首页> 美国卫生研究院文献>PLoS Clinical Trials >Cloning and Functional Characterization of a Vacuolar Na+/H+ Antiporter Gene from Mungbean (VrNHX1) and Its Ectopic Expression Enhanced Salt Tolerance in Arabidopsis thaliana
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Cloning and Functional Characterization of a Vacuolar Na+/H+ Antiporter Gene from Mungbean (VrNHX1) and Its Ectopic Expression Enhanced Salt Tolerance in Arabidopsis thaliana

机译:拟南芥Vacular Na + / H +反转运蛋白基因(VrNHX1)的克隆,功能表征及其异位表达增强了拟南芥的耐盐性

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摘要

Plant vacuolar NHX exchangers play a significant role in adaption to salt stress by compartmentalizing excess cytosolic Na+ into vacuoles and maintaining cellular homeostasis and ionic equilibrium. We cloned an orthologue of the vacuolar Na+/H+ antiporter gene, VrNHX1 from mungbean (Vigna radiata), an important Asiatic grain legume. The VrNHX1 (Genbank Accession number ) contains 2095 nucleotides with an open reading frame of 1629 nucleotides encoding a predicted protein of 542 amino acids with a deduced molecular mass of 59.6 kDa. The consensus amiloride binding motif (84LFFIYLLPPI93) was observed in the third putative transmembrane domain of VrNHX1. Bioinformatic and phylogenetic analysis clearly suggested that VrNHX1 had high similarity to those of orthologs belonging to Class-I clade of plant NHX exchangers in leguminous crops. VrNHX1 could be strongly induced by salt stress in mungbean as the expression in roots significantly increased in presence of 200 mM NaCl with concomitant accumulation of total [Na+]. Induction of VrNHX1 was also observed under cold and dehydration stress, indicating a possible cross talk between various abiotic stresses. Heterologous expression in salt sensitive yeast mutant AXT3 complemented for the loss of yeast vacuolar NHX1 under NaCl, KCl and LiCl stress indicating that VrNHX1 was the orthologue of ScNHX1. Further, AXT3 cells expressing VrNHX1 survived under low pH environment and displayed vacuolar alkalinization analyzed using pH sensitive fluorescent dye BCECF-AM. The constitutive and stress inducible expression of VrNHX1 resulted in enhanced salt tolerance in transgenic Arabidopsis thaliana lines. Our work suggested that VrNHX1 was a salt tolerance determinant in mungbean.
机译:植物液泡NHX交换剂通过将过量的胞质Na + 分隔为液泡并维持细胞稳态和离子平衡,在适应盐胁迫中起重要作用。我们从绿豆(Vigna radiata)(一种重要的亚洲豆科植物)中克隆了液泡的Na + / H + 反向转运蛋白VrNHX1的直系同源物。 VrNHX1(Genbank登录号)包含2095个核苷酸,其开放阅读框为1629个核苷酸,编码的预测蛋白质为542个氨基酸,推定分子量为59.6 kDa。在VrNHX1的第三个推定跨膜结构域中观察到共有阿米洛利的结合基序( 84 LFFIYLLPPI 93 )。生物信息学和系统发育分析清楚地表明,VrNHX1与豆科植物植物NHX交换子的I类进化枝的直系同源物具有高度相似性。在200 mM NaCl的存在下,根系中根系的表达显着增加,并伴随总[Na + ]的积累,绿豆可能受到盐胁迫强烈诱导VrNHX1的表达。在寒冷和脱水胁迫下也观察到VrNHX1的诱导,表明各种非生物胁迫之间可能存在串扰。在NaCl,KCl和LiCl胁迫下,盐敏感性酵母突变体AXT3中的异源表达补充了酵母液泡NHX1的丢失,表明VrNHX1是ScNHX1的直系同源物。此外,表达VrNHX1的AXT3细胞在低pH环境下存活,并显示出使用pH敏感的荧光染料BCECF-AM分析的液泡碱化。 VrNHX1的本构和应激诱导表达在转基因拟南芥品系中提高了耐盐性。我们的工作表明,VrNHX1是绿豆中耐盐性的决定因素。

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