GreenUPorto - Sustainable Agrifood Production Research Centre, Biology Department, Faculty of Sciences of University of Porto, Rua do Campo Alegre s/n, 4169-007, Porto, Portugal.
GreenUPorto - Sustainable Agrifood Production Research Centre, Biology Department, Faculty of Sciences of University of Porto, Rua do Campo Alegre s/n, 4169-007, Porto, Portugal.
Chemosphere. 2020 Apr;244:125579. doi: 10.1016/j.chemosphere.2019.125579. Epub 2019 Dec 9.
Although Solanum nigrum L. is a phytoremediator for different metals, its growth and physiology are still compromised by toxic levels of zinc (Zn). Thus, the development of eco-friendly strategies to enhance its tolerance, maintaining remediation potential is of special interest. This study evaluated the potential of 24-epibrassinolide (24-EBL) to boost S. nigrum defence against Zn towards a better growth rate and remediation potential. After 24 days of exposure, the results revealed that Zn-mediated inhibitory effects on biomass and biometry were efficiently mitigated upon application of 24-EBL, without affecting Zn accumulation. The evaluation of oxidative stress markers reported that Zn excess stimulated the accumulation of superoxide anion (O), but reduced hydrogen peroxide (HO) levels, while not altering lipid peroxidation (LP). This was accompanied by an up-regulation of the antioxidant system, especially proline, superoxide dismutase (SOD) and ascorbate peroxidase (APX) in both organs, and ascorbate in roots of Zn-exposed plants. Foliar application of 24-EBL, however, induced distinctive effects, lowering proline levels in both organs, as well as APX activity in shoots and SOD in roots, whilst stimulating GSH and total thiols in both organs, as well as SOD and APX activity, in shoots and in roots, respectively. Probably due to a better antioxidant efficiency, levels of O and HO in pre-treated plants remained identical to the control, while LP further decreased in shoots. Overall, our results indicate a protective effect of 24-EBL on S. nigrum response to excess Zn, contributing for a better tolerance and growth rate, without disturbing its phytoremediation potential.
虽然龙葵是一种对不同金属具有植物修复能力的植物,但它的生长和生理仍然受到锌(Zn)毒性水平的影响。因此,开发环保策略来提高其耐受性,同时保持修复潜力,具有特殊的意义。本研究评估了 24-表油菜素内酯(24-EBL)对提高龙葵对 Zn 耐受性的潜力,以获得更好的生长率和修复潜力。在暴露 24 天后,结果表明,24-EBL 的应用有效地减轻了 Zn 对生物量和生物计量的抑制作用,而不影响 Zn 的积累。氧化应激标志物的评估表明,Zn 过量刺激了超氧阴离子(O)的积累,但降低了过氧化氢(HO)水平,而不改变脂质过氧化(LP)。这伴随着抗氧化系统的上调,特别是脯氨酸、超氧化物歧化酶(SOD)和抗坏血酸过氧化物酶(APX)在两个器官中的积累,以及 Zn 暴露植物根系中的抗坏血酸。然而,叶面喷施 24-EBL 诱导了不同的效应,降低了两个器官中的脯氨酸水平,以及茎中的 APX 活性和根中的 SOD 活性,同时刺激了两个器官中的 GSH 和总巯基,以及茎和根中的 SOD 和 APX 活性。可能由于抗氧化效率更高,预处理植物中的 O 和 HO 水平与对照相同,而 LP 在茎中进一步降低。总的来说,我们的结果表明 24-EBL 对龙葵应对过量 Zn 的反应具有保护作用,有助于提高其耐受性和生长率,同时不干扰其植物修复潜力。