechanism of CDK12/13 by PAF1C complex. Congratulations to David LΓ³pez MartΓ­nez and coauthors!
lnkd.in/d_nbfMht

03.05.2025 11:17 β€” πŸ‘ 6    πŸ” 1    πŸ’¬ 1    πŸ“Œ 0

Amazing work

08.02.2025 16:45 β€” πŸ‘ 0    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0
Post image

In our new paper, we uncover a damaged chromatin marking mechanism that drives the non-random segregation of UV damage through mitosis. Chromatin alterations impinge on genome stability by controlling DNA damage segregation
See Ferrand*, Dabin* et al., Nat Commun 2025.

08.02.2025 15:14 β€” πŸ‘ 19    πŸ” 7    πŸ’¬ 3    πŸ“Œ 0
Post image

Janevska @slavi-jan.bsky.social et al engineered an Aspergillus nidulans chassis for psilocybin production by repressing L-tryptophan catabolism. Deleting aminotransferase genes aroH1 and aroH2 led to a 10-fold increase in psilocybin yield. Read ➑️ https://buff.ly/4g8VutI

03.12.2024 11:00 β€” πŸ‘ 11    πŸ” 8    πŸ’¬ 0    πŸ“Œ 1
Preview
Pangenome graph analysis reveals extensive effector copy-number variation in spinach downy mildew Author summary Plant pathogens are known to evolve rapidly and overcome disease resistance of newly introduced crop varieties. This swift adaptation is visible in the genomes of these pathogens, which...

This is a wonderful paper by @mfseidl.bsky.social and colleagues doi.org/10.1371/jour...

18.11.2024 22:42 β€” πŸ‘ 24    πŸ” 14    πŸ’¬ 0    πŸ“Œ 0

@covolab is following 20 prominent accounts