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Fig. 1. The core energy management machinery, comprising SnRKs, TORC, and the T6P pathway, and its interactions with multiple signals through complex feedback regulation to regulate growth and resilience trade-offs.

Fig. 1. The core energy management machinery, comprising SnRKs, TORC, and the T6P pathway, and its interactions with multiple signals through complex feedback regulation to regulate growth and resilience trade-offs.

The cover depicts a whiteboard illustration of the original concept behind the workshop ‘Plant Energy Management: Molecular Mechanisms and Signalling,’ held at UPSC, Sweden, in August 2024. The aim was to expand upon the original TOR meeting by focusing on the inputs and outputs of the core energy management machinery in a species-agnostic manner. (Credit: Benoît Menand, Johannes Hanson, and Vanessa Wahl.)

Link: https://academic.oup.com/jxb/issue/77/5

The cover depicts a whiteboard illustration of the original concept behind the workshop ‘Plant Energy Management: Molecular Mechanisms and Signalling,’ held at UPSC, Sweden, in August 2024. The aim was to expand upon the original TOR meeting by focusing on the inputs and outputs of the core energy management machinery in a species-agnostic manner. (Credit: Benoît Menand, Johannes Hanson, and Vanessa Wahl.) Link: https://academic.oup.com/jxb/issue/77/5

Summary of the special issue on #PlantTOR, #SnRK1 and #T6P that was edited by Wahl, Hanson and Menand (2026). 🌱⚡
"The plant energy management machinery: an essential hub for stress resilience and developmental dynamics with great potential for crop improvement"
🔗 academic.oup.com/jxb/article/...

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Great preprint by Liu, Blanford et al. (2025) on how trehalose 6-phosphate #T6P stimulates plant cell growth via #PlantTOR and is required for sucrose-induced TOR activation in #Arabidopsis by suppressing #SnRK1 in a dose-dependent manner, thereby mediating the antagonistic TOR–SnRK1 relationship.

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