The effects of exogenous application of melatonin on the degradation of polycyclic aromatic hydrocarbons in the rhizosphere of Festuca

根际 化学 环境化学 褪黑素 恶臭假单胞菌 人口 植物修复 高羊茅 过氧化物酶 食品科学 农学 生物 植物 生物化学 有机化学 禾本科 内分泌学 细菌 重金属 遗传学 人口学 社会学
作者
Saeid Rostami,Abooalfazl Azhdarpoor,Mohammad Ali Baghapour,Mansooreh Dehghani,Mohammad Reza Samaei,Marta Jaskulak,Sima Jafarpour,Mohammad Samare‐Najaf
出处
期刊:Environmental Pollution [Elsevier BV]
卷期号:274: 116559-116559 被引量:19
标识
DOI:10.1016/j.envpol.2021.116559
摘要

The study aimed to assess the effects of melatonin, a plant growth regulator, on the degradation of phenanthrene (Phe) and pyrene (Py), in the rhizosphere of the Festuca grass. The experiments were divided into the following groups: 1) soil contaminated with Phe and Py, without the Festuca, 2) contaminated soil + Festuca, 3–5), contaminated soil + Festuca + the application of melatonin in three separate doses: 10, 50, or 100 μM. After 90 days, the effects of melatonin supplementation on the degradation of polycyclic aromatic hydrocarbons (PAHs) were analyzed by evaluating the rate of PAHs degradation, the expression of genes encoding salicylaldehyde dehydrogenase (SDH) and glutathione peroxidase (GPX) enzymes in Pseudomonas putida, as well as by measuring the total activity of dehydrogenase and peroxidase enzymes. Our results have shown that in soil contaminated by 300 mg kg−1 PAHs, application of melatonin (10, 50, 100 μM), resulted in the following increase in the dehydrogenase and peroxidase activity in all three applied doses (19% and 5.7%), (45.3% and 34.3%), (40.9% and 14.3%), respectively in comparison to the control group. The experiment showed that soil supplementation with melatonin at 50 μM, resulted in the highest removal rate of PAHs. According to our results, melatonin demonstrated a potentially favorable role in enhancing plant biomass, as well as an increase in soil bacterial population, and the activity of antioxidative enzymes in P. putida, causing all tested parameters of the soil and the expression of desired genes to be advantageously altered for the degradation of the chosen PAHs.

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