首页> 外文期刊>Journal of Agronomy and Crop Science/Zeitschrift fur acker-und pflanzenbau >Hydrogen peroxide application improves quinoa performance by affecting physiological and biochemical mechanisms under water-deficit conditions
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Hydrogen peroxide application improves quinoa performance by affecting physiological and biochemical mechanisms under water-deficit conditions

机译:过氧化氢应用通过影响水缺陷条件下的生理和生化机制来提高藜麦性能

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摘要

Quinoa performance reduces under water-limited conditions and can be improved through exogenous application of stress signalling molecule such as hydrogen peroxide (H2O2). This study was conducted to elucidate the role of H2O2 in quinoa at two water regimes maintained as full irrigated at 100% field capacity (FC similar to 28% soil volumetric water contents; SVWC) and at 60% FC (similar to 17% SVWC) as drought stress. Hydrogen peroxide concentrations, that is 80 mm for seed priming and 15 mm as foliar spray, were used from our preliminary experiments. Drought stress significantly reduced the plant growth, water status, photosynthetic activity and increased reactive oxygen species production (H2O2 and O-2(center dot-)) resulting in higher oxidative damage in quinoa. Exogenous applied H2O2 as priming agent improved emergence attributes by earlier emergence and made quinoa more tolerant to upcoming drought stress. Nevertheless, exogenously applied H2O2 exhibited significantly higher stomatal conductance (34%), transpiration rate (39%), photosynthetic rate (42%), chlorophyll content index (36%), proline (19%) and total soluble sugar contents (14%) with respect to non-treated plants under water-deficit conditions. The H2O2 application regulated the Abscisic acid (ABA) concentration under both conditions and reduced it by 30% in drought-stressed plants as compared to non-treated stressed plants. The exogenous application also enhanced the enzymatic antioxidants activities, including SOD, POD, CAT and APX by 32%, 31%, 34% and 53%, respectively, in quinoa plants under drought stress. We conclude that exogenous applied H2O2 improved quinoa performance under drought stress is associated with higher accumulation of osmolytes, regulating ABA level and enhanced enzymatic antioxidant activities.
机译:藜麦在有限条件下降低了水有限的条件,可以通过外源性施加应力信号传递分子如氢过氧化氢(H 2 O 2)来改善。本研究进行了阐明H2O2在奎奴亚藜的作用,在100%励磁(Fc类似于28%土壤容量水含量的Fc)和60%Fc(类似于17%SVWC)中保持灌注作为干旱的压力。从我们的初步实验中使用了80 mm的过氧化氢浓度,即用于种子喷射的80mm,15毫米,从我们的初步实验中使用。干旱胁迫显着降低了植物生长,水位,光合活性和增加的反应性氧物质生产(H2O2和O-2(中心点)),导致藜麦氧化损伤。外源应用H2O2作为引发剂改善了早期出现的出现归因,使藜麦更容忍即将到来的干旱胁迫。然而,外源应用H2O2表现出显着越高的气孔导度(34%),蒸腾率(39%),光合速率(42%),叶绿素含量指数(36%),脯氨酸(19%)和总可溶性糖含量(14%) )关于在水赤字条件下的未治疗的植物。与未处理的应力植物相比,H2O2施用在两种条件下调节脱离酸(ABA)浓度,并在干旱胁迫下减少30%。外源性应用还增强了酶促抗氧化剂活性,在干旱胁迫下分别在藜麦植物中分别在32%,31%,34%和53%的32%,31%,34%和53%。我们得出结论,外源应用的H2O2改善了干旱胁迫下的藜麦性能与渗透性的较高积累,调节ABA水平和增强的酶抗氧化活性。

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