Thomas Irving

@endosymb.bsky.social

Post-doc @ Crop Science Centre, Cambridge. Arbuscular mycorrhizal symbiosis, biosensors & the hormone KL. ORCID 0000-0003-3040-4543

I'll be presenting Wed 17th 11:30 at IMMM2025 in Munich in our labs work on the role of the D14L-SMAX1 module in the arbuscular mycorrhizal symbiosis, and why we think it operates in two distinct roles (regulating the common symbiosis pathway and independent of it in the cortex). #immm2025

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I'll be presenting Wed 17th 11:30 at IMMM2025 in Munich in our labs work on the role of the D14L-SMAX1 module in the arbuscular mycorrhizal symbiosis, and why we think it operates in two distinct roles (regulating the common symbiosis pathway and independent of it in the cortex). #immm2025

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I'll be at @ipgsa2025.bsky.social in 10 days time - come find me at poster 102 to discuss what we've learned in rice about the role of KL & its negative regulator SMAX1 in root development, mycorrhizal symbiosis and germination, as well as our efforts to take chemical control of this pathway.

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In sum, at least three different vertebrate TEs encode Gag proteins required for embryonic development! How did we get there? We propose a TE ADDICTION model: TE products (eg Gag) are redundant with & progressively displace essential host proteins establishing dependence on TE for development.

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Figure 1. Custom Micro-Roses, engineered in Arabidopsis thaliana 🌹 Top: Visible light, Bottom: Fluorescence (a) White: no pigment (b) Magenta: betalains (c) Pink champagne: betalains + betaxanthins (d) Champagne: betaxanthins

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