首页> 美国卫生研究院文献>Genes >Overexpression of the OsIMP Gene Increases the Accumulation of Inositol and Confers Enhanced Cold Tolerance in Tobacco through Modulation of the Antioxidant Enzymes’ Activities
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Overexpression of the OsIMP Gene Increases the Accumulation of Inositol and Confers Enhanced Cold Tolerance in Tobacco through Modulation of the Antioxidant Enzymes’ Activities

机译:OsIMP基因的过表达增加了肌醇的积累并通过调节抗氧化酶的活性而增强了烟草的耐寒性

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摘要

Inositol is a cyclic polyol that is involved in various physiological processes, including signal transduction and stress adaptation in plants. l-myo-inositol monophosphatase (IMPase) is one of the metal-dependent phosphatase family members and catalyzes the last reaction step of biosynthesis of inositol. Although increased IMPase activity induced by abiotic stress has been reported in chickpea plants, the role and regulation of the IMP gene in rice (Oryza sativa L.) remains poorly understood. In the present work, we obtained a full-length cDNA sequence coding IMPase in the cold tolerant rice landraces in Gaogonggui, which is named as OsIMP. Multiple alignment results have displayed that this sequence has characteristic signature motifs and conserved enzyme active sites of the phosphatase super family. Phylogenetic analysis showed that IMPase is most closely related to that of the wild rice Oryza brachyantha, while transcript analysis revealed that the expression of the OsIMP is significantly induced by cold stress and exogenous abscisic acid (ABA) treatment. Meanwhile, we cloned the 5’ flanking promoter sequence of the OsIMP gene and identified several important cis-acting elements, such as LTR (low-temperature responsiveness), TCA-element (salicylic acid responsiveness), ABRE-element (abscisic acid responsiveness), GARE-motif (gibberellin responsive), MBS (MYB Binding Site) and other cis-acting elements related to defense and stress responsiveness. To further investigate the potential function of the OsIMP gene, we generated transgenic tobacco plants overexpressing the OsIMP gene and the cold tolerance test indicated that these transgenic tobacco plants exhibit improved cold tolerance. Furthermore, transgenic tobacco plants have a lower level of hydrogen peroxide (H2O2) and malondialdehyde (MDA), and a higher content of total chlorophyll as well as increased antioxidant enzyme activities of superoxide dismutase (SOD), catalase (CAT) and peroxidase (POD), when compared to wild type (WT) tobacco plants under normal and cold stress conditions.
机译:肌醇是一种环状多元醇,它参与各种生理过程,包括植物中的信号转导和胁迫适应。 I-肌醇单磷酸酶(IMPase)是金属依赖性磷酸酶家族成员之一,催化肌醇生物合成的最后反应步骤。尽管在鹰嘴豆植物中已经报道了由非生物胁迫诱导的IMPase活性增加,但对水稻(Oryza sativa L.)中IMP基因的作用和调控的了解仍然很少。在目前的工作中,我们在高工桂耐寒水稻地方品种中获得了编码IMPase的全长cDNA序列,命名为OsIMP。多重比对结果表明,该序列具有特征性的特征基序和磷酸酶超家族的保守的酶活性位点。系统发育分析表明,IMPase与野生稻Oryza brachyantha的亲缘关系最密切,而转录本分析表明,冷胁迫和外源脱落酸(ABA)处理可显着诱导OsIMP的表达。同时,我们克隆了OsIMP基因的5'侧翼启动子序列,并鉴定了几个重要的顺式作用元件,例如LTR(低温响应性),TCA-元素(水杨酸响应性),ABRE-元素(脱落酸响应性) ,GARE-基序(对赤霉素有反应),MBS(MYB结合位点)和其他与防御和应激反应有关的顺式作用元件。为了进一步研究OsIMP基因的潜在功能,我们生成了过表达OsIMP基因的转基因烟草植株,耐寒性试验表明这些转基因烟草植株表现出提高的耐寒性。此外,转基因烟草植物的过氧化氢(H2O2)和丙二醛(MDA)含量较低,总叶绿素含量较高,并且超氧化物歧化酶(SOD),过氧化氢酶(CAT)和过氧化物酶(POD)的抗氧化酶活性增强),与正常和寒冷胁迫条件下的野生型(WT)烟草植物相比。

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