Beyond low lignin: Identifying the primary barrier to plant biomass conversion by fermentative bacteria.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 39423261.
- Also identified by DOI 10.1126/sciadv.adq4941 and PMC identifier 11488576.
- Licence recorded as CC BY-NC.
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Abstract
Renewable alternatives for nonelectrifiable fossil-derived chemicals are needed and plant matter, the most abundant biomass on Earth, provide an ideal feedstock. However, the heterogeneous polymeric composition of lignocellulose makes conversion difficult. Lignin presents a formidable barrier to fermentation of nonpretreated biomass. Extensive chemical and enzymatic treatments can liberate fermentable carbohydrates from plant biomass, but microbial routes offer many advantages, including concomitant conversion to industrial chemicals. Here, testing of lignin content of nonpretreated biomass using the cellulolytic thermophilic bacterium, <i>Anaerocellum bescii</i>, revealed that the primary microbial degradation barrier relates to methoxy substitutions in lignin. This contrasts with optimal lignin composition for chemical pretreatment that favors high S/G ratio and low H lignin. Genetically modified poplar trees with diverse lignin compositions confirm these findings. In addition, poplar trees with low methoxy content achieve industrially relevant levels of microbial solubilization without any pretreatments and with no impact on tree fitness in greenhouse.
Medical subject headings
- Lignin
- Biomass
- Fermentation
- Populus