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A diffusible small-RNA-based Turing system dynamically coordinates organ polarity

Nat Plants. 2024-02; 
Emanuele Scacchi, Gael Paszkiewicz, Khoa Thi Nguyen, Shreyas Meda, Agata Burian, Walter de Back, Marja C P Timmermans
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摘要

The formation of a flat and thin leaf presents a developmentally challenging problem, requiring intricate regulation of adaxial-abaxial (top-bottom) polarity. The patterning principles controlling the spatial arrangement of these domains during organ growth have remained unclear. Here we show that this regulation in Arabidopsis thaliana is achieved by an organ-autonomous Turing reaction-diffusion system centred on mobile small RNAs. The data illustrate how Turing dynamics transiently instructed by prepatterned information is sufficient to self-sustain properly oriented polarity in a dynamic, growing organ, presenting intriguing parallels to left-right patterning in the vertebrate embryo. Computational modelling... More

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