Katharina Schiessl(@kathschiessl) 's Twitter Profile Photo

Reminder of our BSPP Parallel Session on Coloniser-induced plant organ development!! Submit our abstract by May 1st!!

Reminder of our BSPP Parallel Session on Coloniser-induced plant organ development!! Submit our abstract by May 1st!!
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Katharina Schiessl(@kathschiessl) 's Twitter Profile Photo

Novel nodule organ identity regulators: LSH transcriptional regulators make nodules an infectable and habitable organ for nitrogen-fixing bacteria.

biorxiv.org/content/10.110…

Novel nodule organ identity regulators: LSH transcriptional regulators make nodules an infectable and habitable organ for nitrogen-fixing bacteria. 

biorxiv.org/content/10.110…
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Katharina Schiessl(@kathschiessl) 's Twitter Profile Photo

A lateral organ boundaries domain transcription factor acts downstream of the auxin response factor 2 to control nodulation and root architecture in Medicago truncatula - Kirolinko - New Phytologist - Wiley Online Library nph.onlinelibrary.wiley.com/doi/abs/10.111…

Exciting new insights!

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Katharina Schiessl(@kathschiessl) 's Twitter Profile Photo

Light-sensitive short hypocotyl genes confer symbiotic nodule identity in the legume Medicago truncatula: Current Biology cell.com/current-biolog…

Very happy to let you all know that our paper on the LSH genes as nodule organ identity regulators is now out!

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Sainsbury Laboratory Cambridge University (SLCU)(@slcuplants) 's Twitter Profile Photo

We are delighted to announce that Katharina Schiessl Katharina Schiessl will head a new research group at Sainsbury Laboratory Cambridge University (SLCU) focused on understanding how organ diversity of plants can be reshaped by their colonisers. Read about her exciting research plans
➡️slcu.cam.ac.uk/news/dr-kathar…

We are delighted to announce that Katharina Schiessl @kathschiessl will head a new research group at @slcuplants focused on understanding how organ diversity of plants can be reshaped by their colonisers. Read about her exciting research plans
➡️slcu.cam.ac.uk/news/dr-kathar…
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Katharina Schiessl(@kathschiessl) 's Twitter Profile Photo

Join us and submit your abstract by May 1st 😅🙂🙂!! We are very much looking forward to an exciting day of science on plant galls!

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Marcelo Bueno Batista 🇧🇷🇬🇧(@marcelobbatista) 's Twitter Profile Photo

Happy to share this paper published in Current Biology led by Katharina Schiessl at Sainsbury Laboratory Cambridge University (SLCU). In this study, LSH1/LSH2 were identified as essential to differentiate symbiotic root nodules from lateral root development. Read about it here: cell.com/current-biolog…

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Sainsbury Laboratory Cambridge University (SLCU)(@slcuplants) 's Twitter Profile Photo

Overlap in lateral root and nodule development confirmed by Katharina Schiessl Giles E D Oldroyd (he/they) 🏳️‍🌈 et al brings N-fixer cereal goal closer: INCEPTION Recruits the Lateral Root Developmental Program for Nodule Organogenesis in truncatula cell.com/current-biolog…

Overlap in lateral root and nodule development confirmed by @kathschiessl @gilesedoldroyd et al brings N-fixer cereal goal closer: #NODULE INCEPTION Recruits the Lateral Root Developmental Program for #Symbiotic Nodule Organogenesis in #Medicago truncatula cell.com/current-biolog…
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Sainsbury Laboratory Cambridge University (SLCU)(@slcuplants) 's Twitter Profile Photo

New research from Katharina Schiessl identifies 2 genetic factors (LSH1/LSH2) previously linked to above-ground shoot development as being essential to differentiate symbiotic root nodules from lateral root development. Read all about it in Current Biology at doi.org/10.1016/j.cub.…

New research from @kathschiessl identifies 2 genetic factors (LSH1/LSH2) previously linked to above-ground shoot development as being essential to differentiate symbiotic root nodules from lateral root development. Read all about it in @CurrentBiology at doi.org/10.1016/j.cub.…
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Katharina Schiessl(@kathschiessl) 's Twitter Profile Photo

The karrikin signaling regulator SMAX1 controls Lotus japonicus root and root hair development by suppressing ethylene biosynthesis pnas.org/content/117/35…

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Crop Science Centre(@CropSciCentre) 's Twitter Profile Photo

Brilliant seminar from Katharina Schiessl on the investigation of common principles that underpin plant organ plasticity and diversification. Thank you so much for sharing your amazing research with us!

Brilliant seminar from @kathschiessl on the investigation of common principles that underpin plant organ plasticity and diversification. Thank you so much for sharing your amazing research with us!
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Sainsbury Laboratory Cambridge University (SLCU)(@slcuplants) 's Twitter Profile Photo

In this Behind the Paper article, Katharina Schiessl explores how unlocking the secrets of nitrogen fixation in legume plants brings us a step closer to repurposing this function in non-legume plants
communities.springernature.com/posts/unlockin…

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ENSA(@ENSA_research) 's Twitter Profile Photo

Overlap in lateral root & programme: NODULE INCEPTION Recruits the Lateral Root Developmental Program for Symbiotic Nodule Organogenesis in Medicago truncatula published in Current Biology by Katharina Schiessl @GilesOldroyd et al bit.ly/NIN-lateral

Overlap in lateral root & #nodule programme: NODULE INCEPTION Recruits the Lateral Root Developmental Program for Symbiotic Nodule Organogenesis in Medicago truncatula published in @CurrentBiology by @kathschiessl @GilesOldroyd et al bit.ly/NIN-lateral
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ENSA(@ENSA_research) 's Twitter Profile Photo

Growing excitement about self‑fertilising crops: nice piece by Rhys Blakely in The Times and The Sunday Times today on Giles E D Oldroyd (he/they) 🏳️‍🌈 Cambridge University working towards crops needing less chemical fertilisers. Also read Katharina Schiessl's work on lateral root & nodule similarities bit.ly/NIN-lateral

Growing excitement about self‑fertilising crops: nice piece by @rhysblakely in @thetimes today on @gilesedoldroyd @Cambridge_Uni working towards crops needing less chemical fertilisers. Also read @kathschiessl's work on lateral root & nodule similarities bit.ly/NIN-lateral
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Sainsbury Laboratory Cambridge University (SLCU)(@slcuplants) 's Twitter Profile Photo

The developmental regulators that confer the identity of N-fixing root nodules belong to the LSH1/LSH2 transcription factor family more commonly associated with defining the shapes of stems, flowers & leaves! Cool findings from Katharina Schiessl & colleagues
➡️slcu.cam.ac.uk/news/LSH-genes…

The developmental regulators that confer the identity of N-fixing root nodules belong to the LSH1/LSH2 transcription factor family more commonly associated with defining the shapes of stems, flowers & leaves! Cool findings from @kathschiessl & colleagues
➡️slcu.cam.ac.uk/news/LSH-genes…
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Katharina Schiessl(@kathschiessl) 's Twitter Profile Photo

Common Mechanisms of Developmental Reprogramming in Plants—Lessons From Regeneration, Symbiosis, and Parasitism frontiersin.org/article/10.338…

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