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Overexpression of a Malus baccata NAC Transcription Factor Gene MbNAC25 Increases Cold and Salinity Tolerance in Arabidopsis

机译:过量表达海棠bac NAC转录因子基因MbNAC25增加拟南芥的耐寒和耐盐性

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摘要

NAC (no apical meristem (NAM), Arabidopsis thaliana transcription activation factor (ATAF1/2) and cup shaped cotyledon (CUC2)) transcription factors play crucial roles in plant development and stress responses. Nevertheless, to date, only a few reports regarding stress-related NAC genes are available in Borkh. In this study, the transcription factor in was isolated as a member of the plant-specific NAC family that regulates stress responses. Expression of was induced by abiotic stresses such as drought, cold, high salinity and heat. The ORF of is 1122 bp, encodes 373 amino acids and subcellular localization showed that MbNAC25 protein was localized in the nucleus. In addition, was highly expressed in new leaves and stems using real-time PCR. To analyze the function of in plants, we generated transgenic plants that overexpressed Under low-temperature stress (4 °C) and high-salt stress (200 mM NaCl), plants overexpressing enhanced tolerance against cold and drought salinity conferring a higher survival rate than that of wild-type (WT). Correspondingly, the chlorophyll content, proline content, the activities of antioxidant enzymes superoxide dismutase (SOD), peroxidase (POD) and catalase (CAT) were significantly increased, while malondialdehyde (MDA) content was lower. These results indicated that the overexpression of in plants improved the tolerance to cold and salinity stress via enhanced scavenging capability of reactive oxygen species (ROS).
机译:NAC(无顶端分生组织(NAM),拟南芥转录激活因子(ATAF1 / 2)和杯状子叶(CUC2))转录因子在植物发育和胁迫响应中起着至关重要的作用。然而,到目前为止,在Borkh中仅有少数关于与压力相关的NAC基因的报道。在这项研究中,转录因子作为调节压力反应的植物特异性NAC家族的一员被分离出来。非干旱胁迫(例如干旱,寒冷,高盐度和高温)诱导的表达。 ORF的ORF为1122 bp,编码373个氨基酸,亚细胞定位表明MbNAC25蛋白位于细胞核中。此外,使用实时PCR在新叶和茎中高表达。为了分析植物中的功能,我们生成了在低温胁迫(4°C)和高盐胁迫(200 mM NaCl)下过表达的转基因植物,过表达的植物对寒冷和干旱盐分的耐受性增强,从而赋予了更高的存活率。野生型(WT)。相应地,叶绿素含量,脯氨酸含量,抗氧化酶超氧化物歧化酶(SOD),过氧化物酶(POD)和过氧化氢酶(CAT)的活性显着增加,而丙二醛(MDA)的含量则降低。这些结果表明,植物中的过表达通过增强活性氧(ROS)的清除能力提高了对寒冷和盐碱胁迫的耐受性。

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