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Nitrogen fixation persists under conditions of salt stress in transgenic Medicago truncatula plants expressing a cyanobacterial flavodoxin

机译:在表达蓝藻黄素毒素的转基因紫花苜蓿植物中,盐分胁迫下固氮作用仍然存在

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Several recent studies have demonstrated that the expression of a cyanobacterial flavodoxin in plants can provide tolerance to a wide range of environmental stresses. Indeed, this strategy has been proposed as a potentially powerful biotechnological tool to generate multiple?¢????tolerant crops. To determine whether flavodoxin expression specifically increased tolerance to salt stress and whether it might also preserve legume nitrogen fixation under saline conditions, the flavodoxin gene was introduced into the model legume Medicago truncatula . Expression of flavodoxin did not confer saline tolerance to the whole plant, although the sensitive nitrogen?¢????fixing activity was maintained under salt stress in flavodoxin?¢????expressing plants. Our results indicate that flavodoxin induced small but significant changes in the enzymatic activities involved in the nodule redox balance that might be responsible for the positive effect on nitrogen fixation. Expression of flavodoxin can be regarded as a potential tool to improve legume symbiotic performance under salt stress, and possibly other environmental stresses.
机译:最近的一些研究表明,植物中蓝细菌黄素毒素的表达可以提供对广泛环境胁迫的耐受性。实际上,已经提出了该策略作为产生多种耐性作物的潜在强大的生物技术工具。为了确定黄酮毒素的表达是否特异性增加了对盐胁迫的耐受性以及是否还可以在盐碱条件下保留豆类固氮,将黄酮毒素基因引入到模型豆科植物紫花苜蓿中。尽管在盐胁迫下在表达黄酮毒素的植物中保持了敏感的氮固着活性,但黄酮毒素的表达并未赋予整个植物耐盐性。我们的结果表明,黄酮毒素诱导结节氧化还原平衡中涉及的酶活性的微小但显着变化,这可能是对固氮的积极作用。黄素毒素的表达可以被认为是在盐胁迫和可能的其他环境胁迫下改善豆类共生性能的潜在工具。

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