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Janocha, D.

Publications and source records attributed to Janocha, D..

2 recordsLinked to original sources

TOR acts as metabolic gatekeeper for auxin-dependent lateral root initiation in Arabidopsis thaliana

Plants post-embryonic organogenesis requires matching the available metabolic resources to the developmental programs. The root system is determined by the formation of lateral roots (LR), which in Arabidopsis thaliana entails the auxin-induced activation of founder cells located in the pericycle. While the allocation of sugars to roots influences root branching, how sugar availability is sensed for auxin-triggered formation of LRs remains unknown. Here, we combine metabolic profiling with cell-specific genetic interference to show that LR formation is an important sink for carbohydrate accompanied by a switch to glycolysis. We show that the target-of-rapamycin (TOR) kinase is locally activated in the pericycle and the founder cells and that both chemical and genetic inhibition of TOR kinase lead to a block of LR initiation. TOR marginally affects the auxin-induced transcriptional response of the pericycle but modulates the translation of ARF19, ARF7 and LBD16, three key targets of auxin signalling. These data place TOR as a gatekeeper for post-embryonic LR formation that integrates local auxin-dependent pathways with systemic metabolic signals, modulating the translation of auxin induced gene expression.

plant biology↗

TOR kinase controls shoot development by translational regulation of cytokinin catabolic enzymes

Plants continuously adjust their developmental program including organ initiation and growth in accordance with endogenous and environmental signals. This plasticity requires that a diversity of signaling pathways acts in concert to modulate stem cell activity. We have shown previously that the TOR kinase network integrates metabolic- and light signals and controls expression of WUSCHEL, a transcriptional master regulator of stem cells in the shoot apical meristem. However, the mechanism linking TOR activity with the WUSCHEL promoter remained unresolved. Here we demonstrate that TOR regulates the accumulation of trans-zeatin, the cytokinin species mainly responsible for shoot development. Importantly, we identify translational repression of RNAs encoding cytokinin degrading CYTOKININ OXIDASES/DEHYDROGENASE enzymes by TOR as an underlying mechanism. Employing this system, plants can quickly adjust stem cell activity and developmental programs in response to changes in their environment.

plant biology↗