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Benzimidazole fungicide biotransformation by comammox Nitrospira bacteria: Transformation pathways and associated proteomic responses

  • Ping Han*
  • , Ana B. Rios-Miguel
  • , Xiufeng Tang
  • , Yaochun Yu
  • , Li Jun Zhou*
  • , Lijun Hou
  • , Min Liu
  • , Dongyao Sun
  • , Mike S.M. Jetten
  • , Cornelia U. Welte
  • , Yujie Men*
  • , Sebastian Lücker
  • *此作品的通讯作者
  • Institute of Eco-Chongming (IEC)
  • Radboud University Nijmegen
  • East China Normal University
  • University of California at Riverside
  • University of Illinois
  • CAS - Nanjing Institute of Geography and Limnology
  • Suzhou University of Science and Technology

科研成果: 期刊稿件文章同行评审

摘要

Benzimidazole fungicides are frequently detected in aquatic environments and pose a serious health risk. Here, we investigated the metabolic capacity of the recently discovered complete ammonia-oxidizing (comammox) Nitrospira inopinata and kreftii to transform a representative set of benzimidazole fungicides (i.e., benzimidazole, albendazole, carbendazim, fuberidazole, and thiabendazole). Ammonia-oxidizing bacteria and archaea, as well as the canonical nitrite-oxidizing Nitrospira exhibited no or minor biotransformation activity towards all the five benzimidazole fungicides. In contrast, the investigated comammox bacteria actively transformed all the five benzimidazole fungicides, except for thiabendazole. The identified transformation products indicated hydroxylation, S-oxidation, and glycosylation as the major biotransformation pathways of benzimidazole fungicides. We speculated that these reactions were catalyzed by comammox-specific ammonia monooxygenase, cytochrome P450 monooxygenases, and glycosylases, respectively. Interestingly, the exposure to albendazole enhanced the expression of the antibiotic resistance gene acrB of Nitrospira inopinata, suggesting that some benzimidazole fungicides could act as environmental stressors that trigger cellular defense mechanisms. Altogether, this study demonstrated the distinct substrate specificity of comammox bacteria towards benzimidazole fungicides and implies their significant roles in the biotransformation of these fungicides in nitrifying environments.

源语言英语
文章编号130558
期刊Journal of Hazardous Materials
445
DOI
出版状态已出版 - 5 3月 2023

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    可持续发展目标 3 良好健康与福祉

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