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Isolation and characterization of formaldehyde-degrading fungi and its formaldehyde metabolism

机译:降解甲醛的真菌的分离,表征及其甲醛代谢

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Formaldehyde is classified as a human carcinogen that may cause nasopharyngeal cancer and probably leukemia. The effects of environmental and nutritional factors on fungal growth and the biodegradation of formaldehyde were investigated. Fungal strains SGFA1 and SGFA3 isolated from untreated sewage sediment samples collected from heavily formaldehyde-contaminated areas were identified using morphological characteristics and molecular techniques and named as Aspergillus nomius SGFA1 and Penicillium chrysogenum SGFA3. Results indicate that SGFA1 and SGFA3 completely consumed 3,000 and 900 mg 1~(-1) of formaldehyde, respectively, within 7 days under optimized conditions. Quantitative real-time PCR analyses and enzyme activity analyses demonstrated that glutathione-dependent formaldehyde dehydrogenase (GDFADH) and formate dehydrogenase (FDH) pathway may play a functional role in enhancing formaldehyde-degrading capability in SGFA1. Both fungi have potential use for remediation of formaldehyde pollution.
机译:甲醛被归类为人类致癌物,可能导致鼻咽癌和白血病。研究了环境和营养因素对真菌生长和甲醛生物降解的影响。使用形态特征和分子技术,从未经甲醛污染严重的地区收集的未经处理的污水沉积物样品中分离出真菌菌株SGFA1和SGFA3,并将其命名为黑曲霉SGFA1和产黄青霉SGFA3。结果表明,在优化条件下,SGFA1和SGFA3在7天内分别完全消耗了3,000和900 mg 1〜(-1)甲醛。实时定量PCR分析和酶活性分析表明,谷胱甘肽依赖性甲醛脱氢酶(GDFADH)和甲酸脱氢酶(FDH)途径可能在增强SGFA1的甲醛降解能力中起功能性作用。两种真菌都有潜在的补救甲醛污染的用途。

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