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Biocrusts Forming Cyanobacteria Favor Plant Germination and Improve the Quality of Soil Mixed with Tailings Sands

机译:生物脆性形成蓝藻有利于植物萌发,提高与尾矿砂混合的土壤质量

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Revegetation is a necessary step for the rehabilitation of soils impacted by mining activities, and requires an adequate amount of nutrients. Biocrusts (BSC) are biotic communities formed after the degraded site has been colonized by cyanobacteria, which supplement nutrients and favor the germination of some plant species.Cultures of BSC-forming cyanobacteria previously identified and isolated from different geographical zones of Chile, were used to evaluate the effect of the microbial cultures on the germination and growth of Polypogon australis plants. The cyanobacteria cultures were inoculated on substrates composed by a mix of soil and copper mine-tailing sands. The establishment of the cyanobacteria on the soil mixes was observed by optical and confocal microscopy. The germination index, and the roots and leaves growth of the plant species were determined. Physicochemical parameters of the soil mix were determined before and after the cyanobacterial inoculation. The results showed that the cumulative germination of the plant species was significantly higher in the presence of the cyanobacteria than in the controls with bacterial culture media or water. A similar result was observed for the growth of P. australis in the presence of cyanobacteria, showing a stimulating effect on the leaves length of the plants respect to the controls. The organic matter content (OM) increased after the inoculation of the soil mix with the cyanobacterial culture, and the electrical conductivity (EC) was alleviated due to the cyanobacterial inoculation. We propose that BSC-forming cyanobacteria inoculation can be used as a first step for a successful revegetation of mining sites. The inoculation of mining polluted soil with BSC-forming cyanobacteria diminishes the phytotoxicity of the substrates and may favor the establishment of plant species.
机译:接收是对采矿活动影响的土壤恢复的必要步骤,需要足够的营养素。 Biocrusts(BSC)是在降解的位点被蓝藻殖民殖民化后形成的生物社区,其补充营养物质并赞成一些植物物种的萌发。使用先前鉴定和分离的智利不同地理区的BSC形成蓝细菌的培养物。微生物培养对南澳葡萄球菌萌发和生长的影响。用土壤和铜矿砂砂混合组成的基材上接种了胞蔻细菌培养物。通过光学和共聚焦显微镜观察到土壤混合物上的蓝细菌的建立。测定萌发指数,并确定植物物种的根源和叶片生长。在蓝藻接种之前和之后测定土壤混合物的物理化学参数。结果表明,植物物种的累积萌发在蓝藻存在明显高于细菌培养基或水的对照。在蓝藻存在下,观察到类似的结果是对澳大利亚的澳大利亚的生长,显示对植物的叶片长度对照的刺激作用。有机物质含量(OM)在接种土壤混合物与蓝藻培养后增加,并且由于蓝细菌接种而缓解了电导率(EC)。我们提出了BSC形成的蓝藻接种可以作为成功再培养的第一步。与BSC形成蓝藻的采矿污染土壤接种减少了基材的植物毒性,并有利于建立植物物种。

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