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Biodegradation of endocrine disruptor Bisphenol A by Pseudomonas putida strain YC-AE1 isolated from polluted soil, Guangdong, China

机译:普通污染土壤中普赖达菌株YC-AE1的普通菌菌菌菌菌菌菌菌菌株生物降解

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Bisphenol A is an important organic chemical as an intermediate, final and inert ingredient in manufacturing of many important products like polycarbonate plastics, epoxy resins, flame retardants, food–drink packaging coating, and other. BPA is an endocrine disruptor compound that mimics the function of estrogen causing damage to reproductive organs. Bacterial degradation has been consider as a cost effective and eco-friendly method for BPA degradation compared with physical and chemical methods. This study aimed to isolate and identify bacterial strain capable to degrade and tolerate high concentrations of this pollutant, studying the factors affecting the degradation process and study the degradation mechanism of this strain. YC-AE1 is a Gram negative bacterial strain isolated from soil and identified as Pseudomonas putida by 16S rRNA gene sequence and BIOLOG identification system. This strain found to have a high capacity to degrade the endocrine disruptor Bisphenol A (BPA). Response surface methodology using central composite design was used to statistically optimize the environmental factors during BPA degradation and the results obtained by significant model were 7.2, 30?°C and 2.5% for optimum initial pH, temperature and inoculum size, respectively. Prolonged incubation period with low NaCl concentration improve the biodegradation of BPA. Analysis of variance (ANOVA) showed high coefficient of determination, R2 and Adj-R2 which were 0.9979 and 0.9935, respectively. Substrate analysis found that, strain YC-AE1 could degrade a wide variety of bisphenol A-related pollutants such as bisphenol B, bisphenol F, bisphenol S, Dibutyl phthalate, Diethylhexyl phthalate and Diethyl phthalate in varying proportion. Pseudomonas putida YC-AE1 showed high ability to degrade a wide range of BPA concentrations (0.5–1000?mg?l??1) with completely degradation for 500?mg?l??1 within 72?h. Metabolic intermediates detected in this study by HPLC-MS were identified as 4,4-dihydroxy-alpha-methylstilbene, p-hydroxybenzaldeyde, p-hydroxyacetophenone, 4-hydroxyphenylacetate, 4-hydroxyphenacyl alcohol, 2,2-bis(4-hydroxyphenyl)-1-propanol, 1,2-bis(4-hydroxyphenyl)-2-propanol and 2,2-bis(4-hydroxyphenyl) propanoate. This study reports Pseudomonas putida YC-AE1 as BPA biodegrader with high performance in degradation and tolerance to high BPA concentration. It exhibited strong degradation capacity and prominent adaptability towards a wide range of environmental conditions. Moreover, it degrades BPA in a short time via two different degradation pathways.
机译:双酚A是一种重要的有机化学品,作为一种中间体,最终和惰性成分,制造许多重要产品,如聚碳酸酯塑料,环氧树脂,阻燃剂,食品饮料包装涂料等。 BPA是一种内分泌破坏剂化合物,模仿雌激素的功能,导致生殖器官损伤。与物理和化学方法相比,细菌降解已被认为是BPA降解的成本效益和生态友好的方法。本研究旨在分离和鉴定能够降解和耐受这种污染物的高浓度的细菌菌株,研究影响降解过程的因素并研究该菌株的降解机制。 YC-AE1是从土壤中分离的革兰氏阴性细菌菌株,并通过16S rRNA基因序列和Biolog识别系统鉴定为Pseudomonas普赖达。该菌株发现具有高容量来降解内分泌破坏剂双酚A(BPA)。使用中央复合设计的响应面方法用于统计上的BPA降解期间的环境因子,并且通过显着模型获得的结果分别为优化初始pH,温度和接种尺寸。具有低NaCl浓度的延长孵育期改善了BPA的生物降解。方差分析(ANOVA)显示出高度的测定系数,R2和adj-R2分别为0.9979和0.9935。底物分析发现,菌株YC-AE1可以降解各种各样的双酚A相关污染物,例如双酚B,双酚F,双酚S,邻苯二甲酸二丁酯,邻苯二甲酸二乙酯和不同比例的邻苯二甲酸二乙酯。 Pseudomonas pieida YC-AE1表现出高能力,可降低各种BPA浓度(0.5-1000×mg?l ?? 1),以完全降解500Ωmg≤1??在72℃内。通过HPLC-MS检测到该研究中检测到的代谢中间体被鉴定为4,4-二羟基-α-甲基 - 甲基苯乙烯,对羟基苯甲醛,对羟基乙酮,4-羟基苯基乙酸乙酯,4-羟基苯基醇,2,2-双(4-羟基苯) -1-丙醇,1,2-双(4-羟基苯基)-2-丙醇和2,2-双(4-羟基苯基)丙酸盐。本研究将假单胞菌普赖达YC-AE1作为BPA生物学家报告,具有高性能的降解和对高BPA浓度的耐受性。它表现出强大的降解能力和对广泛的环境条件的突出适应性。此外,它通过两个不同的降解途径在短时间内降解了BPA。

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