首页> 外文期刊>Journal of Microbiology, Biotechnology and Food Sciences >BIOSYNTHESIS OF Mg AND Mn INTRACELLULAR NANOPARTICLES VIA EXTREMO-METALLOTOLERANT Pseudomonas stutzeri, B4 Mg/W and Fusarium nygamai, F4 Mn/S
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BIOSYNTHESIS OF Mg AND Mn INTRACELLULAR NANOPARTICLES VIA EXTREMO-METALLOTOLERANT Pseudomonas stutzeri, B4 Mg/W and Fusarium nygamai, F4 Mn/S

机译:极端耐金属性斯氏假单胞菌,B4 Mg / W和Nymaimai镰刀菌,F4 Mn / S合成镁和锰胞内纳米颗粒

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Thirteen microbial isolates were evaluated for green synthesis of Mg and Mn nanoparticles. The isolates were come from soil and wastewater samples from detergent processing industry. Metallotolerance ability of isolates was assessed towards these metals. Bacterial isolate B4 Mg/W was selected as highly extremo-tolerant for Mg+2 and can grow between 800 to 15000ppm (80-1500%)and was identified as Pseudomonas stutzeri, B4 Mg/W. Fungal isolate F4 Mn/ S was selected as extremo-tolerant for Mn+2 and grow in the range 800 to 45000ppm (80-4500%) and was identified as Fusarium nygamai, F4 Mn/ S. Biosynthesis of the Mg and Mn nanoparticles was achieved in both cases extracellular and intracellular. The nanoparticles were characterized using atomic absorption spectrophotometer (AAS), dynamic light scattering (DLS) and transmission electron microscope (TEM). Pseudomonas stutzeri, B4 Mg/W nanoparticle size was ranges from (229.3-553.2 nm) with different mean number for each size, the maximum mean number 33.7% was that of the particles with size 356.2 r. nm and atomic absorption spectrophotometer (AAS) revealed uptake percentage of the metal was 35.17%. Fusarium nygamai, F4 Mn/ S nanoparticles ranges from (61.21-127.5 to 412.5 nm) with different mean numbers for each size, the maximum mean number 23.1% was that of the particle size 82.09 nm and range from 23.1 to 28.1 % and AAS was 27.07%. Antimicrobial activity against Streptococcus pyogenes RCMB010015, 31.25 and 62.5 mm followed by Candida albicans RCMB05035, 15.63 and 62.5; then Staphylococcus aureus RCMB010027 and Eschericia coli RCMB010056 gave7.81and 62.5mm for both; while for Aspergillus fumigates RCMB02564 gave the least amount of inhibition 1.95 and 15.63mm; moreover Pseudomonas aeruginosa RCMB010043 was very resistant for both Pseudomonas stutzeri, B4 Mg/W and Fusarium nygamai, F4 Mn/S inracellular nanoparticles, respectively.
机译:评价了13种微生物分离物的Mg和Mn纳米颗粒的绿色合成。分离物来自洗涤剂加工行业的土壤和废水样品。评估了分离物对这些金属的金属毒力。细菌分离物B4 Mg / W被选为对Mg + 2具有极高的耐受性,且可生长在800至15000ppm(80-1500%)之间,并被鉴定为斯氏假单胞菌B4 Mg / W。真菌分离物F4 Mn / S被选作Mn + 2的极度耐受菌,生长范围为800至45000ppm(80-4500%),并被鉴定为枯萎镰孢(Fusarium nygamai),F4 Mn /S。在细胞外和细胞内均可达到。使用原子吸收分光光度计(AAS),动态光散射(DLS)和透射电子显微镜(TEM)对纳米颗粒进行表征。 Stutzeri假单胞菌,B4 Mg / W纳米颗粒的大小在(229.3-553.2 nm)之间,每种大小的平均数不同,最大平均数是36.2%,为356.2 r。原子吸收分光光度计(AAS)测得其对金属的吸收百分比为35.17%。枯萎镰刀菌(Fusarium nygamai),F4 Mn / S纳米颗粒的范围为(61.21-127.5至412.5 nm),每种尺寸均值不同,最大平均数为23.1%是粒径82.09 nm的最大值,范围为23.1至28.1%,AAS为27.07%。对化脓链球菌RCMB010015、31.25和62.5mm的抗菌活性,其次是白色念珠菌RCMB05035、15.63和62.5;金黄色葡萄球菌RCMB010027和大肠杆菌RCMB010056分别为7.81和62.5mm。对于熏蒸曲霉,RCMB02564的抑制作用最小,为1.95mm和15.63mm。此外,铜绿假单胞菌RCMB010043分别对斯图氏假单胞菌,B4 Mg / W和Nymaimai镰刀菌,F4 Mn / S胞内纳米颗粒均具有很高的抗性。

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