4.8 Article

Broad-host-range vector system for synthetic biology and biotechnology in cyanobacteria

期刊

NUCLEIC ACIDS RESEARCH
卷 42, 期 17, 页码 -

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OXFORD UNIV PRESS
DOI: 10.1093/nar/gku673

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资金

  1. Department of Energy [DE-EE0003373]
  2. California Energy Commission [CILMSF 500-10-039]
  3. Life Technologies Corporation
  4. Research Supplement to Promote Diversity in Health-Related Research [R01GM062419-10S1]
  5. People Programme (Marie Curie Actions) of the European Union's Seventh Framework Programme under REA [275289]
  6. UCSD

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Inspired by the developments of synthetic biology and the need for improved genetic tools to exploit cyanobacteria for the production of renewable bio-products, we developed a versatile platform for the construction of broad-host-range vector systems. This platform includes the following features: (i) an efficient assembly strategy in which modules released from 3 to 4 donor plasmids or produced by polymerase chain reaction are assembled by isothermal assembly guided by short GC-rich overlap sequences. (ii) A growing library of molecular devices categorized in three major groups: (a) replication and chromosomal integration; (b) antibiotic resistance; (c) functional modules. These modules can be assembled in different combinations to construct a variety of autonomously replicating plasmids and suicide plasmids for gene knockout and knockin. (iii) A web service, the CYANO-VECTOR assembly portal, which was built to organize the various modules, facilitate the in silico construction of plasmids, and encourage the use of this system. This work also resulted in the construction of an improved broad-host-range replicon derived from RSF1010, which replicates in several phylogenetically distinct strains including a new experimental model strain Synechocystis sp. WHSyn, and the characterization of nine antibiotic cassettes, four reporter genes, four promoters, and a ribozyme-based insulator in several diverse cyanobacterial strains.

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