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首页> 外文期刊>Canadian Journal of Plant Science >Mitigation of salt-stress effects by moringa leaf extract or salicylic acid through motivating antioxidant machinery in damask rose
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Mitigation of salt-stress effects by moringa leaf extract or salicylic acid through motivating antioxidant machinery in damask rose

机译:通过达到锦缎刺激抗氧化机械的辣木叶提取物或水杨酸的盐胁迫影响减轻

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摘要

Despite the fact that damask rose (Rosa damascena Mill. var. trigintipetala Dieck) is an economically important aromatic plant, its growth and development has been severely suppressed by salt stress. Reports show that moringa leaf extract (MLE) or salicylic acid (SA) are involved in salt-stress tolerance. Nevertheless, scarce information is available about MLE or SA impacts on aromatic plants, especially damask rose under salinity. This investigation was, therefore, conducted to investigate the effects of MLE and (or) SA on salt-stress mitigation in damask rose. Rose plants were treated with 200 mmol.L-1 sodium chloride, and foliar applied with MLE at 1:30 (v:v) and (or) 0.2 mmol.L-1 SA. Foliar spraying with MLE and (or) SA enhanced the growth attributes, chlorophyll content, relative water content, proline content, and membrane stability index under salinity. Less accumulation of malondialdehyde and H2O2 was also observed when MLE and (or) SA were applied. Furthermore, MLE and (or) SA applications considerably increased the radical scavenging activity, total phenols, and antioxidant enzyme activity (catalase and superoxide dismutase) under stress. The mitigative effect of MLE or SA was more pronounced when they were applied in combination. Collectively, MLE and (or) SA had efficient antioxidant defense system that scavenged reactive oxygen species, and thus afforded considerable protection against salt-induced oxidative damage.
机译:尽管大马士革玫瑰(Rosa damascena Mill.var.trigintipetala Dieck)是一种经济上重要的芳香植物,但其生长发育受到盐胁迫的严重抑制。研究表明,辣木叶提取物(MLE)或水杨酸(SA)与盐胁迫耐受性有关。然而,关于MLE或SA对芳香植物,尤其是盐胁迫下的锦缎玫瑰的影响,目前还缺乏相关信息。因此,本次调查旨在研究MLE和(或)SA对缓解damask rose盐胁迫的影响。玫瑰植株用200 mmol处理。L-1氯化钠,叶面涂抹1:30(v:v)和(或)0.2 mmol的MLE。L-1 SA。叶面喷施MLE和(或)SA提高了盐胁迫下的生长特性、叶绿素含量、相对含水量、脯氨酸含量和膜稳定性指数。当施用MLE和(或)SA时,丙二醛和H2O2的积累也较少。此外,MLE和(或)SA施用显著增加了胁迫下的自由基清除活性、总酚和抗氧化酶活性(过氧化氢酶和超氧化物歧化酶)。当混合使用MLE或SA时,其缓解效果更为显著。总之,MLE和(或)SA具有清除活性氧物种的有效抗氧化防御系统,因此对盐诱导的氧化损伤提供了相当大的保护。

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