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Koh, S. W. H.

Publications and source records attributed to Koh, S. W. H..

2 recordsLinked to original sources

Post-translational modification of SPATULA by SECRET AGENT and SPINDLY promotes organ symmetry transition at the gynoecium apex

The establishment of organ symmetry during multicellular development is a fundamental process shared by most living organisms. Here, we investigated how two O-glycosyltransferases of Arabidopsis thaliana, SPINDLY (SPY) and SECRET AGENT (SEC) synergistically promote a rare bilateral-to-radial symmetry transition during patterning of the plant reproductive organ, the gynoecium. SPY and SEC modify N-terminal residues of the bHLH transcription factor SPATULA (SPT) in vivo and in vitro by attaching O-fucose and O-linked-{beta}-N-Acetylglucosamine (O-GlcNAc), to promote style development. This post-translational regulation does not impact SPT homo- and hetero-dimerisation events with INDEHISCENT (IND) and HECATE 1 (HEC1), although it enhances the affinity of SPT for the kinase PINOID (PID) gene locus to promote transcriptional repression. Our findings reveal a previously unrecognized mechanism for O-GlcNAc and O-fucose post-translational decorations in controlling style development and offer the first molecular example of a synergistic role for SEC and SPY in plant post-embryonic organ patterning.

plant biology↗

Heterologous expression of a lycophyte protein enhances angiosperm seedling vigor

Seedling vigor is a key agronomic trait that determines juvenile plant performance. Angiosperm seeds develop inside fruits and are connected to the mother plant through vascular tissues. Their formation requires plant-specific genes, such as BREVIS RADIX (BRX) in Arabidopsis thaliana roots. BRX family proteins are found throughout the angiosperms but also occur in non-vascular bryophytes and non-seed lycophytes. They consist of four conserved domains, including the tandem "BRX-domains". We found that bryophyte or lycophyte BRX homologs can only partially substitute for Arabidopsis BRX (AtBRX) because they miss key features in the linker between the BRX-domains. Intriguingly however, expression of a BRX homolog from the lycophyte Selaginella moellendorffii (SmBRX) in A. thaliana wildtype background confers robustly enhanced root growth vigor that persists throughout the life cycle. This effect can be traced back to a substantial increase in seed and embryo size, and can be reproduced with a modified, "SmBRX-like" variant of AtBRX. Our results thus suggest that BRX variants could serve as biotechnological tools to boost seedling vigor and shed light on the activity of ancient, non-angiosperm BRX family proteins.

plant biology↗