磷在十六烷污染土壤中改善亚历山大三叶草种子萌发和生长参数

M. Rezaee, A. A. Ghotbi-Ravandi, Seyedeh Batool Hasssani, N. Soltani
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引用次数: 3

摘要

石油是公认的主要燃料来源,也是最重要的环境污染物之一。石油污染土壤对植物生长和人类健康产生负面影响。通过在土壤中添加蓝藻和光合微藻,可以实现石油污染土壤的生物修复。本研究在1%十六烷污染土壤中,研究了蓝藻Phormidium sp. ISC108处理对三叶草种子萌发和植物生长参数的有益影响。为此,在含0和1%十六烷的土壤中培养覆膜三叶草种子后,每隔两天分别用3 ml磷(OD600 = 0.7)和水灌溉,分别进行蓝藻处理和对照。30 d后,采用气相色谱-质谱法(GC-MS)测定十六烷在根周土壤中的生物降解性。结果表明,在对照土壤和十六烷污染土壤中,磷处理均能促进三叶草种子的萌发。在十六烷污染土壤中,蓝藻处理改善了植物叶面积、鲜重和叶片RWC等生长指标。蓝藻灌溉植株根部周围土壤中十六烷含量显著降低。此外,两种对照(水)处理均增加了苜蓿根部周围土壤中十六烷的降解。综上所述,由于phormiddium处理对石南三叶草种子萌发、植株生长和十六烷降解均有积极影响,可以有效提高石南三叶草在石油污染土壤中应对十六烷毒性的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phormidium Improves Seed Germination and Growth Parameters of Trifolium alexandrinum in Hexadecane-contaminated Soil
Petroleum is known as the main source of fuel and one of the most important environmental pollutants. Petroleum contaminated soil negatively influences plant growth and human health. Bioremediation of petroleum-contaminated soil could be achieved by adding cyanobacteria and photosynthetic microalgae in the soil. In the current study, the beneficial effects of cyanobacterium Phormidium sp. ISC108 treatment on seed germination and plant growth parameters were investigated on berseem clover plants exposed to 1% hexadecanecontaminated soil. For this purpose, after cultivation of berseem clover seeds in soil with 0 and 1% hexadecane, they were irrigated every two days by 3 ml Phormidium (OD600 = 0.7) and water for the cyanobacteria treatment and control, respectively. After 30 days, the biodegradability of hexadecane in the soil around the root was measured by gas chromatography mass-spectrometry (GC-MS).The results showed that Phormidium treatment accelerated germination of berseem clover seeds in both control and hexadecanecontaminated soil. Improvement of plant growth indices such as leaf area, plant fresh weight and leaf RWC due to cyanobacteria treatment was observed in hexadecane-contaminated soil.Hexadecane levels in the soil around the root of the plants irrigated by cyanobacteria were significantly decreased. In addition, the hexadecane degradation in the soil around the roots of berseem clover plant was increased in both control (water) treatment. In conclusion, due to positive effects of Phormidium treatment on seed germination, plant growth of berseem clover and hexadecane degradation, it can be effectively used to enhance plant capacity to cope with hexadecane toxicity in petroleum-contaminated soils.
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