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Isolation and Molecular Characterization of Heavy Metal-Resistant Azotobacter chroococcum from Agricultural Soil and Their Potential Application in Bioremediation

机译:农业土壤中耐重金属固氮菌的分离,分子鉴定及其在生物修复中的潜在应用

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Pollution of soil with heavy metals, herbicides, antibiotics and other chemicals is known to have a negative effect on microbial activities. Therefore, the aim of this study was to isolate cultures of Azotobacter sp. from polluted and unpolluted soils and to study the effect of these pollutants on their growth. A total of 120 Azotobacter sp. were isolated from soils irrigated with wastewater (contaminated soils) and groundwater (uncontaminated soils). These isolates were screened for resistance to heavy metals, herbicide and antibiotics. Also, the soils from which the cultures were isolated were analyzed for the concentrations of Zn2+, Cd2+, Cu2+, Pb2+ and Mn2+ they contained. Contaminated soil showed high levels of heavy metals as compared to uncontaminated soil. The size of the Azotobacter population in contaminated soil was lower than that in uncontaminated soil. Of the Azotobacter isolates, 64 that were recovered from contaminated soil exhibited high resistance to heavy metals (Hg2+, Cd2+, Cu2+, Cr3+, Co2+, Ni2+, Zn2+ and Pb2+) and herbicide 2,4-D compared to 56 isolates from uncontaminated soil. Also, isolates from contaminated soil showed high resistance to chloramphenicol, nitrofurantoin and co-trimoxazole compared to those isolated from uncontaminated soil. The majority of Azotobacter isolates from contaminated soil showed multiple-resistance to different metal ions and antibiotics. All isolates failed to grow at pH less than 6. Salt concentration (5%) was found to be inhibitory to all isolates. The most potent isolates from contaminated soil that showed multiresistance to all substances tested were identified on the basis of morphological and biochemical characteristics, and 16S rRNA as A. chroococcum. These resistant isolates could be employed in contaminated soils and/or bioremediation.
机译:已知重金属,除草剂,抗生素和其他化学物质对土壤的污染会对微生物活性产生负面影响。因此,本研究的目的是分离Azotobacter sp。的培养物。从污染和未污染的土壤中分离并研究这些污染物对其生长的影响。总共120个固氮菌属。从废水灌溉的土壤(被污染的土壤)和地下水(未污染的土壤)中分离出来。筛选了这些分离株对重金属,除草剂和抗生素的抗性。此外,分析了从中分离出培养物的土壤中所含的Zn2 +,Cd2 +,Cu2 +,Pb2 +和Mn2 +的浓度。与未污染的土壤相比,受污染的土壤显示出高水平的重金属。受污染的土壤中固氮菌种群的大小低于未受污染的土壤中。从污染土壤中回收的固氮菌分离物中,有64种对重金属(Hg2 +,Cd2 +,Cu2 +,Cr3 +,Co2 +,Ni2 +,Zn2 +和Pb2 +)和除草剂2,4-D具有较高的抗性,而从未经污染的土壤中分离出的56种分离出的除草剂。此外,与从未污染土壤中分离的菌株相比,从污染土壤中分离的菌株对氯霉素,硝基呋喃妥因和复方新诺明的耐药性更高。来自受污染土壤的大多数固氮菌分离株对不同的金属离子和抗生素具有多重耐药性。所有分离株均无法在pH低于6的条件下生长。发现盐浓度(5%)对所有分离株均具有抑制作用。根据形态和生化特征,以16S rRNA作为绿球菌,从受污染的土壤中分离出对所有测试物质均显示出多重耐药性的最强分离株。这些抗性分离株可用于受污染的土壤和/或生物修复。

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