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Bioremediation of PCP by Trichoderma and Cunninghamella Strains Isolated from Sawdust

机译:从木屑中分离木霉和坎宁哈氏菌对五氯苯酚的生物修复

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Four fungal isolates, SD12, SD14, SD19 and SD20 isolated from the aged sawdust grew on agar plates supplemented with PCP up to a concentration of 100 mg L-1. At high PCP concentration, isolate SD12 showed the highest radial growth rate of 10 mm day-1, followed by SD14 and SD19 both with 4.5 mm day-1 and SD20 with 4.2 mm day-1. Ultrastructural study on the effect of PCP on the PCP tolerant fungi using scanning electron microscope showed that high concentration of PCP caused the collapse of both fungal hyphae and spores. Among the four PCP tolerant fungi examined, isolate SD12 showed the least structural damage at high PCP concentration of 100 mg L-1. This fungal isolate was further characterized and identified as Cunninghamella sp. UMAS SD12. Preliminary PCP biodegradation trial performed in liquid minimal medium supplemented with 20 mg L-1 of PCP using Cunninghamella sp. UMAS SD12 showed that the degradation up to 51.7% of PCP in 15 days under static growth condition.
机译:从陈旧的木屑中分离出的四种真菌分离物SD12,SD14,SD19和SD20在添加有PCP的琼脂平板上生长,浓度高达100 mg L-1。在高PCP浓度下,分离株SD12的径向生长速率最高,为10 mm 1天,其次是SD14和SD19均为4.5 mm 1天,而SD20则为4.2 mm 1天。用扫描电子显微镜对五氯苯酚对耐五氯苯酚的真菌进行的超微结构研究表明,高浓度的五氯苯酚会引起真菌菌丝和孢子的崩溃。在所检查的四种PCP耐性真菌中,分离物SD12在100 mg L-1的高PCP浓度下显示出最小的结构破坏。该真菌分离物被进一步表征并鉴定为Cunninghamella sp。 UMAS SD12。使用Cunninghamella sp。在补充了20 mg L-1 PCP的液体基本培养基中进行PCP的初步生物降解试验。 UMAS SD12表明,在静态生长条件下,在15天内PCP的降解率高达51.7%。

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