首页> 美国卫生研究院文献>other >The Synergistic Priming Effect of Exogenous Salicylic Acid and H2O2 on Chilling Tolerance Enhancement during Maize (Zea mays L.) Seed Germination
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The Synergistic Priming Effect of Exogenous Salicylic Acid and H2O2 on Chilling Tolerance Enhancement during Maize (Zea mays L.) Seed Germination

机译:外源水杨酸和H2O2对玉米种子萌发过程中耐冷性的协同启动作用

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摘要

Chilling stress is an important constraint for maize seedling establishment in the field. To examine the role of salicylic acid (SA) and hydrogen peroxide (H2O2) in response to chilling stress, we investigated the effects of seed priming with SA, H2O2, and SA+H2O2 combination on maize resistance under chilling stress (13°C). Priming with SA, H2O2, and especially SA+H2O2 shortened seed germination time and enhanced seed vigor and seedling growth as compared with hydropriming and non-priming treatments under low temperature. Meanwhile, SA+H2O2 priming notably increased the endogenous H2O2 and SA content, antioxidant enzymes activities and their corresponding genes ZmPAL, ZmSOD4, ZmAPX2, ZmCAT2, and ZmGR expression levels. The α-amylase activity was enhanced to mobilize starch to supply metabolites such as soluble sugar and energy for seed germination under chilling stress. In addition, the SA+H2O2 combination positively up-regulated expressions of gibberellic acid (GA) biosynthesis genes ZmGA20ox1 and ZmGA3ox2, and down-regulated GA catabolism gene ZmGA2ox1 expression; while it promoted GA signaling transduction genes expressions of ZmGID1 and ZmGID2 and decreased the level of seed germination inhibitor gene ZmRGL2. The abscisic acid (ABA) catabolism gene ZmCYP707A2 and the expressions of ZmCPK11 and ZmSnRK2.1 encoding response receptors in ABA signaling pathway were all up-regulated. These results strongly suggested that priming with SA and H2O2 synergistically promoted hormones metabolism and signal transduction, and enhanced energy supply and antioxidant enzymes activities under chilling stress, which were closely relevant with chilling injury alleviation and chilling-tolerance improvement in maize seed.>Highlights:Seed germination and seedling growth were significantly improved under chilling stress by priming with SA+H2O2 combination, which was closely relevant with the change of reactive oxygen species, metabolites and energy supply, hormones metabolism and regulation.
机译:低温胁迫是田间建立玉米幼苗的重要限制因素。为了研究水杨酸(SA)和过氧化氢(H2O2)在应对低温胁迫中的作用,我们研究了在低温胁迫(13°C)下,SA,H2O2和SA + H2O2组合引发种子对玉米抗性的影响。 。与低温下的注水处理和非注水处理相比,用SA,H2O2,尤其是SA + H2O2进行浇注可缩短种子发芽时间,并增强种子活力和幼苗生长。同时,SA + H2O2引发显着增加了内源性H2O2和SA含量,抗氧化酶活性及其相应的基因ZmPAL,ZmSOD4,ZmAPX2,ZmCAT2和ZmGR表达水平。增强α-淀粉酶活性以动员淀粉以提供代谢产物,例如可溶性糖和低温胁迫下种子萌发的能量。此外,SA + H2O2组合正上调赤霉素(GA)生物合成基因ZmGA20ox1和ZmGA3ox2的表达,并下调GA分解代谢基因ZmGA2ox1的表达;促进GA信号转导基因ZmGID1和ZmGID2的表达,降低种子发芽抑制剂基因ZmRGL2的水平。脱落酸(ABA)分解代谢基因ZmCYP707A2和ZmCPK11和ZmSnRK2.1编码反应受体在ABA信号通路中的表达均上调。这些结果强烈表明,在低温胁迫下,SA和H 2 O 2 的启动作用协同促进激素代谢和信号转导,并增强能量供应和抗氧化酶活性。 >亮点:在低温胁迫下,通过SA + H 2 O <1引发,种子发芽和幼苗生长显着改善。 sub> 2 组合,与活性氧的变化,代谢产物和能量供应,激素的代谢和调节密切相关。

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