Liu_2026_Bioresour.Technol_461_135530

Reference

Title : Tandem biocatalysis in synthetic microbial consortium: efficient polybutylene adipate terephthalate degradation coupled to polyhydroxybutyrate synthesis - Liu_2026_Bioresour.Technol_461_135530
Author(s) : Liu J , Yang J , Wang X , Xia Z , Jiang Z , Zhang X , Li F
Ref : Bioresour Technol , 461 :135530 , 2026
Abstract :

Polybutylene adipate terephthalate (PBAT) is prone to incomplete degradation, leading to environmental pollution and carbon resource waste. Biodegradation and valorization of waste plastics are essential for addressing plastic pollution and promoting a circular economy. Enzymatic degradation offers advantages, but free enzymes suffer from low stability and poor recyclability. Here, surface display technology was used to construct a cutinase Tfcut-DM display system in Escherichia coli BL21(DE3). The results showed that surface display significantly enhanced the stability and reusability of Tfcut-DM. Compared with free enzymes, its thermostability and pH stability increased by 11.9-fold and 42.1-fold, respectively, and approximately 80% of initial activity was retained after seven reuse cycles. Under optimized conditions, the surface-displayed strain released 255.9 microM of terephthalic acid (TPA) from PBAT films over 5 days, with near-complete degradation. To enable TPA valorization , the tph operon was introduced to C. necator H16 (CnH16-tph) for TPA-to-PHB conversion. A co-culture system comprising the surface-displayed strain and CnH16-tph was established for proof-of-concept one-pot conversion of PBAT to PHB. PHB accumulation is indirectly attributed to the TPA derived from PBAT degradation. Under optimized conditions, the maximum PHB yield reached 0.91 g/L. While isotopic tracing would be required for definitive carbon flux assignment, this indirect evidence strongly suggests the successful conversion of PBAT-derived TPA to PHB. This study provides a novel approach for the green degradation and resource utilization of waste PBAT, facilitating the recycling of discarded resources.

PubMedSearch : Liu_2026_Bioresour.Technol_461_135530
PubMedID: 42537939
Gene_locus related to this paper: thefu-q6a0i4

Related information

Substrate PBAT
Gene_locus thefu-q6a0i4

Citations formats

Liu J, Yang J, Wang X, Xia Z, Jiang Z, Zhang X, Li F (2026)
Tandem biocatalysis in synthetic microbial consortium: efficient polybutylene adipate terephthalate degradation coupled to polyhydroxybutyrate synthesis
Bioresour Technol 461 :135530

Liu J, Yang J, Wang X, Xia Z, Jiang Z, Zhang X, Li F (2026)
Bioresour Technol 461 :135530