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2,4,6-trinitrotoluene (TNT) tolerance and biotransformation potential of microfungi isolated from TNT-contaminated soil

机译:从被TNT污染的土壤中分离出来的微真菌的2,4,6-三硝基甲苯(TNT)耐受性和生物转化潜力

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Seventy-one strains of fungi belonging to 53 species of Zygomycota and mitosporic fungi were isolated from soils containing different levels of 2,4,6-trinitrotoluene (TNT). Three moderately contaminated samples (500 ppm) and an uncontaminated control contained a rich diversity of species whereas few fungi were isolated from a heavily contaminated sample (1000 ppm). Most isolates were capable of biotransforming TNT into aminodinitrotoluenes and azoxy-dimers, although they differed widely in their tolerance of TNT. Spore germination was generally more strongly inhibited by TNT than hyphal growth. Among the Zygomycota, Absidia and Cunninghamella were highly TNT-tolerant and attacked the substrate even when this had precipitated at 1000 ppm, whereas 12 of the 14 Mortierella isolates were intolerant of TNT above 50 ppm. Among the mitosporic fungi, Acremonium, Cylindrocarpon, Gliocladium and Trichoderma but not Penicillium species were highly tolerant of TNT and had a high capacity to biotransform this compound. Large variations in these properties were determined between species and even strains belonging to the same species, and between different isolates from the same soil sample. Populations of soil microfungi therefore show a high natural variation of TNT tolerance and biotransformation ability, irrespective of any previous long-term exposure to this xenobiotic.
机译:从含有不同水平的2,4,6-三硝基甲苯(TNT)的土壤中分离出71种真菌,分别属于Zygomycota和丝裂菌的53种。三个中度污染的样品(500 ppm)和一个未污染的对照含有丰富的物种多样性,而从重度污染的样品(1000 ppm)中分离出的真菌很少。尽管它们对TNT的耐受性差异很大,但大多数分离物都能够将TNT生物转化为氨基二硝基甲苯和乙氧基二聚体。通常,TNT比菌丝生长更能抑制孢子萌发。在合子菌中,Absidia和Cunninghamella高度耐受TNT,即使在1000 ppm沉淀时仍能侵袭底物,而14个Mortierella分离株中的12个不​​耐受50 ppm以上的TNT。在有丝分裂的真菌中,顶孢菌属,圆柱果皮,胶质金刚毛和木霉属菌而不是青霉属菌种对TNT具有高度的耐受性,并且具有生物转化该化合物的能力。这些性质的很大差异被确定在物种之间,甚至属于同一物种的菌株之间,以及来自同一土壤样品的不同分离株之间。因此,无论以前是否长期接触这种异生物,土壤微真菌种群均表现出较高的天然对TNT耐受性和生物转化能力。

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