Seamless and orthogonal expression of genetic parts in polyhydroxyalkanoate (PHA)-producing bacterial chassis for plastic bio-upcycling applications

Matthlessa Matthew Minggu, Nur Anisza Hanoum Naseron, Hazlam Shamin Ahmad Shaberi,Nor Azlan Nor Muhammad,Syarul Nataqain Baharum,Ahmad Bazli Ramzi

MethodsX(2023)

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摘要
Polyhydroxyalkanoate (PHA)-producing bacteria represent a powerful synthetic biology chassis for waste bioconversion and bio-upcycling where PHAs can be produced as the final products. In this study, we present a seamless plasmid construction for orthogonal expression of recombinant PET hydrolase (PETase) in model PHA-producing bacteria P. putida and C. necator. To this end, this study described seamless cloning and expression methods utilizing SureVector (SV) system for generating pSV-Ortho-PHA (pSVOP) expression platform in bioengineered P. putida and C. necator. Genetic parts specifically Trc promoter, pBBR1 origin of replication, anchoring proteins and signal sequences were utilized for the transformation of pSVOP-based plasmid in electrocompetent cells and orthogonal expression of PETase in both P. putida and C. necator. Validation steps in confirming functional expression of PETase activity in corresponding PETase-expressing strains were also described to demonstrate seamless and detailed methods in establishing bioengineered P. putida and C. necator as whole-cell biocatalysts tailored for plastic bio-upcycling.center dot Seamless plasmid construction for orthogonal expression in PHA-producing bacteria.center dot Step-by-step guide for high-efficiency generation of electrotransformants of P. putida and C. necator.center dot Adaptable methods for rapid strain development (Design, Build, Test and Learn) for whole-cell biocatalysis.
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关键词
Orthogonal expression,PHA-producing bacteria,Pseudomonas putida,Cupriavidusnecato r,Seamless cloning,Plastic bio-upcycling
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