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表达恶臭假单胞菌儿茶酚1,2-双加氧酶基因的大肠杆菌对异丙隆的生物降解作用

Biodegradation of isoproturon by Escherichia coli expressing a Pseudomonas putida catechol 1,2-dioxygenase gene.

作者信息

Elarabi Nagwa I, Abdelhadi Abdelhadi A, Nassrallah Amr A, Mohamed Mahmoud S M, Abdelhaleem Heba A R

机构信息

Department of Genetics, Faculty of Agriculture, Cairo University, Giza, 12613, Egypt.

Department of Biochemistry, Faculty of Agriculture, Cairo University, Giza, 12613, Egypt.

出版信息

AMB Express. 2023 Sep 26;13(1):101. doi: 10.1186/s13568-023-01609-9.

Abstract

The phenylurea herbicides are persistent in soil and water, necessitating the creation of methods for removing them from the environment. This study aimed to examine the soil microbial diversity, searching for local bacterial isolates able to efficiently degrade the phenylurea herbicide isoproturon, 3-(4-isopropylphenyl)-1, 1-dimethylurea (IPU). The best isolates able to effectively degrade IPU were selected, characterized, and identified as Pseudomonas putida and Acinetobacter johnsonii. The catechol 1, 2-dioxygenase enzyme's catA gene was amplified, cloned, and expressed in E. coli M15. The Expressed E. coli showed high degradation efficiency (44.80%) as analyzed by HPLC after 15 days of inoculation in comparison to P. putida (21.60%). The expression of the catA gene in P. putida and expressed E. coli was measured using quantitative polymerase chain reaction (qPCR). The results displayed a significant increase in the mRNA levels of the catA gene by increasing the incubation time with IPU. Hydrophilic interaction chromatography (HILIC) mass spectrometry analysis revealed that three intermediate metabolites, 1-(4-isopropylphenyl)-3-methylurea (MDIPU), 4-Isopropylaniline (4-IA) and 1-(4-isopropylphenyl) urea (DDIPU) were generated by both P. putida and expressed E. coli. In addition, IPU-induced catA activity was detected in both P. putida and expressed E. coli. The supernatant of both P. putida and expressed E. coli had a significant influence on weed growth. The study clearly exhibited that P. putida and expressed E. coli were capable of metabolizing IPU influentially and thus could be utilized for bioremediation and biodegradation technology development.

摘要

苯基脲类除草剂在土壤和水中具有持久性,因此需要开发从环境中去除它们的方法。本研究旨在检测土壤微生物多样性,寻找能够有效降解苯基脲类除草剂异丙隆(3-(4-异丙基苯基)-1,1-二甲基脲,IPU)的本地细菌分离株。筛选出能够有效降解IPU的最佳分离株,对其进行表征并鉴定为恶臭假单胞菌和约翰逊不动杆菌。扩增儿茶酚1,2-双加氧酶的catA基因,将其克隆并在大肠杆菌M15中表达。接种15天后,通过高效液相色谱分析,表达后的大肠杆菌显示出较高的降解效率(44.80%),相比之下恶臭假单胞菌的降解效率为21.60%。使用定量聚合酶链反应(qPCR)测定catA基因在恶臭假单胞菌和表达后的大肠杆菌中的表达情况。结果显示,随着与IPU孵育时间的增加,catA基因的mRNA水平显著升高。亲水相互作用色谱(HILIC)质谱分析表明,恶臭假单胞菌和表达后的大肠杆菌均产生了三种中间代谢产物,即1-(4-异丙基苯基)-3-甲基脲(MDIPU)、4-异丙基苯胺(4-IA)和1-(4-异丙基苯基)脲(DDIPU)。此外,在恶臭假单胞菌和表达后的大肠杆菌中均检测到IPU诱导的catA活性。恶臭假单胞菌和表达后的大肠杆菌的上清液对杂草生长均有显著影响。该研究清楚地表明,恶臭假单胞菌和表达后的大肠杆菌能够有效地代谢IPU,因此可用于生物修复和生物降解技术的开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97ad/10522561/cae7607f9476/13568_2023_1609_Fig1_HTML.jpg

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