Title : Accelerated biodegradation of polyethylene terephthalate by Thermobifida fusca cutinase mediated by Stenotrophomonas pavanii - Huang_2021_Sci.Total.Environ__152107 |
Author(s) : Huang QS , Yan ZF , Chen XQ , Du YY , Li J , Liu ZZ , Xia W , Chen S , Wu J |
Ref : Sci Total Environ , :152107 , 2021 |
Abstract :
Polyethylene terephthalate (PET) is a general plastic that produces a significant amount of waste due to its non-degradable properties. We obtained four bacteria (Stenotrophomonas pavanii JWG-G1, Comamonas thiooxydans CG-1, Comamonas koreensis CG-2 and Fulvimonas soli GM-1) that utilize PET as a sole carbon source through a novel stepwise screening and verification strategy. PET films pretreated with S. pavanii JWG-G1 exhibited weight loss of 91.4% following subsequent degradation by Thermobifida fusca cutinase (TfC). S. pavanii JWG-G1 was able to colonize the PET surface and maintain high cell viability (over 50%) in biofilm, accelerating PET degradation. Compared with PET films with no pretreatment, pretreatment with S. pavanii JWG-G1 caused the PET surface to be significantly rougher with greater hydrophilicity (contact angle of 86.3 +/- 2 degrees vs. 96.6 +/- 2 degrees), providing better opportunities for TfC to contact and act on PET. Our study indicates that S. pavanii JWG-G1 could be used as a novel pretreatment for efficiently accelerating PET biodegradation by TfC. |
PubMedSearch : Huang_2021_Sci.Total.Environ__152107 |
PubMedID: 34864034 |
Huang QS, Yan ZF, Chen XQ, Du YY, Li J, Liu ZZ, Xia W, Chen S, Wu J (2021)
Accelerated biodegradation of polyethylene terephthalate by Thermobifida fusca cutinase mediated by Stenotrophomonas pavanii
Sci Total Environ
:152107
Huang QS, Yan ZF, Chen XQ, Du YY, Li J, Liu ZZ, Xia W, Chen S, Wu J (2021)
Sci Total Environ
:152107