首页> 外文期刊>Journal of Bioremediation & Biodegradation >Biodegradation of Hexachlorocyclohexane (HCH) Isomers by White Rot Fungus, Pleurotus florida
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Biodegradation of Hexachlorocyclohexane (HCH) Isomers by White Rot Fungus, Pleurotus florida

机译:白腐菌,侧耳菌对六氯环己烷(HCH)异构体的生物降解

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Hexachlorocyclohexane (HCH) isomers are reported to persist in the environment long after their usage is discontinued. Pleurotus florida, a white rot fungus, was found to degrade not only γ-HCH but also its more persistent isomers individually as well as a mixture in a Raper’s complete medium. Within 30 days γ-HCH degraded completely, whereas other 3 isomers degraded 92-99%. The degradation rate was γ-HCH>β-HCH>α- and δ-HCH. The mycelium biomass was free from γ-HCH residues but accumulated about 3% residues of other 3 isomers. Presence of intermediate metabolites was not detected indicating complete mineralization of HCH isomers. Ability of P. florida to degrade HCH isomers was further studied in soil by amendment with spent mushroom substrate (SMS). SMS addition could marginally increase degradation of α-, β- and δ-HCH, but significantly increased degradation of γ-HCH. When the study was repeated similar trend was observed. The half-life of degradation of γ-HCH was 439-570 days in un-amended soil while 37-42 days in SMS amended soil. For other 3 stable isomers the half-life was reduced from 686-828 to 88-125 days by SMS amendments. These results indicate that SMS from P. florida cultivation can be utilized for bioremediation of HCH contaminated site.
机译:据报道,六氯环己烷(HCH)异构体在停止使用后很长时间仍在环境中存在。发现白灵菇菌侧耳不仅可以降解γ-六氯环己烷,而且可以降解其更持久的异构体,以及在Raper完全培养基中的混合物。在30天内,γ-六氯环己烷完全降解,而其他3种异构体则降解92-99%。降解速率为γ-HCH>β-HCH>α-和δ-HCH。菌丝体生物量不含γ-HCH残留,但积累了其他3种异构体的约3%残留。未检测到中间代谢物的存在,表明六氯环己烷异构体已完全矿化。通过用废蘑菇底物(SMS)进行改良,进一步研究了佛罗里达假单胞菌降解六氯环己烷异构体的能力。加入SMS可以稍微增加α-,H-和δ-HCH的降解,但显着增加γ-HCH的降解。当重复研究时,观察到类似趋势。在未改良的土壤中,γ-六氯环己烷的降解半衰期为439-570天,而在SMS改良的土壤中,其降解半衰期为37-42天。对于其他3种稳定的异构体,SMS修正将其半衰期从686-828天缩短至88-125天。这些结果表明,来自佛罗里达假单胞菌栽培的SMS可用于HCH污染部位的生物修复。

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