Chen Min, Dai Yani, Liao Jiamin, Wu Huan, Lv Qiang, Huang Yu, Liu Lichang, Feng Yu, Lv Hongxuan, Zhou Bo, Peng Dan
Faculty of Life Science and Biotechnology of Central South University of Forestry and Technology, 410004, Changsha, Hunan, China.
Huitong National Field Station for Scientific Observation and Research of Chinese Fir Plantation Ecosystem in Hunan Province, 438107, Huaihua, Hunan, China.
J Exp Bot. 2024 Apr 15;75(8):2214-2234. doi: 10.1093/jxb/erae005.
Plants have an incredible ability to sustain root and vascular growth after initiation of the embryonic root and the specification of vascular tissue in early embryos. Microarray assays have revealed that a group of transcription factors, TARGET OF MONOPTEROS (TMO), are important for embryonic root initiation in Arabidopsis. Despite the discovery of their auxin responsiveness early on, their function and mode of action remained unknown for many years. The advent of genome editing has accelerated the study of TMO transcription factors, revealing novel functions for biological processes such as vascular development, root system architecture, and response to environmental cues. This review covers recent achievements in understanding the developmental function and the genetic mode of action of TMO transcription factors in Arabidopsis and other plant species. We highlight the transcriptional and post-transcriptional regulation of TMO transcription factors in relation to their function, mainly in Arabidopsis. Finally, we provide suggestions for further research and potential applications in plant genetic engineering.
植物在胚胎根起始以及早期胚胎中维管组织特化之后,具有维持根系和维管生长的惊人能力。微阵列分析表明,一组转录因子,即单翼子叶靶标(TARGET OF MONOPTEROS,TMO),对拟南芥胚胎根的起始很重要。尽管很早就发现了它们对生长素的响应性,但多年来它们的功能和作用模式仍不清楚。基因组编辑技术的出现加速了对TMO转录因子的研究,揭示了它们在维管发育、根系结构以及对环境信号响应等生物学过程中的新功能。本综述涵盖了在理解拟南芥和其他植物物种中TMO转录因子的发育功能和遗传作用模式方面的最新成果。我们重点介绍了TMO转录因子与其功能相关的转录和转录后调控,主要是在拟南芥中的情况。最后,我们为植物基因工程的进一步研究和潜在应用提供了建议。