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首页> 外文期刊>Molecular biology reports >Cloning and characterization of Na+/H+ antiporter (LfNHX1) gene from a halophyte grass Leptochloa fusca for drought and salt tolerance
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Cloning and characterization of Na+/H+ antiporter (LfNHX1) gene from a halophyte grass Leptochloa fusca for drought and salt tolerance

机译:盐生植物草天南星耐旱和耐盐的Na + / H +反向转运蛋白(LfNHX1)基因的克隆与鉴定

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摘要

Abiotic stresses such as salinity and drought have adverse effects on plants. In the present study, a Na+/H+ antiporter gene homologue (LfNHX1) has been cloned from a local halophyte grass (Leptochloa fusca). The LfNHX1 cDNA contains an open reading frame of 1,623 bp that encodes a polypeptide chain of 540 amino acid residues. LfNHX1 protein sequence showed high similarity with NHX1 homologs reported from other halophyte plants. Amino acid and nucleotide sequence similarity, protein topology modeling and the presence of conserved functional domains in the LfNHX1 protein sequence classified it as a vacuolar NHX1 homolog. The overexpression of LfNHX1 gene under CaMV35S promoter conferred salt and drought tolerance in tobacco plants. Under drought stress, transgenic plants showed higher relative water contents, photosynthetic rate, stomatal conductance and membrane stability index as compared to wild type plants. More negative value of leaf osmotic potential was also observed in transgenic plants when compared with wild type control plants. Transgenic plants showed better germination and root growth at 2 mg L-1 Basta herbicide and three levels (100, 200 and 250 mM) of sodium chloride. These results showed that LfNHX1 is a potential candidate gene for enhancing drought and salt tolerance in crops.
机译:盐度和干旱等非生物胁迫对植物产生不利影响。在本研究中,已从本地盐生植物草(Leptochloa fusca)克隆了Na + / H +反转运蛋白基因同源物(LfNHX1)。 LfNHX1 cDNA包含一个1,623 bp的开放阅读框,其编码540个氨基酸残基的多肽链。 LfNHX1蛋白序列与其他盐生植物报道的NHX1同源物具有高度相似性。氨基酸和核苷酸序列相似性,蛋白质拓扑建模以及LfNHX1蛋白质序列中保守功能域的存在将其归类为液泡NHX1同源物。 CaMV35S启动子下LfNHX1基因的过量表达赋予烟草植物盐分和干旱耐受性。与野生型植物相比,在干旱胁迫下,转基因植物显示出更高的相对含水量,光合速率,气孔导度和膜稳定性指数。与野生型对照植物相比,在转基因植物中还观察到了更多的叶片渗透势负值。转基因植物在2 mg L-1 Basta除草剂和三种水平(100、200和250 mM)的氯化钠下表现出更好的发芽和根系生长。这些结果表明,LfNHX1是增强作物抗旱和耐盐性的潜在候选基因。

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