首页> 外文期刊>Russian Journal of Plant Physiology >Potato plants bearing a vacuolar Na+/H+ antiporter HvNHX2 from barley are characterized by improved salt tolerance.
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Potato plants bearing a vacuolar Na+/H+ antiporter HvNHX2 from barley are characterized by improved salt tolerance.

机译:带有大麦液泡Na + / H + 反向转运蛋白HvNHX2的马铃薯植株具有提高的耐盐性。

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摘要

Two cultivars of potato (Solanum tuberosum L.) were transformed with a barley antiporter gene HvNHX2 driven by the CaMV 35S promoter. The expressed transgene conferred a higher NaCl tolerance to one of the cultivars. Under salt stress, the more salt-tolerant transgenic plants had longer roots, higher dry weight, and suppressed cell expansion as compared to wild-type plants. The salt tolerance of the plants grown in vitro was not accompanied by elevated total sodium in any plant organs tested. Instead, higher potassium was found in roots of transgenic plants. Possible mechanisms of plant salt tolerance are discussed.Notes Translated from Fiziologiya Rastenii (2010) 57 (5), 744-755 (Ru).
机译:用由CaMV 35S启动子驱动的大麦反转运蛋白基因 HvNHX2 转化了两个马铃薯品种(马铃薯)。表达的转基因赋予其中一个品种较高的NaCl耐受性。在盐胁迫下,与野生型植物相比,耐盐性更高的转基因植物具有更长的根,更高的干重和抑制的细胞膨胀。在任何测试的植物器官中,体外生长的植物的耐盐性并不伴随总钠的升高。相反,在转基因植物的根中发现了更高的钾。讨论了植物耐盐性的可能机制。注释摘录自 Fiziologiya Rastenii (2010) 57 (5),744-755(Ru)。

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