Solubilization and enhanced degradation of benzene phenolic derivatives—Bisphenol A/Triclosan using a biosurfactant producing white rot fungus Hypocrea lixii S5 with plant growth promoting traits

IF 4 2区 生物学 Q2 MICROBIOLOGY Frontiers in Microbiology Pub Date : 2024-09-18 DOI:10.3389/fmicb.2024.1433745
Mridula Chaturvedi, Navpreet Kaur, Pattanathu K. S. M. Rahman, Shashi Sharma
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Abstract

IntroductionEndocrine disrupting chemicals (EDCs) as benzene phenolic derivatives being hydrophobic partition to organic matter in sludge/soil sediments and show slow degradation rate owing to poor bioavailability to microbes.MethodsIn the present study, the potential of a versatile white rot fungal isolate S5 identified as Hypocrea lixii was monitored to degrade bisphenol A (BPA)/triclosan (TCS) under shake flask conditions with concomitant production of lipopeptide biosurfactant (BS) and plant growth promotion.ResultsSufficient growth of WRF for 5 days before supplementation of 50 ppm EDC (BPA/TCS) in set B showed an increase in degradation rates by 23% and 29% with corresponding increase in secretion of lignin-modifying enzymes compared to set A wherein almost 84% and 97% inhibition in fungal growth was observed when BPA/TCS were added at time of fungal inoculation. Further in set B, EDC concentration stimulated expression of laccase and lignin peroxidase (Lip) with 24.44 U/L of laccase and 281.69 U/L of Lip in 100 ppm BPA and 344 U/L Lip in 50 ppm TCS supplemented medium compared to their respective controls (without EDC). Biodegradation was also found to be correlated with lowering of surface tension from 57.02 mN/m (uninoculated control) to 44.16 mN/m in case of BPA and 38.49 mN/m in TCS, indicative of biosurfactant (BS) production. FTIR, GC-MS, and LC-ESI/MSMS confirmed the presence of surfactin lipopeptide isoforms. The WRF also displayed positive plant growth promoting traits as production of ammonia, indole acetic acid, siderophores, Zn solubilization, and 1-1-aminocyclopropane-1-carboxylate (ACC) deaminase activity, reflecting its soil restoration ability.DiscussionThe combined traits of biosurfactant production, EDC degradation and plant growth promotion displayed by WRF will help in emulsifying the hydrophobic pollutants favoring their fast degradation along with restoration of contaminated soil in natural conditions.
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利用具有促进植物生长特性的生产白腐菌 Hypocrea lixii S5 的生物表面活性剂,提高苯酚衍生物--双酚 A/三氯生的溶解和降解能力
导言干扰内分泌的化学物质(EDCs)作为苯酚衍生物,具有疏水性,可与污泥/土壤沉积物中的有机物结合,由于微生物的生物利用率低,因此降解速度缓慢。方法在本研究中,监测了被鉴定为 Hypocrea lixii 的多用途白腐真菌分离物 S5 在摇瓶条件下降解双酚 A(BPA)/三氯生(TCS)的潜力,并同时产生脂肽生物表面活性剂(BS)和促进植物生长。结果与 A 组相比,在 B 组中添加 50 ppm 的 EDC(BPA/TCS)之前,WRF 经过 5 天的充分生长后,降解率分别提高了 23% 和 29%,木质素改性酶的分泌量也相应增加。此外,在 B 组中,EDC 浓度刺激了漆酶和木质素过氧化物酶(Lip)的表达,与各自的对照组(不含 EDC)相比,在 100 ppm 双酚 A 和 50 ppm TCS 补充培养基中,漆酶的表达分别为 24.44 U/L 和 281.69 U/L ,木质素过氧化物酶的表达分别为 344 U/L 和 344 U/L 。还发现生物降解与表面张力从 57.02 mN/m(未接种对照)降低到 44.16 mN/m(双酚 A)和 38.49 mN/m(三氯氢硅)有关,这表明产生了生物表面活性剂(BS)。傅立叶变换红外光谱(FTIR)、气相色谱-质谱(GC-MS)和液相色谱-电喷雾串联质谱(LC-ESI/MSMS)证实了表面活性素脂肽异构体的存在。WRF 还表现出促进植物生长的积极特性,如产生氨、吲哚乙酸、苷元、锌增溶以及 1-1-aminocyclopropane-1-carboxylate (ACC) 脱氨酶活性,这反映了其土壤修复能力。讨论 WRF 所表现出的生物表面活性剂生产、EDC 降解和促进植物生长的综合特性将有助于乳化疏水性污染物,使其快速降解并在自然条件下修复受污染的土壤。
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来源期刊
CiteScore
7.70
自引率
9.60%
发文量
4837
审稿时长
14 weeks
期刊介绍: Frontiers in Microbiology is a leading journal in its field, publishing rigorously peer-reviewed research across the entire spectrum of microbiology. Field Chief Editor Martin G. Klotz at Washington State University is supported by an outstanding Editorial Board of international researchers. This multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, clinicians and the public worldwide.
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