Mélanie Rich 🌱🍄

@melaniekrich.bsky.social

#Evolution #Mycorrhiza Eco-anxious

Most TF families predictive for organismal complexity were gained during early plant evolution and act as homo- as well as heterodimers. Together, this suggests that gain of TF families as well as the rewiring of GRNs after gene duplication events are causative for plant morphological evolution.

Stefan A. Rensing @rensingstefan.bsky.social · 2w ago

Can the pretrained transformer-based architecture TabPFN predict plant organismal complexity based on their complement of transcription factors? Yes it can: www.biorxiv.org/content/10.6... Happy to hear your thoughts! @dvarshney.bsky.social @jandevries.bsky.social @watertoland.bsky.social

Finally online! It took ut 9 yars from formulating the hypothesis to actually finalizing the last experiments... but there it is!

Mélanie Rich 🌱🍄@melaniekrich.bsky.social · 2w ago

New preprint alert! www.biorxiv.org/content/10.6... The conclusion of a long-lasting obsession about lipids, plant terrestrialization and the origin of plant symbioses 1/7 🧵 @pierremarcdelaux.bsky.social @katharinamel1.bsky.social @tatiana-vernie.bsky.social @kellerjeanphd.bsky.social

Soutien aux journalistes visés. Des idiots harcèlent les présentateurs météo car ils donnent les températures... Les mêmes qui harcèlent quotidiennement les journalistes, scientifiques et activistes qui présentent des faits scientifiques. Et cela toute l'année.

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1\ bmcbiol.biomedcentral.com/articles/10.... 🌿🌿Our article on fern immunity has been peer-reviewed 🌿🌿 Thanks to @madeleinebaker.bsky.social @kellerjeanphd.bsky.social @maximebonhomme.bsky.social @pierremarcdelaux.bsky.social and @jacquet-chris.bsky.social a quick thread 🧵 1/4

Exploring fern pathosystems and immune receptors to bridge gaps in plant immunity - BMC Biology

Land plants include angiosperms, gymnosperms, bryophytes, lycophytes, and ferns, each of which may deploy distinct strategies to resist pathogens. Here, we investigate fern-pathogen interactions by characterizing novel pathosystems and analyzing the diversity of fern immune receptors. A collection of fern species was inoculated with a diverse set of filamentous microbes, and disease symptoms were assessed. We further leveraged published genome mining tools to analyse the diversity of receptor-like kinases, receptor-like proteins (RLKs/RLPs) and nucleotide-binding and leucine-rich repeats (NLRs), along with key immune signalling components, in ferns. Our results reveal that ferns exhibit a range of responses to pathogens, including putative non-host resistance and more specific resistance mechanisms. Among ten ferns tested, Pteris vittata displays the broadest spectrum of pathogen compatibility. Genome mining indicates that ferns encode a diverse repertoire of putative immune receptors, antimicrobial peptides, and mediators of systemic acquired resistance. Ferns possess numerous RLKs/RLPs, resembling those required for cell-surface immunity in angiosperms. They also encode diverse NLRs, including sub-families lost in flowering plants. These findings provide insights into disease resistance evolution and open promising perspectives for crop protection strategies.

bmcbiol.biomedcentral.com

~12 years after we coined it EPP1 with @oswaldovaldesl.bsky.social one afternoon when we were postdoc with @jeanmichelane.bsky.social! Congrats @melaniekrich.bsky.social @tatiana-vernie.bsky.social et al. for the hard work! EPP1 is the fourth member of the Common Symbiosis Pathway 🍄🌱!

Mélanie Rich 🌱🍄@melaniekrich.bsky.social · 11mo ago

So happy to see the latest preprint of the team out! www.biorxiv.org/content/10.1... The continuation of a long standing project started by @oswaldovaldesl.bsky.social in @jeanmichelane.bsky.social‘s lab. 1/7 🧵