Overview:
Up to date, we have made substantial progress on all objectives of the original proposal. Our most important achievement has been the functional characterisation of RLP4s in the context of edge-based growth control, which revealed:
-the mechanisms controlling RLP4s polarity at cell edges
-that RLP4s act as mechanosensors at cell edges
-that RLP4s are required for directional growth
-that RLP4s control edge-directed transport in a positive feed-back loop
We have published these results in Nature Plants (Elliott, L., Kalde, M., Schürholz, A. K., Zhang, X., Wolf, S., Moore, I., & Kirchhelle, C. (2024). A self-regulatory cell-wall-sensing module at cell edges controls plant growth. Nature Plants, 1-11) These findings are a major milestone within the ERC project.
We have furthermore advanced other aspects of the work programme to the point where we have developed three new working hypotheses for major questions within the project:
1. We propose that edge-directed trafficking controls growth through the accessibility of xyloglucan at cell edges, which contributes to the formation of growth rate-limiting mechanical hotspots at edges.
2. We propose that cell edge polarity is an emergent property depending on local cell wall density, which is affected by three parameters: cell wall biochemical composition, cell geometry, and turgor pressure.
3. We propose that cell-based growth control has specifically emerged at the organ surface of three-dimensional organs. We propose the unique mechanical niche at the organ surface both explains the need for and activates edge-based growth control.
We have put in place suitable methods and collaborations to test these three hypotheses outlined above, which will allow us to reach three major milestones within the project.
We have encountered some minor problems related to protein purification and have adapted our experimental timeline in response to serendipitous hiring opportunities. However overall, we have not encountered any substantial problems and the research programme is well under way.
My team and I have presented our data at several international conferences (e.g. FASEB Mechanisms of Plant Development conference (USA), Plant Biomechanics conference (France), Plant Cell Biology International (Greece), BIRS-CMO workshop Multiscale Modeling of Plant Growth (online), Gordon Conference – Plant and Microbial Cytoskeleton (USA), Gordon Conference - Developmental Biology (USA), and invited seminars (e.g. Plant Membrane seminar series (online); and departmental seminars at the Swedish University of Agricultural Sciences, Heinrich-Heine University Düsseldorf, University of Oxford), and have received excellent feedback from the community on these occasions.