Department of Botany, Government College University Faisalabad, Faisalabad 38000, Pakistan.
Department of Botany, Government College University Faisalabad, Faisalabad 38000, Pakistan.
J Hazard Mater. 2018 Oct 15;360:604-614. doi: 10.1016/j.jhazmat.2018.08.043. Epub 2018 Aug 17.
Menadione sodium bisulphite (MSB) mediates plant defense responses under abiotic stresses. In present experiment, Cd stress (1 mM) resulted in significant reduction in growth, relative water contents, chlorophyll and uptake of essential nutrients in two okra cultivars (Shabnum and Arka Anamika). Cd-induced reduction in these variables was more in cv. Arka Anamika compared with cv. Shabnum 786. Cd caused oxidative damage in the form of higher cellular levels of MDA and HO. MSB applications (0, 50, 100, 150 and 200 μM) had differential effect on growth and key physio-biochemical attributes. Higher MSB dose (200 μM) was lethal as it further aggravated damages under Cd toxicity. However, plants treated with 100 μM MSB exhibited lesser oxidative damage due to better oxidative defense in the form of stimulated activities of antioxidant enzymes (SOD, POD, CAT and APX) and increased concentration of non-enzymatic antioxidants (phenolics, flavonoids and ascorbic acid). Moreover, 100 μM MSB mitigated Cd effect on the uptake of Ca, K, and Mg. MSB also reduced the uptake and transport of Cd to aerial parts of plants. The results of present study revealed MSB-induced slight oxidative burst that induced the accumulation of reactive oxygen species (ROS) scavenging defense proteins under Cd stress.
亚硫酸氢钠甲萘醌(MSB)介导植物在非生物胁迫下的防御反应。在本实验中,Cd 胁迫(1mM)导致两个秋葵品种(Shabnum 和 Arka Anamika)的生长、相对水分含量、叶绿素和必需营养元素吸收显著减少。与 cv. Shabnum 786 相比,Cd 诱导 cv. Arka Anamika 中这些变量的减少更为明显。Cd 以 MDA 和 HO 细胞水平升高的形式造成氧化损伤。MSB 应用(0、50、100、150 和 200μM)对生长和关键生理生化特性有不同的影响。较高的 MSB 剂量(200μM)是致命的,因为它在 Cd 毒性下进一步加重了损伤。然而,用 100μM MSB 处理的植物由于抗氧化酶(SOD、POD、CAT 和 APX)活性增强和非酶抗氧化剂(酚类、类黄酮和抗坏血酸)浓度增加而表现出较小的氧化损伤,从而更好地进行氧化防御。此外,100μM MSB 减轻了 Cd 对 Ca、K 和 Mg 吸收的影响。MSB 还减少了 Cd 向植物地上部分的吸收和转运。本研究结果表明,MSB 诱导的轻微氧化爆发在 Cd 胁迫下诱导了活性氧(ROS)清除防御蛋白的积累。