College of Life Science, State Key Laboratory of Crop Biology, Shandong Agricultural University, Shandong, Taian, People's Republic of China.
Department of Biological Engineering, Shandong Medicine Technician College, Taian, Shandong, People's Republic of China.
PLoS One. 2022 Jun 16;17(6):e0269028. doi: 10.1371/journal.pone.0269028. eCollection 2022.
Salt and drought stresses are major environmental conditions that severely limit grape growth and productivity, while exogenous melatonin can alleviate the drought and salt damage to grapevines. N-acetylserotonin methyltransferase (ASMT) is the key enzyme in melatonin synthesis, which plays a critical role in regulating stress responses. However, the roles of ASMTs from grapevine under drought and salt stresses responses remain largely unclear. In this study, the VvASMT1 gene was isolated from grapevine, and its physiological functions in salt and mimic drought stress tolerance were investigated. Expression pattern analysis revealed that VvASMT1 was significantly induced by different salt and osmotic stresses. Ectopic expression of VvASMT1 in Nicotiana benthamiana significantly enhanced melatonin production in transgenic plants. Compared with wild-type plants, the transgenic lines exhibited a higher germination ratio, longer root length, lower degree of leaf wilting and relative water content (RWC) under salt and osmotic stresses. In addition, under salt and osmotic stresses, overexpression of VvASMT1 improved proline and malondialdehyde (MDA) contents, increased the activity of antioxidant enzymes and decreased the accumulation of reactive oxygen species (ROS). Taken together, our results demonstrate the explicit role of VvASMT1 in salt and osmotic stress responses, which provides a theoretical foundation for the genetic engineering of grapevine.
盐和干旱胁迫是严重限制葡萄生长和产量的主要环境条件,而外源性褪黑素可以减轻葡萄对干旱和盐胁迫的伤害。N-乙酰血清素甲基转移酶(ASMT)是褪黑素合成的关键酶,在调节应激反应中起着关键作用。然而,葡萄中 ASMT 在干旱和盐胁迫响应中的作用在很大程度上尚不清楚。本研究从葡萄中分离出 VvASMT1 基因,并研究了其在盐和模拟干旱胁迫耐受中的生理功能。表达模式分析表明,VvASMT1 受不同盐和渗透胁迫的显著诱导。在本氏烟草中异位表达 VvASMT1 显著提高了转基因植物中褪黑素的产量。与野生型植物相比,在盐和渗透胁迫下,转基因系的发芽率更高,根长更长,叶片萎蔫程度和相对含水量(RWC)更低。此外,在盐和渗透胁迫下,过表达 VvASMT1 可提高脯氨酸和丙二醛(MDA)含量,增加抗氧化酶活性,减少活性氧(ROS)的积累。综上所述,我们的结果表明 VvASMT1 在盐和渗透胁迫响应中具有明确的作用,为葡萄的遗传工程提供了理论基础。