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首页> 外文期刊>Frontiers in Plant Science >Overexpression of LcSABP, an Orthologous Gene for Salicylic Acid Binding Protein 2, Enhances Drought Stress Tolerance in Transgenic Tobacco
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Overexpression of LcSABP, an Orthologous Gene for Salicylic Acid Binding Protein 2, Enhances Drought Stress Tolerance in Transgenic Tobacco

机译:水杨酸结合蛋白2的直系同源基因 LcSABP 的过量表达增强了转基因烟草的耐旱性

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Salicylic acid (SA) plays an essential role in the growth and development of plants, and in their response to abiotic stress. Previous studies have mostly focused on the effects of exogenously applied SA on the physiological response of plants to abiotic stresses; however, the underlying genetic mechanisms for the regulatory functions of endogenous SA in the defense response of plants remain unclear. In plants, SA binding protein 2 (SABP2), possessing methyl salicylate (MeSA) esterase activity, catalyzes the conversion of MeSA to SA. Herein, a SABP2 -like gene, LcSABP , was cloned from Lycium chinense , which contained a complete open reading frame of 795 bp and encoded a protein of 264 amino acids that shared high sequence similarities with SABP2 orthologs from other plants. Overexpression of LcSABP enhanced the drought tolerance of transgenic tobacco plants. The results indicated that increased levels of LcSABP transcripts and endogenous SA content were involved in the enhanced drought tolerance. Physiological and biochemical studies further demonstrated that higher chlorophyll content, increased photosynthetic capacity, lower malondialdehyde content, and higher activities of superoxide dismutase, peroxidase, and catalase enhanced the drought tolerance of transgenic plants. Moreover, overexpression of LcSABP also increased the expression of reactive oxygen species (ROS)- and stress-responsive genes under drought stress. Overall, our results demonstrate that LcSABP plays a positive regulatory role in drought stress response by enhancing the endogenous SA content, promoting the scavenging of ROS, and regulating of the expression of stress-related transcription factor genes. Our findings indicate that LcSABP functions as a major regulator of the plant’s response to drought stress through a SA-dependent defense pathway.
机译:水杨酸(SA)在植物的生长发育和对非生物胁迫的响应中起着至关重要的作用。先前的研究主要集中在外源施用SA对植物对非生物胁迫的生理反应的影响。然而,尚不清楚内源性SA在植物防御反应中调控功能的潜在遗传机制。在植物中,具有水杨酸甲酯(MeSA)酯酶活性的SA结合蛋白2(SABP2)催化MeSA向SA的转化。本文中,从枸杞中克隆了一个类似于SABP2的基因LcSABP,该基因包含一个完整的795 bp的开放阅读框,编码一个264个氨基酸的蛋白质,与其他植物的SABP2直系同源基因具有高度的序列相似性。 LcSABP的过表达增强了转基因烟草植物的耐旱性。结果表明,LcSABP转录本水平的增加和内源性SA含量与干旱耐受性增强有关。生理生化研究进一步表明,更高的叶绿素含量,更高的光合能力,更低的丙二醛含量以及更高的超氧化物歧化酶,过氧化物酶和过氧化氢酶活性增强了转基因植物的耐旱性。此外,在干旱胁迫下,LcSABP的过表达也增加了活性氧(ROS)和胁迫响应基因的表达。总体而言,我们的结果表明,LcSABP通过提高内源性SA含量,促进ROS的清除以及调节应激相关转录因子基因的表达,在干旱胁迫响应中发挥积极的调节作用。我们的发现表明,LcSABP通过依赖SA的防御途径,作为植物应对干旱胁迫的主要调节剂。

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