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Integrated multi-omics analyses reveal the biochemical mechanisms and phylogenetic relevance of anaerobic androgen biodegradation in the environment

  • Fu Chun Yang
  • , Yi Lung Chen
  • , Sen Lin Tang
  • , Chang Ping Yu
  • , Po Hsiang Wang
  • , Wael Ismail
  • , Chia Hsiang Wang
  • , Jiun Yan Ding
  • , Cheng Yu Yang
  • , Chia Ying Yang
  • , Yin Ru Chiang*
  • *Corresponding author for this work
  • Academia Sinica - Biodiversity Research Center
  • National Taiwan Normal University
  • National Taiwan University
  • University of Toronto
  • Arabian Gulf University

Research output: Contribution to journalJournal Article peer-review

50 Scopus citations

Abstract

Steroid hormones, such as androgens, are common surface-water contaminants. However, literature on the ecophysiological relevance of steroid-degrading organisms in the environment, particularly in anoxic ecosystems, is extremely limited. We previously reported that Steroidobacter denitrificans anaerobically degrades androgens through the 2,3-seco pathway. In this study, the genome of Sdo. denitrificans was completely sequenced. Transcriptomic data revealed gene clusters that were distinctly expressed during anaerobic growth on testosterone. We isolated and characterized the bifunctional 1-testosterone hydratase/dehydrogenase, which is essential for anaerobic degradation of steroid A-ring. Because of apparent substrate preference of this molybdoenzyme, corresponding genes, along with the signature metabolites of the 2,3-seco pathway, were used as biomarkers to investigate androgen biodegradation in the largest sewage treatment plant in Taipei, Taiwan. Androgen metabolite analysis indicated that denitrifying bacteria in anoxic sewage use the 2,3-seco pathway to degrade androgens. Metagenomic analysis and PCR-based functional assays showed androgen degradation in anoxic sewage by Thauera spp. through the action of 1-testosterone hydratase/dehydrogenase. Our integrative 'omics' approach can be used for culture-independent investigations of the microbial degradation of structurally complex compounds where isotope-labeled substrates are not easily available.

Original languageEnglish
Pages (from-to)1967-1983
Number of pages17
JournalISME Journal
Volume10
Issue number8
DOIs
StatePublished - 01 08 2016
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2016 International Society for Microbial Ecology All rights reserved.

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 6 - Clean Water and Sanitation
    SDG 6 Clean Water and Sanitation

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