<p>The WT and transgenic lines (L2, L5 and L7) were grown in pots under normal condition for 4 weeks and then leaves of plants were harvested as controls. Then, the WT and transgenic soybeans were treated with 300 mM NaCl three times with 48 hours interval, while leaves were harvested at 0, 3rd, 6th and 9th days for free proline and soluble sugars content analysis, Data represented the average of three replicates ± SE. *indicated significant difference in comparison to the WT at <i>P</i><0.05, respectively.</p
<p>A, the phenotypic changes before (upper panel) and after NaCl treatment (lower panel); B, fresh w...
<p>(A) Representative picture that shows phenotype differences of leaf discs between WT and transgen...
<p>A) Root length and cotyledon greening rate of <i>EcbHLH57</i> expressing transgenic and wild type...
<p>(A) Phenotype before salt stress. (B) Phenotype after 10 days of salt treatment. (C) Phenotype af...
<p><b>A</b>) The performance of transgenic lines (L4, L6, and L11) and WT in 150 mM, 175 mM NaCl pla...
<p>Chlorophyll (A), Electrolyte leakage (B), and proline (C) contents of transgenic (L11, L17 and L2...
<p>Different biochemical parameters such as proline, MDA and H<sub>2</sub>O<sub>2</sub> was determin...
<p>(A) Phenotypes of WT and transgenic plants 21 d after treatment with 200 mM NaCl. Plants shown we...
<p>Estimation of (a) RWC, (b) lipid peroxidation, (c) electrolyte leakage and (d) proline content fr...
<p>Comparison of (a) H<sub>2</sub>O<sub>2</sub>, (b) Proline and (c) MDA content of wild type (WT) a...
<p>Estimation of electrolyte leakage (A), lipid peroxidation (B), proline (C), chlorophyll a (D), ch...
<p>(A) Phenotype of WT and TG tobacco after 3 weeks of 400 mM NaCl treatment; (B) Rate of leaf yello...
<p>(A) Rate of water loss from <i>GhSnRK2</i> transgenic plants. Six plants of each transgenic and W...
<p>(A) Quantitative real-time PCR of the T<sub>2</sub> transgenic soybean plants. (B) Disease sympto...
<p>Leaves from plants treated with salt stress were collected and subjected to the determination. (A...
<p>A, the phenotypic changes before (upper panel) and after NaCl treatment (lower panel); B, fresh w...
<p>(A) Representative picture that shows phenotype differences of leaf discs between WT and transgen...
<p>A) Root length and cotyledon greening rate of <i>EcbHLH57</i> expressing transgenic and wild type...
<p>(A) Phenotype before salt stress. (B) Phenotype after 10 days of salt treatment. (C) Phenotype af...
<p><b>A</b>) The performance of transgenic lines (L4, L6, and L11) and WT in 150 mM, 175 mM NaCl pla...
<p>Chlorophyll (A), Electrolyte leakage (B), and proline (C) contents of transgenic (L11, L17 and L2...
<p>Different biochemical parameters such as proline, MDA and H<sub>2</sub>O<sub>2</sub> was determin...
<p>(A) Phenotypes of WT and transgenic plants 21 d after treatment with 200 mM NaCl. Plants shown we...
<p>Estimation of (a) RWC, (b) lipid peroxidation, (c) electrolyte leakage and (d) proline content fr...
<p>Comparison of (a) H<sub>2</sub>O<sub>2</sub>, (b) Proline and (c) MDA content of wild type (WT) a...
<p>Estimation of electrolyte leakage (A), lipid peroxidation (B), proline (C), chlorophyll a (D), ch...
<p>(A) Phenotype of WT and TG tobacco after 3 weeks of 400 mM NaCl treatment; (B) Rate of leaf yello...
<p>(A) Rate of water loss from <i>GhSnRK2</i> transgenic plants. Six plants of each transgenic and W...
<p>(A) Quantitative real-time PCR of the T<sub>2</sub> transgenic soybean plants. (B) Disease sympto...
<p>Leaves from plants treated with salt stress were collected and subjected to the determination. (A...
<p>A, the phenotypic changes before (upper panel) and after NaCl treatment (lower panel); B, fresh w...
<p>(A) Representative picture that shows phenotype differences of leaf discs between WT and transgen...
<p>A) Root length and cotyledon greening rate of <i>EcbHLH57</i> expressing transgenic and wild type...