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Toxic metals accumulation in Trichoderma asperellum and T-harzianum

机译:Trichoderma asperellum和T-harzianum中有毒金属积累

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Heavy metal contamination represents an important environmental issue due to the toxic effects of metals on different organisms. Filamentous fungi play an important impact in the bioremediation of heavy metal-contaminated wastewater and soil. The purpose of this investigation was to observe fungal uptake behavior toward heavy metal. For this aim Trichoderma asperellum TS141 and T. harzianum TS103 at growth period were screened for their tolerance and uptake capability of cadmium (Cd), lead (Pb) and nickel (Ni) at different concentrations (0, 25, 50, 100, and 200 mg/L) in PDB media (potato dextrose broth as a complex medium). Results showed that both fungi were able to survive at the maximum concentration of 200 mg/L of the heavy metals, and remove them. T. asperellum had a better uptake capacity for Cd compared to Pb and Ni in the highest metal concentration in media. Maximum removal efficiency of Pb (68.4%) at 100 mg/L and Ni (78%) at 200 mg/L was performed by T. asperellum. For Cd, the highest removal efficiency (82.1%) was recorded by T. harzianum at 200 mg/L Cd in aqueous solution. The uptake of Cd was highly dependent on pH of solution than Pb and Ni so that the optimal pH of Cd uptake was 9 for T. asperellum and 4 for T. harzianum. Also, optimal temperature was 35A degrees C for Cd and Pb uptake in both fungi, whereas for Ni uptake was 30 and 35A degrees C in T. harzianum and T. asperellum, respectively. We propose that T. asperellum TS141 and T. harzianum TS103 can be used as a bioremediation agent for metal remediation from wastewater and heavy metal-contaminated soils.
机译:由于金属对不同生物的毒性作用,重金属污染是一个重要的环境问题。丝状真菌在重金属污染的废水和土壤的生物修复中发挥着重要影响。本调查的目的是观察对重金属的真菌摄取行为。对于该目的,在不同浓度(0,25,50,100,和PDB介质中200 mg / l)(马铃薯右旋糖汤作为复合介质)。结果表明,两个真菌能够以200mg / L的重金属的最大浓度存活,并将其取下。与培养基中最高金属浓度的Pb和Ni相比,T.Sperellum对Cd的摄取能力更好。通过T.Sperellum进行100mg / L和Ni(78%)在100mg / L和Ni(78%)的最大去除效率。对于CD,在水溶液中的200mg / L Cd的T. harzianum将最高的去除效率(82.1%)记录。 CD的摄取高度依赖于溶液的pH,而不是Pb和Ni,使得CD摄取的最佳pH为9,对于T. harzianum,4°F为9。此外,在真菌中的Cd和Pb摄取的最佳温度为35Ac,而Ni摄取分别为30%和35A℃,分别为Harzianum和T.Sperellum。我们提出T.Sperellum TS141和T. Harzianum TS103可用作来自废水和重金属污染的土壤的金属修复的生物化剂。

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