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April 15, 2026Journal of Biotechnology0 citationsOpen Access

Homologous Recombination–Mediated Assembly of Multiple DNA Fragments in Bacillus subtilis via Protoplast Transformation and Inducible RecA Expression

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SKShinya KanekoMNMisako NakahamaHHHinata Hashimoto

Key Points

  • The study aims to establish Bacillus subtilis for gap-repair cloning by enhancing homologous recombination.
  • Utilized protoplast transformation to improve DNA uptake in Bacillus subtilis.
  • Induced RecA expression using a xylose-inducible promoter.
  • Validated assembly accuracy with junction PCR and nanopore sequencing.
  • Constructed plasmids up to 26.5 kb with human MYC locus fragments.
  • Demonstrated efficient assembly of multiple DNA fragments in B. subtilis in a single transformation event.
  • Achieved assembly of large DNA constructs, including segments up to 26.5 kb.
  • Established that RecA induction significantly enhances the homologous recombination process.

Abstract

We establish Bacillus subtilis (B. subtilis) as an alternative host for gap-repair cloning (GRC), a methodology that has been predominantly applied in Saccharomyces cerevisiae (S. cerevisiae), which requires recovery of assembled constructs and subsequent re-transformation into Escherichia coli for plasmid amplification. To overcome limitations of the native competence system in B. subtilis, which can lead to loss of DNA termini during uptake, we employed a protoplast transformation approach. Protoplasts were prepared under conditions in which the homologous recombinase RecA is upregulated, and the endogenous recA promoter was further replaced with a xylose-inducible promoter to enable controlled RecA expression. Using this system, we achieved efficient and accurate assembly of multiple DNA fragments with homologous overlaps in a single transformation event. Assembly accuracy was validated by junction PCR and full-length nanopore sequencing. Using this approach, we successfully constructed plasmids of up to 26.5 kb, including assemblies containing fragments of the human MYC locus. These results demonstrate that RecA induction enhances homologous recombination after DNA uptake and that B. subtilis provides a practical and efficient chassis for the construction of large DNA molecules, offering a streamlined alternative to existing GRC methodologies in synthetic genomics. • Bacillus subtilis is established as a new host for Gap Repair Cloning (GRC). • Protoplast transformation enables efficient assembly of 17–26.5 kb constructs. • Inducible RecA expression enhances multi-fragment homologous recombination. • Human MYC locus fragments (26.5 kb) assembled in a single transformation step. • DNA assembled in B. subtilis can be directly recovered without host transfer.

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Cite This Study

Kaneko et al. (2026) studied this question.

synapsesocial.com/papers/69df2a4be4eeef8a2a6af7dbhttps://doi.org/10.1016/j.jbiotec.2026.04.007
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1DNA Shuttling Between Plasmid Vectors and a Genome Vector: Systematic Conversion and Preservation of DNA Libraries Using the Bacillus subtilis Genome (BGM) Vector2005 · 41 citations
  2. 2Plasmid construction by homologous recombination in yeast1987 · 569 citations
  3. 3Number of Deoxyribonucleic Acid Uptake Sites in Competent Cells of Bacillus subtilis1972 · 25 citations
  4. 4High frequency transformation of Bacillus subtilis protoplasts by plasmid DNA1979 · 981 citations
  5. 5Competence-specific induction of the Bacillus subtilis RecA protein analog: evidence for dual regulation of a recombination protein1989 · 65 citations