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Overexpression of the PtSOS2 gene improves tolerance to salt stress in transgenic poplar plants

机译:PtSOS2基因的过表达提高了转基因杨树植物对盐胁迫的耐受性

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In higher plants, the salt overly sensitive (SOS) signalling pathway plays a crucial role in maintaining ion homoeostasis and conferring salt tolerance under salinity condition. Previously, we functionally characterized the conserved SOS pathway in the woody plant Populus trichocarpa . In this study, we demonstrate that overexpression of the constitutively active form of PtSOS2 ( PtSOS2TD ), one of the key components of this pathway, significantly increased salt tolerance in aspen hybrid clone Shanxin Yang ( Populus davidiana ???? Populus bolleana ). Compared to the wild?¢????type control, transgenic plants constitutively expressing PtSOS2TD exhibited more vigorous growth and produced greater biomass in the presence of high concentrations of NaCl. The improved salt tolerance was associated with a decreased Na + accumulation in the leaves of transgenic plants. Further analyses revealed that plasma membrane Na + /H + exchange activity and Na + efflux in transgenic plants were significantly higher than those in the wild?¢????type plants. Moreover, transgenic plants showed improved capacity in scavenging reactive oxygen species (ROS) generated by salt stress. Taken together, our results suggest that PtSOS2 could serve as an ideal target gene to genetically engineer salt?¢????tolerant trees.
机译:在高等植物中,盐分过高的(SOS)信号传导途径在维持盐碱条件下的离子同质化和赋予盐耐性中起着至关重要的作用。以前,我们在功能上描述了木本植物Populus trichocarpa中保守的SOS途径。在这项研究中,我们证明了PtSOS2的组成型活性形式(PtSOS2TD)的过度表达是该途径的关键组成部分,在白杨杂种无性系山西杨(Populus davidiana ???? Populus bolleana)中显着提高了耐盐性。与野生型对照相比,组成型表达PtSOS2TD的转基因植物在高浓度的NaCl存在下表现出更旺盛的生长并产生更大的生物量。耐盐性的提高与转基因植物叶片中Na +积累的减少有关。进一步的分析表明,转基因植物中的质膜Na + / H +交换活性和Na +外排显着高于野生型植物。此外,转基因植物在清除盐胁迫产生的活性氧(ROS)方面显示出更高的能力。两者合计,我们的结果表明,PtSOS2可以作为理想的目标基因来遗传工程耐盐碱化树木。

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