Zhang Huan, Zhao Jia, Zhang Tongxing, Wang Guiying, Han Zhixiao, Meng Yuemei, Bi Jingran, Ren Yachao, Yang Minsheng
Institute of Forest Biotechnology, Forestry College, Hebei Agricultural University, Baoding, China.
Hebei Key Laboratory for Tree Genetic Resources and Forest Protection, Baoding, China.
Front Plant Sci. 2025 Jun 4;16:1592898. doi: 10.3389/fpls.2025.1592898. eCollection 2025.
The plant-specific NAC transcription factor family has the largest number of members, they are involved in regulating the entire process of plant growth and development, and the responses to biotic and abiotic stressors. This article reviews the progress regarding the elucidation of the structure and function of the NAC transcription factor family and the regulatory mechanisms through which NAC transcription factors affect various processes in woody plants, including the formation of the secondary cell wall, seed development, flowering, and fruit ripening. Additionally, this article encompasses the current research status of NAC transcription factors in response to abiotic stressors, such as salt and drought, as well as biotic stressors, such as pathogens and pests in woody plants. Most of the research is still at the stages of gene cloning, structural identification, and functional analysis; the specific downstream target genes and their molecular mechanisms remain unclear. Future research should focus on exploring unknown functions and action mechanisms, to promote an understanding of the regulatory network of NAC transcription factors in woody plants, thereby providing a theoretical basis and gene resources for research on NAC transcription factors and the creation of new forest germplasm.
植物特有的NAC转录因子家族成员数量最多,它们参与调控植物生长发育的全过程以及对生物和非生物胁迫的响应。本文综述了NAC转录因子家族结构与功能的解析进展,以及NAC转录因子影响木本植物各种生理过程的调控机制,包括次生细胞壁的形成、种子发育、开花和果实成熟。此外,本文还涵盖了NAC转录因子在木本植物中响应盐、干旱等非生物胁迫以及病原体和害虫等生物胁迫的研究现状。大部分研究仍处于基因克隆、结构鉴定和功能分析阶段;具体的下游靶基因及其分子机制尚不清楚。未来的研究应集中于探索未知功能和作用机制,以增进对木本植物中NAC转录因子调控网络的理解,从而为NAC转录因子研究和新林木种质创制提供理论依据和基因资源。