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A Catabolic Powerhouse for Biorefineries: Characterization and Engineering Erwinia spp. Strain LJJL01 to Produce Bioproducts

  • Lakshika Dissanayake
  • , Bhagya Kolitha
  • , Sandipty Kayastha
  • , Abigail Sparks
  • , Ryaan Ligon
  • , Saptarshi Ghosh
  • , Dushmantha Madushanka
  • , Sandhya Jayasekara
  • , Isabelle Hou
  • , Elwood Sheflin
  • , Jeffrey Linger
  • , Scott Hamilton-Brehm
  • , Lahiru Jayakody
  • Southern Illinois University System
  • Carbondale Community High School

Research output: Contribution to journalArticlepeer-review

Abstract

Nonmodel microbial hosts can efficiently biotransform unconventional organic feedstocks into advanced bioproducts, leveraging their superior metabolic capabilities and resilience to process-relevant physicochemical conditions. In this study, we domesticated Erwinia spp. strain. LJJL01 (Er LJJL01) as a potent microbial chassis to advance the emerging biorefinery strategy for the valorization of lignin-rich biomass and plastic, thereby enabling the circular economy. The strain exhibits remarkable chemical tolerance and can biofunnel various substrates, including sugars, acids, polyols, and aromatics, in minimal salt media to produce native fine chemicals such as acetoin, 2,3-butanediol, and lactic acid. As a proof of concept, engineering this strain with advanced genetic tools enables the production of tailored high-value chemicals, such as cis,cis-muconate from plastic-derived terephthalate and polyhydroxybutyrate from lignocellulosic hydrolysate. We established Er LJJL01 as a potent microbial chassis for the green synthesis of bioproducts from unconventional organic feedstocks.
Original languageAmerican English
Number of pages28
JournalTrends in Biotechnology
DOIs
StatePublished - 2026

NLR Publication Number

  • NLR/JA-2800-100055

Keywords

  • cis cis-muconate
  • Erwinia spp. strain LJJL01
  • metabolic engineering
  • polyhydroxybutyrate
  • waste upcycling

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