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Molecular identification and nanoremediation of microbial contaminants in algal systems using untreated wastewater

机译:使用未经处理的废水对藻类系统中的微生物污染物进行分子鉴定和纳米修复

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Wastewater-algal biomass is a promising option to biofuel production. However, microbial contaminants constitute a substantial barrier to algal biofuel yield. A series of algal strains, Nannochhris oculata and Chlorella vulgaris samples (n = 30), were purchased from the University of Texas, and were used for both stock flask cultures and flat-panel vertical bioreactors. A number of media were used for isolation and differentiation of potential contaminants according to laboratory standards (CLSI). Conventional PCR amplification was performed followed by 16S rDNA sequencing to identify isolates at the species level. Nanotherapeutics involving a nanomicellar combination of natural chitosan and zinc oxide (CZNPs) were tested against the microbial lytic groups through Minimum Inhibitory Concentration (MIC) tests and Transmission Electronic Microscopy (TEM). Results indicated the presence of Pseudomonas spp.. Bacillus pumilus/ safensis, Cellulosimicrobium cellulans, Micrococcus luteus and Staphylococcus epidermidis strains at a substantial level in the wastewater-fed algal reactors. TEM confirmed the effectiveness of CZNPs on the lytic group while the average MICs (mg/mL) detected for the strains, Pseudomonas spp, Micrococcus luteus, and Bacillus pumilus were 0.417, 3.33, and 1.458, respectively. Conclusively, CZNP antimicrobials proved to be effective as inhibitory agents against currently identified iytic microbial group, did not impact algae cells, and shows promise for in situ interventions.
机译:废水藻类生物质是生物燃料生产的有前途的选择。然而,微生物污染物构成藻类生物燃料产量的主要障碍。一系列藻类菌株Nannochhris oculata和Chlorella vulgaris样品(n = 30)购自得克萨斯大学,用于储液瓶培养和平板垂直生物反应器。根据实验室标准(CLSI),许多介质被用于隔离和区分潜在的污染物。进行常规PCR扩增,然后进行16S rDNA测序,以鉴定物种水平的分离株。通过最小抑菌浓度(MIC)测试和透射电子显微镜(TEM),对涉及天然壳聚糖和氧化锌(CZNPs)纳米胶束组合的纳米治疗剂针对微生物裂解基团进行了测试。结果表明在废水喂养的藻类反应器中存在大量的短小芽孢杆菌属/安全杆菌,纤维素纤维微纤维素酶,黄褐微球菌和表皮葡萄球菌。 TEM证实了CZNPs对裂解组的有效性,而菌株,假单胞菌属,黄球菌和短小芽孢杆菌的平均MIC(mg / mL)分别为0.417、3.33和1.458。最后,事实证明,CZNP抗菌剂可作为针对目前确定的溶菌微生物群的抑制剂有效,不影响藻类细胞,并显示出就地干预的希望。

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