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首页> 外文期刊>Russian Journal of Plant Physiology >Overexpression of Malus hupehensis MhSHN1 Gene Enhances Salt and Osmotic Stress Tolerance in Transgenic Tobacco Plants
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Overexpression of Malus hupehensis MhSHN1 Gene Enhances Salt and Osmotic Stress Tolerance in Transgenic Tobacco Plants

机译:Malus Hupehensis MHSHN1基因的过表达增强了转基因烟草植物中的盐和渗透胁迫耐受性

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Plant APETALA2/Ethylene-responsive element binding factor (AP2/ERF) transcription factor involved in various biological functions such as plant development, flower development, fruit and seed maturation, wounding, pathogen defense, high salty, drought, and so on. Here, we reported the function analysis of an AP2/ERF member, MhSHN1, from Malus hupehensis (Pamp.) Rehder. The MhSHN1 gene has a total of 1171 bp and consists of two exons of 81 and 531 bp, one intron of 559 bp. Phylogenetic analysis indicated MhSHN1 belongs to group V. The expression of MhSHN1 was highest in flower, then in seed and fruit, with low expression in root, leaves and stems. The MhSHN1 transcripts were barely affected by jasmonic acid (JA) and 1-aminocyclopropane- 1-carboxylic acid (ACC) within the first 48 h of treatment. Salicylic acid (SA) and abscisic acid (ABA) induce significantly the expression of MhSHN1. MhSHN1 mRNA levels were increased in response to mannitol and salt treatments. However, low temperature could not induce the expression of MhSHN1 gene. Overexpression of the MhSHN1 gene does not regulate seed germination but does positively regulate plant tolerance to salt and osmotic stresses at the stage of seed germination. These results showed the MhSHN1 gene play key role in resistance to mannitol and salt stresses in M. hupehensis.
机译:植物Apetala2 /乙烯响应元件结合因子(AP2 / ERF)涉及各种生物学功能的转录因子,如植物发育,花卉发育,水果和种子成熟,伤害,病原体防御,高咸,干旱等。在这里,我们报告了AP2 / ERF成员,MHSHN1,来自Malus Hupehensis(PAMP)的功能分析。 MHSHN1基因总共1171bp,由81和531磅的两种外显子组成,一个559 bp的内含子。系统发育分析表明MHSHN1属于V组。MHSHN1的表达在花中最高,然后在种子和果实中,具有根,叶和茎的低表达。在前48小时内,MHSHN1转录物几乎没有受茉莉酸(JA)和1-氨基环丙烷-1-羧酸(ACC)的影响。水杨酸(SA)和脱落酸(ABA)显着诱导MHSHN1的表达。对于甘露醇和盐治疗,MHSHN1 mRNA水平增加。然而,低温不能诱导MHSHN1基因的表达。 MHSHN1基因的过度表达不调节种子萌发,但在种子萌发阶段确实呈正调节植物耐受性和渗透胁迫。这些结果表明,MHSHN1基因在血红英中对甘露醇和盐胁迫的抗性作用。

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