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Experimentation on Degradation of Petroleum in Contaminated Soils in the Root Zone of Maize (Zea Mays L.) Inoculated with Piriformospora Indica

机译:用Piriformospora籼稻接种玉米(Zea mays L.)污染土壤中污染土壤中污染土壤降解的试验

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摘要

Plant-based methods such as rhizodegradation are very promising for the remediation of petroleum-contaminated soils. Associations of plants with endophytes can further enhance their phytoremediation potential. In this study, a rhizobox experiment was conducted to investigate whether inoculation with the root-colonizing fungus Piriformospora indica could further enhance the degradation of petroleum hydrocarbons in the root zone of maize (Zea mays L.). The rhizoboxes were subdivided into compartments in accordance with distance from the plants. After filling the boxes with soil from a petroleum-contaminated site, seedlings that had either been inoculated with P. indica or not were grown in the middle compartments of the rhizoboxes and grown for 64days. A plant-free treatment was included for control. The presence of roots strongly increased the counts of total and petroleum-degrading soil bacteria, respiration, dehydrogenase activity, water-soluble phenols and petroleum degradation. All these effects were also found in the soil adjacent to the middle compartments of the rhizoboxes, but strongly decreased further away from it. Inoculation with P. indica further enhanced all the recorded parameters without changing the spatial pattern of the effects. Inoculated plants also produced around 40% more root and shoot biomass than noninoculated plants and had greener leaves. Together, the results indicate that the treatment effects on the recorded soil microbial and biochemical parameters including petroleum hydrocarbon degradation were primarily due to increased root exudation. Irrespectively of this, they show that maize can be used to accelerate the rhizodegradation of petroleum hydrocarbons in soil and that inoculation with P. indica can substantially enhance the phytoremediation performance of maize.
机译:基于植物的方法,如无恶石生殖是对石油污染土壤的修复非常有前途。植物与内体细胞的关联可以进一步增强它们的植物化潜力。在这项研究中,进行了根瘤制毒剂实验以研究是否与根殖民化真菌吡虫菊孢子蛋白的接种可以进一步增强玉米根区(Zea mays L.)中石油烃的降解。基因毒六氧化物根据植物的距离细分为隔室。在从石油污染的部位填充土壤的盒子后,在根瘤毒毒剂的中间室中被接种的蛋白质被接种,并在64天种植。将无植物治疗用于对照。根部的存在强烈增加了总和石油降解的土壤细菌,呼吸,脱氢酶活性,水溶性酚和石油降解的计数。所有这些效果也被发现在与根瘤长的中间隔间相邻的土壤中,但远离它强烈降低。接种P. Indica进一步增强了所有记录的参数,而不改变效果的空间模式。接种植物也产生大约40%的根和芽的生物量,而不是非常规的植物,并且具有更环保的叶子。结果表明,在包括石油烃降解的记录土壤微生物和生化参数上的治疗作用主要是由于根渗出的增加。不断地是这样的,他们表明玉米可用于加速土壤中的石油烃的无流水分析,并且与P.籼稻的接种可以大大提高玉米的植物修复性能。

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