| Literature DB >> 30653574 |
Laure M C Leynaud-Kieffer1,2,3, Samuel C Curran2,3,4, Irene Kim5, Jon K Magnuson2,6, John M Gladden2,7, Scott E Baker2,8, Blake A Simmons2,3.
Abstract
Aspergillus niger and other filamentous fungi are widely used in industry, but efficient genetic engineering of these hosts remains nascent. For example, while molecular genetic tools have been developed, including CRISPR/Cas9, facile genome engineering of A. niger remains challenging. To address these challenges, we have developed a simple Cas9-based gene targeting method that provides selectable, iterative, and ultimately marker-free generation of genomic deletions and insertions. This method leverages locus-specific "pop-out" recombination to suppress off-target integrations. We demonstrated the effectiveness of this method by targeting the phenotypic marker albA and validated it by targeting the glaA and mstC loci. After two selection steps, we observed 100% gene editing efficiency across all three loci. This method greatly reduces the effort required to engineer the A. niger genome and overcomes low Cas9 transformations efficiency by eliminating the need for extensive screening. This method represents a significant addition to the A. niger genome engineering toolbox and could be adapted for use in other organisms. It is expected that this method will impact several areas of industrial biotechnology, such as the development of new strains for the secretion of heterologous enzymes and the discovery and optimization of metabolic pathways.Entities:
Mesh:
Year: 2019 PMID: 30653574 PMCID: PMC6336261 DOI: 10.1371/journal.pone.0210243
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Fig 1Design and application of cDNA006 for disruption of albA.
(A) of cDNA006 contains pyrG flanked by 300bp repeats at 1000 bp homology arms to albA. After integration, pyrG is excised by homologous recombination in the presence of 5-FOA. (B) and (C) Phenotypes obtained before 5-FOA and after 5-FOA. (D) Representative sequence showing the integration of the stop codon at the albA locus in a white colony.
Fig 2Design and application of a specific construct cDNA008 for disruption of albA.
(A) Design of cDNA008 construct inserted at the albA locus to delete 1,000 bp making A. niger pyrG−albA, use of sgRNA001. (B) and (C) Results obtained before 5-FOA and after 5-FOA. (D). PCR amplification of the albA gene in wild type (WT) strain #1, before 5-FOA insertion of pyrG at the albA locus #2, and deletion of 1000 bp of albA after 5-FOA #3.
Fig 3Design and application of cDNA009 (glaA locus) and cDNA010 (mstC locus).
(A) cDNA009 construct inserted at the glaA locus to insert A5IL97 gene making A. niger pyrG− ΔglaA/P-A5IL97, use of sgRNA002 and sgRNA003. (B) Design of cDNA010 construct inserted at the mstC locus to delete mstC on the A. niger pyrG− ΔglaA/P-A5IL97, resulting in the strain A. niger pyrG− ΔglaA/P-A5IL97 ΔmstC.
Efficiency obtained before and after selection of 5-FOA by PCR amplification at the mutated locus and sequence verified.
| Gene targeting | Constructs | sgRNA | Method | Before 5-FOA | After 5-FOA |
|---|---|---|---|---|---|
| cDNA006 | sgRNA001 | Non-selective | 19 white colonies | 8 white colonies | |
| cDNA008 | sgRNA001 | Selective | 20 white colonies | 7 white colonies | |
| cDNA009 | sgRNA002 | Selective | 8 colonies with | 8 on target | |
| cDNA010 | sgRNA004 | Selective | 7 colonies with | 7 on target |
A. niger strains used in this study and their accession information.
| Name | Genotype | Source | Access |
|---|---|---|---|
| JBEI-14377 | [ | ||
| JBEI-099147 | This study. | ||
| JBEI-099148 | This study. | ||
| JBEI-099149 | This study. | ||
| JBEI-099151 | This study. |
Sequence of sgRNAs with original source.
| Gene targeting | Sequencing | name | Source |
|---|---|---|---|
| sgRNA001 | [ | ||
| sgRNA002 | CRISPOR.tefor.net | ||
| sgRNA003 | CRISPOR.tefor.net | ||
| sgRNA004 | CRISPOR.tefor.net | ||
| sgRNA005 | CRISPOR.tefor.net |
cDNA features and their accession information.
| Strains | Plasmid | Amplicon | Gene target | Homology arms (bp) | Selectable marker | Sequence |
|---|---|---|---|---|---|---|
| JBEI-099138 | pllk034 | cDNA006 | 1500 | |||
| JBEI-099142 | pllk036 | cDNA008 | 1000 | |||
| JBEI-099144 | pllk038 | cDNA009 | 1000 | |||
| JBEI-099146 | pllk039 | cDNA010 | 1000 |