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Exogenously Applied Nitric Oxide Enhances the Drought Tolerance in Hulless Barley

机译:外源施加的一氧化氮提高了无麦大麦的耐旱性

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Drought stress is a severe threat to high altitude hulless barley production, which causes oxidative damage, disturbs water relations and photosynthesis, while exogenously applied nitric oxide (NO) has the potential to alleviate these effects. In the present study, the role of NO in improving drought tolerance of hulless barley was evaluated. At the three leaf stage, sodium nitroprusside (SNP), a NO donor, was applied at 50, 100 and 150 μmol l–1 under drought stress, the controls, were kept at full field water capacity without NO treatment. The results showed that drought stress seriously reduced the hulless barley growth and physiological attributes, but NO application alleviated the stress effects. Drought tolerance in hulless barley was strongly related to the maintenance of water content and enhanced capacity of antioxidants, improved stability of cellular membranes and enhanced photosynthetic capacity, plausibly by signaling action of NO. Among the NO treatments, 100 μmol l–1 SNP was the most effective.
机译:干旱胁迫是对高海拔无性大麦生产的严重威胁,它会导致氧化损伤,扰乱水关系和光合作用,而外源施用一氧化氮(NO)可能会减轻这些影响。在本研究中,评估了NO在改善无茎大麦抗旱性中的作用。在三叶期,硝普钠(SNP)(一种NO供体)在干旱胁迫下(对照)以50、100和150μmoll–1的比例施用,无需进行NO处理即可保持全田水容量。结果表明,干旱胁迫严重降低了大麦的无节制生长和生理特性,但NO的施用减轻了胁迫的影响。大麦的耐旱性与维持水含量和增强抗氧化剂的能力,改善细胞膜的稳定性以及增强光合能力密切相关,这很可能是由于NO信号的作用。在NO处理中,最有效的是100μmoll–1 SNP。

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