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首页> 外文期刊>Environmental and experimental botany >Nitric oxide donor improves adventitious rooting in mung bean hypocotyl cuttings exposed to cadmium and osmotic stresses
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Nitric oxide donor improves adventitious rooting in mung bean hypocotyl cuttings exposed to cadmium and osmotic stresses

机译:一氧化氮供体在暴露于镉和渗透胁迫下的绿豆丘脑切割中提高了不定的生根

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摘要

Exogenous application of a nitric oxide donor, sodium nitroprusside (SNP), improved the formation and growth of adventitious roots in mung bean hypocotyl cuttings. The combined applications of SNP and CdCl2 or mannitol partially overcame the negative effects of Cd and mannitol on adventitious rooting compared with Cd or mannitol alone. SNP significantly increased the endogenous NO level and the glutathione (GSH), ascorbic acid (ASA), polyphenol, and proline (Pro) levels during the root induction and/or initiation stages. However, the malondialdehyde (MDA) levels were significantly reduced by the SNP treatment during the entire time course. To unveil the role of NO in mediating the plant response to heavy metal and osmotic stresses during adventitious rooting, SNP together with CdCl2 or mannitol was applied in the experiments. The results obtained showed that the Cd- or mannitol-induced changes in the levels of GSH, ASA, polyphenol, Pro, and MDA and the activities of ascorbate peroxidase (APX), peroxidase (POD), catalase (CAT), superoxide dismutase (SOD), and indole-3-acetic acid oxidase (IAAO) were completely or partially reversed by SNP supplementation in the SNP + Cd/mannitol treatments, suggesting that NO mediated the redox state via the regulation of antioxidative systems to prevent membrane lipid peroxidation in response to the stresses during adventitious rooting. Furthermore, the protective effects of NO on the cellular antioxidative systems under the stresses were similar to those of IBA, implying that auxin and NO shared common pathways to respond to the stresses and leading to adventitious rooting in mung bean hypocotyl cuttings under heavy metal and osmotic stresses. NO mediates the redox state and prevents membrane lipid peroxidation during adventitious rooting in plants exposed to abiotic stresses via the regulation of antioxidant levels and antioxidative enzyme activities. NO shares common signaling pathways with auxin or acts as a downstream mediator of auxin in response to abiotic stresses during adventitious rooting.
机译:外源性氧化氮供体,硝普钠(SNP),改善了绿豆缺杆切割中不定根的形成和生长。 SNP和CDCl2或甘露醇的组合应用部分克服了与单独的Cd或甘露醇相比偶然生根的CD和甘露醇的负面影响。 SNP在根诱导和/或引发阶段期间显着增加内源性无水平和谷胱甘肽(GSH),抗坏血酸(ASA),多酚和脯氨酸(PRO)水平。然而,通过整个时间课程的SNP治疗显着降低了丙二醛(MDA)水平。为了揭示在偶然生根期间介导对植物反应的植物反应,在偶然生根期间,SNP与CDCl2或甘露醇一起应用在实验中。得到的结果表明,CDS或甘露醇诱导的GSH,ASA,多酚,PRO和MDA水平的变化以及抗坏血酸过氧化物酶(APX),过氧化物酶(POD),过氧化氢酶(猫),超氧化物歧化酶( SOD)和吲哚-3-乙酸氧化酶(IAAO)通过SNP + Cd /甘露醇治疗中的SNP补充完全或部分地反转,表明尚未通过调节抗氧化系统来介导的氧化还原状态,以防止膜脂质过氧化在不定根期间对压力的反应。此外,NO对应力下的细胞抗氧化系统的保护作用与IBA的保护效果类似于IBA,暗示养羊酸和没有共同的常见途径来应对压力并导致重金属和渗透下的绿豆缺口扦插偶然生根压力。不介导氧化还原状态,并通过调节抗氧化水平和抗氧化酶活性暴露于非生物应力的植物中的偶然生根期间防止膜脂质过氧化。不与养素素分享常见的信号通路,或者作为毒素的下游介质,响应于非偶然生根的非生物胁迫。

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