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首页> 外文期刊>International Journal of Molecular Sciences >Effects of Naphthazarin (DHNQ) Combined with Lawsone (NQ-2-OH) or 1,4-Naphthoquinone (NQ) on the Auxin-Induced Growth of Zea mays L. Coleoptile Segments
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Effects of Naphthazarin (DHNQ) Combined with Lawsone (NQ-2-OH) or 1,4-Naphthoquinone (NQ) on the Auxin-Induced Growth of Zea mays L. Coleoptile Segments

机译:萘达沙林(DHNQ)结合劳森(NQ-2-OH)或1,4-萘醌(NQ)对生长素诱导的玉米Ze胚芽鞘节段生长的影响

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Naphthoquinones, plants secondary metabolites are known for their antibacterial, antifungal, anti-inflammatory, anti-cancer and anti-parasitic properties. The biological activity of naphthoquinones is connected with their ability to generate reactive oxygen species and to modify biological molecules at their nucleophilic sites. In our research, the effect of naphthazarin (DHNQ) combined with 2-hydroxy-1,4-naphthoquinone (NQ-2-OH) or 1,4-naphthoquinone (1,4-NQ) on the elongation growth, pH changes of the incubation medium, oxidative stress and redox activity of maize coleoptile cells were investigated. This paper describes experiments performed with maize ( Zea mays L.) coleoptile segments, which is a classical model system to study plant cell elongation growth. The data presented clearly demonstrate that lawsone and 1,4-naphthoquinone combined with naphthazarin, at low concentrations (1 and 10 nM), reduced the endogenous and IAA-induced (Indole-3-Acetic Acid) elongation growth of maize coleoptile segments. Those changes in growth correlated with the proton concentration in the incubation medium, which suggests that the changes in the growth of maize coleoptile segments observed in the presence of naphthoquinones are mediated through the activity of PM H + -ATPase. The presence of naphthoquinones induced oxidative stress in the maize coleoptile tissue by producing hydrogen peroxide and causing changes in the redox activity. Moreover, the incubation of maize segments with both naphthoquinones combined with naphthazarin resulted in lipid peroxidation and membrane damage. The regulation of PM H + -ATPase activity, especially its inhibition, may result from two major types of reaction: first, a direct interaction between an enzyme and naphthoquinone, which leads to the covalent modification of the protein thiols and the generation of thioethers, which have been found to alter the activity of the PM H + -ATPases; second, naphthoquinones induce reactive oxygen species (ROS) production, which inhibits PM H + -ATPases by increasing cytosolic Ca 2+ . This harmful effect was stronger when naphthazarin and 1,4-naphthoquinone were added together. Taking these results into account, it can be suggested that by combining naphthoquinones in small quantities, an alternative to synthetic pesticides could be developed.
机译:萘醌是植物的次生代谢产物,具有抗菌,抗真菌,抗炎,抗癌和抗寄生虫的特性。萘醌的生物活性与其产生活性氧的能力以及在其亲核位点修饰生物分子的能力有关。在我们的研究中,萘达沙林(DHNQ)与2-羟基-1,4-萘醌(NQ-2-OH)或1,4-萘醌(1,4-NQ)联合使用对萘的伸长率增长,pH值变化的影响研究了玉米胚芽鞘细胞的培养液,氧化应激和氧化还原活性。本文介绍了用玉米胚芽鞘片段进行的实验,这是研究植物细胞伸长生长的经典模型系统。呈现的数据清楚地表明,低浓度(1和10 nM)的Lawone和1,4-萘醌与萘达沙林合用,减少了玉米胚芽鞘片段内源性和IAA诱导的(吲哚-3-乙酸)伸长增长。这些生长变化与孵育培养基中的质子浓度相关,这表明在萘醌存在下观察到的玉米胚芽鞘节段的生长变化是通过PM H + -ATPase的活性介导的。萘醌的存在通过产生过氧化氢并引起氧化还原活性的变化而在玉米胚芽鞘组织中引起氧化应激。此外,玉米片段与两种萘醌和萘达沙林一起孵育会导致脂质过氧化和膜损伤。 PM H + -ATPase活性的调节,尤其是其抑制作用,可能是由两种主要的反应类型引起的:首先,酶与萘醌之间的直接相互作用导致蛋白质硫醇的共价修饰和硫醚的产生,已经发现它们改变了PM H + -ATPases的活性;其次,萘醌诱导活性氧(ROS)的产生,通过增加胞质Ca 2+抑制PM H + -ATPases。将萘达沙林和1,4-萘醌一起添加时,这种有害作用更强。考虑到这些结果,可以建议通过组合少量萘醌,可以开发合成农药的替代品。

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