Cd-induced cytotoxicity and its HO-1 and ROS quenching enzyme-mediated regulation in 2–3 leaf stage seedlings of Sorghum bicolor: An important millet crop of the arid & semi-arid regions

Anita Singh, Suman Parihar, G.S. Shekhawat
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Abstract

Cadmium is a non-essential trace metal element with no known biological function. Cd is toxic to both plants and human beings; hence, it is of prime concern to the scientific community. The objective of this research is to find out the effect of heme oxygenase 1 on Cd toxicity in Sorghum bicolor seedlings. Hydroponically adapted seedlings were treated to various concentrations of Cd within the range of 10 to 200 μM. Seedlings were harvested after 120 h of Cd stress. The cellular homeostasis and metal tolerance mechanisms were conducted to evaluate growth parameters, stress parameters (MDA and H2O2 content), non-enzymatic and enzymatic parameters (CAT, APX and GPX) including HO 1. The results showed that HO 1 activity was measured to be highest in leaves at 150 μM CdCl2, which was 29.61 %.The HO 1 activity was correlated with the MDA content and antioxidant enzymes activity at this Cd concentration. The highest activity of HO 1 was revealed through the decrease of GPX and CAT activities. Consequently, HO 1 works within a cohort that helps the development of the plant's defense mechanisms by scavenging ROS, which is confirmed by the time-dependent study. Accordingly, our research highlighted that HO 1 might increase the efficiency of stress tolerance by enhancing antioxidant defence mechanisms against Cd toxicity in S. bicolor.

双色高粱(一种干旱和半干旱地区的重要粟类作物)2-3 叶期幼苗中镉诱导的细胞毒性及其 HO-1 和 ROS 淬灭酶介导的调节作用
镉是一种非必需的微量金属元素,没有已知的生物功能。镉对植物和人类都有毒性,因此备受科学界关注。本研究的目的是找出血红素加氧酶 1 对高粱双色幼苗镉毒性的影响。对水培秧苗施以 10 至 200 μM 范围内不同浓度的镉。镉胁迫 120 小时后收获幼苗。通过评估生长参数、胁迫参数(MDA 和 H2O2 含量)、非酶和酶参数(CAT、APX 和 GPX)(包括 HO 1),对细胞平衡和金属耐受机制进行了研究。结果表明,在 150 μM 氯化镉浓度下,叶片的 HO 1 活性最高,为 29.61 %。HO 1 的最高活性是通过 GPX 和 CAT 活性的降低而显示出来的。因此,HO 1 是通过清除 ROS 来帮助植物建立防御机制的。因此,我们的研究突出表明,HO 1 可通过增强抗氧化防御机制来抵御镉的毒性,从而提高 S. bicolor 的抗逆性。
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来源期刊
Journal of trace elements and minerals
Journal of trace elements and minerals Medicine and Dentistry (General), Analytical Chemistry, Environmental Science (General), Toxicology, Biochemistry, Genetics and Molecular Biology (General), Nutrition, Veterinary Science and Veterinary Medicine (General)
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