Recent studies in Arabidopsis (Arabidopsis thaliana) have reported conflicting roles for NAC DOMAIN CONTAINING PROTEIN 17 (ANAC017), a transcription factor regulating mitochondria-to-nuclear signaling, and its closest paralog NAC DOMAIN CONTAINING PROTEIN 16 (ANAC016), in leaf senescence. By synchronizing senescence in individually darkened leaves of knockout and overexpressing mutants from these contrasting studies, we demonstrate that elevated ANAC017 expression consistently causes accelerated senescence and cell death. A time-resolved transcriptome analysis revealed that senescence-associated pathways such as autophagy are not constitutively activated in ANAC017 overexpression lines, but require a senescence-stimulus to trigger accelerat...
The Arabidopsis transcriptional factor NAC016 directly activates chlorophyll degradation during leaf...
Abstract The NAM, ATAF1/2, and CUC2 (NAC) domain transcription factor VND‐INTERACTING2 (VNI2) negati...
The NAC family is one of the largest families of plant-specific transcription factors (TFs) and NAC ...
Recent studies in Arabidopsis (Arabidopsis thaliana) have reported conflicting roles for NAC DOMAIN ...
The highly ordered process of senescence forms the final stage of leaf development; a large set of s...
The highly ordered process of senescence forms the final stage of leaf development; a large set of s...
Mitochondria adjust their activities in response to external and internal stimuli to optimize growth...
Leaf senescence is a finely tuned and genetically programmed degeneration process, which is critical...
Mitochondria adjust their activities in response to external and internal stimuli to optimize growth...
Within the last decade, NAC transcription factors have been shown to play essential roles in senesce...
Within the last decade, NAC transcription factors have been shown to play essential roles in senesce...
Leaf senescence is an active and well-regulated degeneration process. Recent studies have shown that...
Leaf senescence is a genetically regulated developmental process that can be triggered by a variety ...
MasterANAC083 is a member of a NAC [No apical meristem (NAM), Arabidopsis transcription activation f...
Leaf senescence is finely tuned by many regulatory factors such as NAC (NAM/. ATAF/. CUC) transcript...
The Arabidopsis transcriptional factor NAC016 directly activates chlorophyll degradation during leaf...
Abstract The NAM, ATAF1/2, and CUC2 (NAC) domain transcription factor VND‐INTERACTING2 (VNI2) negati...
The NAC family is one of the largest families of plant-specific transcription factors (TFs) and NAC ...
Recent studies in Arabidopsis (Arabidopsis thaliana) have reported conflicting roles for NAC DOMAIN ...
The highly ordered process of senescence forms the final stage of leaf development; a large set of s...
The highly ordered process of senescence forms the final stage of leaf development; a large set of s...
Mitochondria adjust their activities in response to external and internal stimuli to optimize growth...
Leaf senescence is a finely tuned and genetically programmed degeneration process, which is critical...
Mitochondria adjust their activities in response to external and internal stimuli to optimize growth...
Within the last decade, NAC transcription factors have been shown to play essential roles in senesce...
Within the last decade, NAC transcription factors have been shown to play essential roles in senesce...
Leaf senescence is an active and well-regulated degeneration process. Recent studies have shown that...
Leaf senescence is a genetically regulated developmental process that can be triggered by a variety ...
MasterANAC083 is a member of a NAC [No apical meristem (NAM), Arabidopsis transcription activation f...
Leaf senescence is finely tuned by many regulatory factors such as NAC (NAM/. ATAF/. CUC) transcript...
The Arabidopsis transcriptional factor NAC016 directly activates chlorophyll degradation during leaf...
Abstract The NAM, ATAF1/2, and CUC2 (NAC) domain transcription factor VND‐INTERACTING2 (VNI2) negati...
The NAC family is one of the largest families of plant-specific transcription factors (TFs) and NAC ...