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A RAF-like kinase mediates a deeply conserved, ultra-rapid auxin response

Kuhn, A.; Roosjen, M.; Mutte, S.; Dubey, S. M.; Carrillo Carrasco, P.; Monzer, A.; Kohchi, T.; Nishihama, R.; Fendrych, M.; Friml, J.; Sprakel, J.; Weijers, D.

2022-11-25 plant biology
10.1101/2022.11.25.517951 bioRxiv
Show abstract

The plant signaling molecule auxin triggers both fast and slow cellular responses across the plant kingdom, including both land plants and algae. A nuclear response pathway mediates auxin-dependent gene expression, and controls a range of growth and developmental processes in land plants. It is unknown what mechanisms underlie both the physiological responses occurring within seconds, and the responses in algae, that lack the nuclear auxin response pathway. We discovered an ultra-fast proteome-wide phosphorylation response to auxin across 5 land plant and algal species, converging on a core group of shared target proteins. We find conserved rapid physiological responses to auxin in the same species and identified a RAF-like protein kinase as a central mediator of auxin-triggered phosphorylation across species. Genetic analysis allowed to connect this kinase to both auxin-triggered protein phosphorylation and a rapid cellular response, thus identifying an ancient mechanism for fast auxin responses in the green lineage.

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