Plant Molecular Biology Laboratory, M. S. Swaminathan Research Foundation, III Cross Street, Taramani Institutional Area, Chennai, 600113, India.
Institute of Life Sciences (ILS), NALCO Square, Bhubaneswar, 751023, Odisha, India.
Plant Physiol Biochem. 2019 Jun;139:161-170. doi: 10.1016/j.plaphy.2019.03.014. Epub 2019 Mar 12.
Soil salinization is a major abiotic stress condition that affects about half of global agricultural lands. Salinity leads to osmotic shock, ionic imbalance and/or toxicity and build-up of reactive oxygen species. Na⁺/H⁺ antiporters (NHXs) are integral membrane transporters that catalyze the electro-neutral exchange of K⁺/Na⁺ for H⁺ and are implicated in cell expansion, development, pH/ion homeostasis and salt tolerance. Porteresia coarctata is a salt secreting halophytic wild rice that thrives in the coastal-riverine interface. P. coarctata NHX1 (PcNHXI) expression is induced by salinity in P. coarctata roots and shows high sequence identity to Oryza sativa NHX1. PcNHX1 confers hygromycin and Li sensitivity and Na tolerance transport in a yeast strain lacking sodium transport systems. Additionally, transgenic PcNHX1 expressing tobacco seedlings (PcNHX1 promoter) show significant growth advantage under increasing concentrations of NaCl and MS salts. Etiolated PcNHX1 seedlings also exhibit significantly elongated hypocotyl lengths in 100 mM NaCl. PcNHX1 expression in transgenic tobacco roots increases under salinity, similar to expression in P. coarctata roots. Under incremental salinity, transgenic lines show reduction in leaf Na, stem specific accumulation of Na and K (unaltered Na/K ratios). PcNHX1 transgenic plants also show enhanced chlorophyll content and reduced malondialdehyde (MDA) production in leaves under salinity. The above data suggests that PcNHX1 overexpression (controlled by PcNHX1p) enhances stem specific accumulation of Na, thereby protecting leaf tissues from salt induced injury.
土壤盐渍化是一种主要的非生物胁迫条件,影响了大约全球一半的农业用地。盐度会导致渗透冲击、离子失衡和/或毒性以及活性氧物质的积累。Na⁺/H⁺反向转运蛋白(NHXs)是一种完整的膜转运蛋白,它催化 K⁺/Na⁺与 H⁺的电中性交换,与细胞扩张、发育、pH/离子稳态和耐盐性有关。 Porteresia coarctata 是一种分泌盐的盐生野生稻,在沿海-河流交界处生长旺盛。P. coarctata NHX1(PcNHXI)的表达在 P. coarctata 的根部受到盐度的诱导,并且与 Oryza sativa NHX1 具有很高的序列同一性。PcNHX1 在缺乏钠离子转运系统的酵母菌株中赋予潮霉素和 Li 敏感性以及 Na 耐受性转运。此外,表达 PcNHX1 的转基因烟草幼苗(PcNHX1 启动子)在 NaCl 和 MS 盐浓度增加的情况下表现出显著的生长优势。在 100mM NaCl 中,暗培养的 PcNHX1 幼苗的下胚轴长度也显著延长。在盐胁迫下,转基因烟草根系中的 PcNHX1 表达增加,类似于 P. coarctata 根系中的表达。随着盐度的增加,转基因株系表现出叶片 Na 减少、茎部 Na 特异性积累和 K(不变的 Na/K 比)。PcNHX1 转基因植物在盐胁迫下还表现出增强的叶绿素含量和减少的叶片 MDA 产生。上述数据表明,PcNHX1 的过表达(受 PcNHX1p 控制)增强了茎部 Na 的特异性积累,从而保护叶片组织免受盐诱导的损伤。