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    灰杨PcAHL15正调控拟南芥对盐胁迫的耐受能力

    Populus × canescens PcAHL15 positively regulates salt stress tolerance in Arabidopsis thaliana

    • 摘要:
      目的 探究灰杨AT-hook基序核定位蛋白PcAHL15在响应盐胁迫中的功能,为杨树抗逆遗传改良提供理论依据。
      方法 从灰杨中克隆了PcAHL15基因,并对其进行系统进化分析;通过亚细胞定位和RT-qPCR技术检测其表达模式;在拟南芥中异源过表达PcAHL15,并在盐胁迫条件下比较过表达植株与野生型、转空载体植株的表型差异,测定其形态指标、生物量以及生理指标。
      结果 (1)系统进化分析表明,灰杨PcAHL15与银白杨和毛果杨中的同源蛋白亲缘关系最近。(2)盐胁迫处理下,灰杨根、茎、叶中PcAHL15基因的表达水平均发生显著变化。(3)与野生型和转空载体对照相比,过表达PcAHL15的拟南芥株系在盐胁迫下表现出更强的耐受性,具体表现为:叶片黄化萎蔫程度减轻、根长与种子萌发率显著增加、细胞膜受损程度降低、以及钠离子(Na+)积累量减少。
      结论 灰杨PcAHL15基因在植物盐胁迫应答中发挥正调控作用,其过表达能显著增强拟南芥的耐盐性。

       

      Abstract:
      Objective This study aims to elucidate the function of Populus × canescens AT-hook motif nuclear localization protein PcAHL15 in plant salt stress response, so as to provide a theoretical basis for the genetic improvement of stress resistance in poplar.
      Method The PcAHL15 gene was cloned from P. × canescens; phylogenetic analysis of PcAHL15 was conducted; the expression pattern of PcAHL15 was detected via subcellular localization and RT-qPCR; PcAHL15 was heterologously expressed in Arabidopsis thaliana, and under salt stress, phenotypic identification was performed on transgenic lines, with morphological indices, biomass accumulation, and physiological indicators measured.
      Result (1) P. × canescens PcAHL15 is most closely related to P. alba and P. trichocarpa. (2) Under salt stress, the expression level of PcAHL15 in the roots, stems, and leaves of P. × canescens was significantly altered. (3) Compared with wild-type and empty vector-transformed lines, the PcAHL15-overexpressing lines exhibited alleviated leaf yellowing and wilting, increased root length, higher seed germination rate, reduced cell membrane damage, and decreased Na+ accumulation.
      Conclusion Populus × canescens PcAHL15 positively regulates plant salt stress responses, and its overexpression confers a significant enhancement of salt tolerance in Arabidopsis.

       

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