ArticleBMC plant biology2023
Genome-wide identification of the NAC gene family and its functional analysis in Liriodendron.
Article in BMC plant biology, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 16 papers.
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Who cites it
16 citing papers in PubMed, 23 citations in OpenAlex.
- Genome-Wide Identification and Characterization of NAC Transcription Factors in Avocado (Genes · 2026Article
- CeOPlant molecular biology · 2026Review
- Genome-wide identification of NAC gene family in pecan and its expression patterns during graft healing.BMC plant biology · 2026Article
- Genome-wide analysis identifies LliNAC80 as a potential key regulator of abiotic stress resilience in endangered mangrove Lumnitzera littorea.BMC plant biology · 2026Article
- Cold Stress Responses and Adaptation Mechanisms inPlants (Basel, Switzerland) · 2026Review
- Genome-Wide Identification and Functional Studies of the APX Gene Family in Oat (Life (Basel, Switzerland) · 2026Article
- Lipid metabolic pathways and the roles of candidate transcription factors identified via lipidomic and transcriptomic analyses at various stages of seed development in Carya illinoinensis.BMC plant biology · 2026Article
- Transcriptomic response of the wild plantOpen life sciences · 2026Article
- Genome identification of NAC gene family and its gene expression patterns in responding to salt and drought stresses in Rhododendron delavayi.BMC plant biology · 2025Article
- Genome-Wide Characterization and Expression Analysis of the Cysteine-Rich Polycomb-like Protein Gene Family in Response to Hormone Signaling in Apple (International journal of molecular sciences · 2025Article
- Genome-wide identification, structural characterization and expression profiling of AP2/ERF gene family in bayberry (Myrica rubra).BMC plant biology · 2024Article
- Genome-Wide Identification ofGenes · 2024Article
- Transcriptional Control of Seed Life: New Insights into the Role of the NAC Family.International journal of molecular sciences · 2024Review
- PnNAC2 promotes the biosynthesis of Panax notoginseng saponins and induces early flowering.Plant cell reports · 2024Article
- Genome-wide identification and characterization of NAC transcription factor family members in Trifolium pratense and expression analysis under lead stress.BMC genomics · 2024Article
- Genome-wide identification of the NAC family inFrontiers in plant science · 2024Article
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Authors and funding
9 authors at 1 institution in 1 country.
Funding
Abstract
As one of the largest plant specific transcription factor families, NAC family members play an important role in plant growth, development and stress resistance. To investigate the function of NAC transcription factors during abiotic stress, as well as during somatic embryogenesis, we identified and characterized the NAC gene family in Liriodendron chinense. We found that most LcNAC members contain more than three exons, with a relatively conserved gene and motif structure, especially at the N-terminus. Interspecies collinearity analysis revealed a closer relationship between the L. chinense NACs and the P. trichocarpa NACs. We analyzed the expression of LcNAC in different tissues and under three abiotic stresses. We found that 12 genes were highly expressed during the ES3 and ES4 stages of somatic embryos, suggesting that they are involved in the development of somatic embryos. 6 LcNAC genes are highly expressed in flower organs. The expression pattern analysis of LcNACs based on transcriptome data and RT-qPCR obtained from L. chinense leaves indicated differential expression responses to drought, cold, and heat stress. Genes in the NAM subfamily expressed differently during abiotic stress, and LcNAC6/18/41/65 might be the key genes in response to abiotic stress. LcNAC6/18/41/65 were cloned and transiently transformed into Liriodendron protoplasts, where LcNAC18/65 was localized in cytoplasm and nucleus, and LcNAC6/41 was localized only in nucleus. Overall, our findings suggest a role of the NAC gene family during environmental stresses in L. chinense. This research provides a basis for further study of NAC genes in Liriodendron chinense.
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