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The Evaluation of Bioremediation Potential of a Yeast Collection Isolated from Composting

机译:堆肥分离酵母菌的生物修复潜力评价

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The influence of xenobiotic compounds on environment and on living organisms has been reported as an imminent public health problem. Among them we can list the contamination by Alkanes present in petroleum, hydrocarbons and organic contaminant substances from industrial effluents. Also, heavy metals are of particular interest because of their persistence in the environment contaminating the food webs. Among the innovative solutions for treatment of contaminated water and soil is the use of biological materials like living or dead microorganisms. Yeasts exhibit the ability to adapt to extreme condition such as temperature, pH and levels of organic and inorganic contaminants that make them a potential material to be used to remediate contaminated environment application. The goal of this work was to search for yeast isolates capable to use n-hexadecane (alkane hydrocarbon) as a primary carbon source and for those able to tolerate high concentration of lead (Pb) within a collection of 90 isolates obtained from the Sao Paulo Zoo composting system. The isolated yeast strains were identified by mass spectrometry (MALDI-TOF-MS) and by sequencing of the ribosomal DNA (18S and D1/D2) conserved regions. We found that the collection bares 23 isolates capable of utilizing n-hexadecane and one which is able to tolerate high concentration of lead (Pb) with a high biosorption index compared to the reference yeast strains (BY4742, PE-2, CAT-1 and BG-1). These results confirm the initial hypothesis that the Sao Paulo Zoo composting is the source for diverse yeasts species with biotechnological application potential.
机译:异种生物化合物对环境和生物的影响已被报告为迫在眉睫的公共卫生问题。在其中,我们可以列出来自工业废水的石油,烃类和有机污染物中存在的烷烃的污染。另外,由于重金属在环境中的持久性污染了食物网,因此特别令人关注。在处理受污染的水和土壤的创新解决方案中,包括使用生物材料,例如活的或死的微生物。酵母具有适应极端条件的能力,例如温度,pH值以及有机和无机污染物的含量,使它们成为用于修复污染环境的潜在材料。这项工作的目的是在能够从圣保罗获得的90种分离菌株中寻找能够使用正十六烷(烷烃)作为主要碳源的酵母分离株,以及能够耐受高浓度铅(Pb)的酵母分离株。动物园堆肥系统。分离的酵母菌株通过质谱(MALDI-TOF-MS)和核糖体DNA的保守序列(18S和D1 / D2)进行鉴定。我们发现,与参考酵母菌株(BY4742,PE-2,CAT-1和BG-1)。这些结果证实了最初的假设,即圣保罗动物园的堆肥是具有生物技术应用潜力的多种酵母菌的来源。

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