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Published on: February 9, 2024
Genome-Wide Analysis of NAC Transcription Factor Genes in the Invasive Weed Mikania micrantha Provides Insights into
Wenzheng Song1, Yan'e Ding1, Liying Yang2
1College of Biological Science and Food Engineering, Southwest Forestry University, Kunming 650224, China.
Abstract:
M. micrantha is a highly destructive invasive weed causing severe ecological and economic damage in invaded regions. Conventional control methods remain insufficient, highlighting the need for targeted management strategies. NAC transcription factors, a plant-specific family, play key regulatory roles in growth, secondary metabolism, and stress responses. Here, we performed a genome-wide identification and characterization of the NAC gene family in M. micrantha using bioinformatic approaches based on Arabidopsis thaliana NAC sequences and the M. micrantha whole-genome assembly. A total of 76 MmNAC genes were identified from M. micrantha, and these members were classified into 13 subfamilies and one unclassified clade, with subdomains C and D being the most conserved. Five conserved motifs were identified; motifs 1 and 2 were present in over 94% of members. Chromosomal mapping showed 68 genes distributed unevenly across 18 of 19 chromosomes. Tissue expression analysis revealed that NAP and AtNAC3 subfamilies are highly expressed in seeds, while NAM and NAC2 subfamilies predominate in floral tissues, suggesting potential subfamily-tissue expression patterns. These findings provide a basis for understanding NAC functions in M. micrantha and identifying targets for its control.
