4.6 Article

Easily applicable modifications to electroporation conditions improve the transformation efficiency rates for rough morphotypes of fast-growing mycobacteria

期刊

NEW BIOTECHNOLOGY
卷 63, 期 -, 页码 10-18

出版社

ELSEVIER
DOI: 10.1016/j.nbt.2021.02.003

关键词

Mycobacteria; Clump; Desalted DNA; Electroporation; Mycolicibacterium brumae; Mycobacteroides abscessus

资金

  1. Ministerio de Ciencia, Innovacion y Universidades
  2. Agencia Estatal de Investigacion (AEI), Spain
  3. Fondo Europeo de Desarrollo Regional, FEDER, European Union [RTI2018-098777-B-100, RTI2018-098573-B-100]
  4. CERCA programme
  5. AGAUR-Generalitat de Catalunya [2017SGR-229, 2017SGR-1079]
  6. European Regional Development Fund (FEDER)
  7. Catalan Cystic Fibrosis association
  8. Obra Social La Caixa
  9. Generalitat de Catalunya.

向作者/读者索取更多资源

This study improved electroporation procedures for transforming fast-growing rough mycobacteria by addressing three well-known limitations, resulting in significantly improved efficiencies. The use of specific strategies during electroporation is highly recommended for this purpose.
Electroporation is the most widely used and efficient method to transform mycobacteria. Through this technique, fast- and slow-growing mycobacteria with smooth and rough morphotypes have been successfully transformed. However, transformation efficiencies differ widely between species and strains. In this study, the smooth and rough morphotypes of Mycobacteroides abscessus and Mycolicibacterium brumae were used to improve current electroporation procedures for fast-growing rough mycobacteria. The focus was on minimizing three well-known and challenging limitations: the mycobacterial restriction-modification systems, which degrade foreign DNA; clump formation of electrocompetent cells before electroporation; and electrical discharges during pulse delivery, which were reduced by using salt-free DNA solution. Herein, different strategies are presented that successfully address these three limitations and clearly improve the electroporation efficiencies over the current procedures. The results demonstrated that combining the developed strategies during electroporation is highly recommended for the transformation of fast-growing rough mycobacteria.

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