State Key Laboratory of Tree Genetics and Breeding, Northeast Forestry University, Harbin 150040, China.
Co-Innovation Center for Sustainable Forestry in Southern China, Nanjing Forestry University, 159 Longpan Road, Nanjing 210037, China.
Int J Mol Sci. 2023 May 19;24(10):8985. doi: 10.3390/ijms24108985.
The NAC transcription factor family is well known to play vital roles in plant development and stress responses. For this research, a salt-inducible NAC gene, (Po-tri.016G076100.1), was successfully isolated from . PsnNAC090 contains the same motifs at the N-terminal end of the highly conserved NAM structural domain. The promoter region of this gene is rich in phytohormone-related and stress response elements. Transient transformation of the gene in the epidermal cells of both tobacco and onion showed that the protein was targeted to the whole cell including the cell membrane, cytoplasm and nucleus. A yeast two-hybrid assay demonstrated that PsnNAC090 has transcriptional activation activity with the activation structural domain located at 167-256aa. A yeast one-hybrid experiment showed that PsnNAC090 protein can bind to ABA-responsive elements (ABREs). The spatial and temporal expression patterns of under salt and osmotic stresses indicated that the gene was tissue-specific, with the highest expression level in the roots of . We successfully obtained a total of six transgenic tobacco lines overexpressing . The physiological indicators including peroxidase (POD) activity, superoxide dismutase (SOD) activity, chlorophyll content, proline content, malondialdehyde (MDA) content and hydrogen peroxide (HO) content were measured in three transgenic tobacco lines under NaCl and polyethylene glycol (PEG) 6000 stresses. The findings reveal that improves salt and osmotic tolerance by enhancing reactive oxygen species (ROS) scavenging and reducing membrane lipid peroxide content in transgenic tobacco. All the results suggest that the gene is a potential candidate gene playing an important role in stress response.
NAC 转录因子家族在植物发育和应激反应中起着至关重要的作用。在这项研究中,成功地从 中分离出一个盐诱导的 NAC 基因, (Po-tri.016G076100.1)。PsnNAC090 在高度保守的 NAM 结构域的 N 端末端具有相同的基序。该基因的启动子区域富含植物激素相关和应激反应元件。在烟草和洋葱的表皮细胞中瞬时转化该基因表明,该蛋白靶向整个细胞,包括细胞膜、细胞质和细胞核。酵母双杂交试验表明,PsnNAC090 具有转录激活活性,激活结构域位于 167-256aa。酵母单杂交实验表明,PsnNAC090 蛋白可以与 ABA 响应元件 (ABREs) 结合。在盐和渗透胁迫下 的时空表达模式表明,该基因具有组织特异性,在 的根中表达水平最高。我们成功获得了总共六个过表达 的转基因烟草品系。在 NaCl 和聚乙二醇 (PEG) 6000 胁迫下,测量了三个转基因烟草品系中的过氧化物酶 (POD) 活性、超氧化物歧化酶 (SOD) 活性、叶绿素含量、脯氨酸含量、丙二醛 (MDA) 含量和过氧化氢 (HO) 含量等生理指标。结果表明, 通过增强活性氧 (ROS) 清除和降低转基因烟草中膜脂过氧化物含量,提高了盐和渗透胁迫耐受性。所有结果表明, 基因是一个在应激反应中起重要作用的潜在候选基因。