Xu Yanxia, Ma Li, Zeng Xiucun, Xu Yaozhao, Tao Xiaolei, Fahim Abbas Muhammad, Liu Lijun, Wu Junyan, Yang Gang, Pu Yuanyuan, Fan Tingting, Wang Wangtian, Sun Wancang
State Key Laboratory of Aridland Crop Science, College of Agronomy, Gansu Agricultural University, Lanzhou 730070, China.
College of Life Sciences and Engineering, Hexi University, Zhangye 734000, China.
Int J Mol Sci. 2024 Dec 19;25(24):13592. doi: 10.3390/ijms252413592.
TCP transcription factors are important during plant growth and stress responses. However, their role in the cold stress response of L. remains poorly understood. In this research, we identified the gene family in to learn the features of the gene family, functionally annotating the interacting proteins of TCP4 and analyzing their expression levels. Our results illustrated the presence of 19 members of the family in , exhibiting molecular weights ranging from 27,367.45 to 59,433.64 Da. All identified proteins were classified as unstable, with isoelectric points ranging from 5.5 to 9.48. Subcellular localization forecasted that TCP proteins were all positioned in the nucleus. The gene structure is relatively simple, with only seven members possessing introns, and none of the members contain UTR regions. comprise hormone-, light-, and stress-responsive elements. We found that the frequency of photoresponsive elements was greatest in the promoter region, suggesting that genes are regulated by light signals and function synergistically with plant growth and development. In addition, five candidate interaction proteins of were identified using yeast two-hybrid screening. RNA-Seq and q-PCR analyses of the interacting genes revealed differential expression of family genes across various tissues following cold stress. Significant responses were observed under low-temperature stress, drought stress, and rehydration treatment, suggesting that these genes play crucial roles as regulators of the molecular network mechanisms responding to stress. This study enhances our understanding of the family and provides significant insights into the stress tolerance mechanisms of
TCP转录因子在植物生长和应激反应过程中很重要。然而,它们在L.的冷应激反应中的作用仍知之甚少。在本研究中,我们在中鉴定了基因家族,以了解该基因家族的特征,对TCP4的相互作用蛋白进行功能注释并分析它们的表达水平。我们的结果表明中该家族有19个成员,分子量范围为27,367.45至59,433.64 Da。所有鉴定出的蛋白质都被归类为不稳定蛋白,等电点范围为5.5至9.48。亚细胞定位预测TCP蛋白都定位于细胞核。该基因结构相对简单,只有七个成员含有内含子,且没有成员包含UTR区域。包含激素、光和应激反应元件。我们发现启动子区域中光反应元件的频率最高,表明基因受光信号调控,并与植物生长发育协同发挥作用。此外,通过酵母双杂交筛选鉴定出了五个TCP的候选相互作用蛋白。对相互作用基因的RNA-Seq和q-PCR分析揭示了冷应激后该家族基因在不同组织中的差异表达。在低温胁迫、干旱胁迫和复水处理下观察到显著反应,表明这些基因作为应激反应分子网络机制的调节因子发挥关键作用。本研究增进了我们对该家族的理解,并为的抗逆机制提供了重要见解