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首页> 外文期刊>Acta Physiologiae Plantarum >Melatonin improves antioxidant capacity and ion homeostasis and enhances salt tolerance in maize seedlings
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Melatonin improves antioxidant capacity and ion homeostasis and enhances salt tolerance in maize seedlings

机译:褪黑素提高了玉米幼苗的抗氧化能力和离子稳态,并增强了耐盐性

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摘要

Melatonin (N-acetyl-5-methoxytryptamine) is a biological hormone involved in many important physiological processes in plants. To better understand the protective roles of melatonin in plants against salt stress, we determined the effects of exogenous melatonin (1 mu M) on plant growth, photosynthesis, antioxidant enzyme activity and ion homeostasis in maize plants under 100 mM NaCl. Results showed that salt stress decreased plant dry matter accumulation, net photosynthetic rate (P-n) and chlorophyll contents. However, 1 mu M melatonin application significantly alleviated this growth inhibition and enhanced P-n by 19 %. Melatonin application also enhanced the activities of antioxidative enzymes of salt-stressed maize leaves, and decreased their electrolyte leakage and MDA content by 25 and 22 %, respectively. In addition, melatonin application significantly increased K+ contents and K+/Na+ ratios in salt-stressed maize shoots by 18 and 52 %, respectively. However, the Na+ content was decreased significantly in melatonin-treated leaves under salinity. The results suggested that the melatonin enhanced maize salt tolerance in maize were most likely due to the improvement of photosynthetic capacity, antioxidative capacity and ion homeostasis in leaves. This study provides, for the first time, the evidence that support the protective roles of exogenous melatonin in maize against salinity.
机译:褪黑激素(N-乙酰基-5-甲氧基色胺)是一种生物激素,参与植物的许多重要生理过程。为了更好地了解褪黑激素在植物中对盐胁迫的保护作用,我们确定了外源褪黑素(1微米)对100 mM NaCl下玉米植物的生长,光合作用,抗氧化酶活性和离子稳态的影响。结果表明,盐胁迫降低了植物干物质积累,净光合速率(P-n)和叶绿素含量。但是,施用1μM褪黑素可显着减轻这种生长抑制作用,并使P-n提高19%。褪黑素的应用还增强了盐胁迫玉米叶片的抗氧化酶活性,并使电解质泄漏和MDA含量分别降低了25%和22%。此外,褪黑激素的施用显着提高了盐胁迫玉米芽中钾离子的含量和钾离子/钠离子的比例,分别增加了18%和52%。然而,在盐度下褪黑素处理的叶片中Na +含量显着降低。结果表明,褪黑激素增强玉米耐盐性最可能是由于叶片光合作用能力,抗氧化能力和离子稳态的提高。这项研究首次提供了支持外源褪黑素在玉米中对抗盐碱化的保护作用的证据。

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