首页> 外文期刊>Acta Physiologiae Plantarum >Overexpression of Rosa roxburghii l-galactono-1,4-lactone dehydrogenase in tobacco plant enhances ascorbate accumulation and abiotic stress tolerance
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Overexpression of Rosa roxburghii l-galactono-1,4-lactone dehydrogenase in tobacco plant enhances ascorbate accumulation and abiotic stress tolerance

机译:烟草植物中Rosa roxburghii l-galactono-1,4-内酯脱氢酶的过表达增强了抗坏血酸的积累和非生物胁迫的耐受性

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摘要

L-Galactono-1, 4-lactone dehydrogenase (GalLDH; EC 1.3.2.3) is the last key enzyme in the putative l-ascorbic acid (AsA) biosynthetic pathway of higher plants. To evaluate the effect of the gene on manipulating AsA accumulation, a cDNA encoding GalLDH(RrGalLDH, Acc. No. AY643403), isolated from Rosa roxburghii fruit known to be rich in AsA, was introduced into tobacco plants by Agrobacterium-mediated transformation under CaMV 35S constitutive promoter in the present study. Southern blotting revealedthe stable integration of the transgene with single copy in four independent transgenic lines, among which, L3 and L4 showed the significantly enhanced RrGalLDH transcript levels, GalLDH activities and AsA accumulations as compared to untransformed (WT)plants. So, we developed the AsA-overproducing tobacco plant by overexpressing GalLDH. As exposed to salt stress (100 mM NaCl), these AsA-overproducing transgenic lines were found to grow better with increased shoot length and fresh weight than WT. Furthermore, L3, which demonstrated the highest AsA accumulation (2.1-fold higher than WT) and expression level of RrGalLDH, showed a higher resistance to oxidative stress caused by paraquat when compared to WT. These results further justify that the overexpression of GalLDH gene confers an elevated AsA accumulation and tolerance against environmental stresses.
机译:L-Galactono-1,4-内酯脱氢酶(GalLDH; EC 1.3.2.3)是高等植物推定的I-抗坏血酸(AsA)生物合成途径中的最后一个关键酶。为了评估该基因对操纵AsA积累的影响,从土壤中富含AsA的Rosa roxburghii果实中分离出的编码GalLDH(RrGalLDH,Acc。No. AY643403)的cDNA通过农杆菌介导的CaMV转化被引入烟草植株。本研究中的35S组成型启动子。 Southern印迹揭示了单基因转基因在四个独立转基因系中的稳定整合,其中L3和L4与未转化(WT)植物相比显示出显着增强的RrGalLDH转录物水平,GalLDH活性和AsA积累。因此,我们通过过度表达GalLDH来开发出生产AsA的烟草工厂。与盐胁迫相比,暴露于盐胁迫(100 mM NaCl)时,这些高产AsA的转基因品系随着芽长和鲜重的增加而生长得更好。此外,L3表现出最高的AsA积累(比WT高2.1倍)和RrGalLDH的表达水平,与WT相比,对百草枯引起的氧化应激具有更高的抵抗力。这些结果进一步证明了GalLDH基因的过量表达赋予了较高的AsA积累和对环境压力的耐受性。

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