ArticlePlant & cell physiology2025
Evolution of NAC transcription factors from early land plants to domesticated crops.
Article in Plant & cell physiology, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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Who cites it
10 citing papers in PubMed.
- Genome‑Wide Identification of NAC Transcription Factors in Elymus sibiricus and Functional Characterisation of EsNAC29 in Light Inhibition.Plant, cell & environment · 2026Article
- Molecular and transcriptional regulation of plant defense responses to aphid infestation.Stress biology · 2026Review
- Phylogenomic analysis supports the deep and gradual evolution of water-conducting tissues.Plant physiology · 2026Article
- Laminar patterning transcription factors orchestrate spatial metabolite partitioning in Capsicum fruit.Nature plants · 2026Article
- Structural, evolutionary and functional insights into the NAC gene family in Stevia rebaudiana and identification of important genes regulating steviol glycosides biosynthesis.BMC plant biology · 2026Article
- A staging framework to study rice female gametophyte development.Plant reproduction · 2026Article
- RNA-Seq-based transcriptomics reveals differential gene expression between two Pisum sativum subspecies and uncovers their molecular marker profiles.BMC genomics · 2025Article
- Genome landscape of the universal stress protein gene family in lettuce and expression profile in response to heat stress.BMC plant biology · 2025Article
- Genome-wide analysis of NAC transcription factors in grain amaranth reveals structural diversity and regulatory features.Scientific reports · 2025Article
- Linker histones enhance robustness in diurnal transcription dynamics.Quantitative plant biology · 2025Article
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Authors and funding
6 authors.
Funding
Abstract
NAC [NO APICAL MERISTEM (NAM), ARABIDOPSIS TRANSCRIPTION ACTIVATOR FACTOR 1/2 (ATAF1/2), and CUP-SHAPED COTYLEDON (CUC2)] transcription factors are key regulators of plant growth, development, and stress responses but were also crucial players during land plant adaptation and crop domestication. Using representative members of green algae, bryophytes, lycophytes, gymnosperms, and angiosperms, we expanded the evolutionary history of NAC transcription factors to unveil the relationships among members of this gene family. We found a massive increase in the number of NAC transcription factors from green algae to lycophytes and an even larger increase in flowering plants. Many of the NAC clades arose later during evolution since we found eudicot- and monocot-specific clades. Cis-elements analysis in NAC promoters showed the presence of abiotic and biotic stress as well as hormonal response elements, which indicate the ancestral function of NAC transcription factor genes in response to environmental stimuli and in plant development. At the transcriptional level, the expression of NAC transcription factors was low or absent in male reproduction, particularly mature pollen, across the plant kingdom. We also identified NAC genes with conserved expression patterns in response to heat stress in Marchantia polymorpha and Oryza sativa. Our study provides further evidence that transcriptional mechanisms associated with stress responses and development emerged early during plant land adaptation and are still conserved in flowering plants and domesticated crops.
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