Matches in SemOpenAlex for { <https://semopenalex.org/work/W2591715427> ?p ?o ?g. }
- W2591715427 abstract "ABSTRACT Clostridium saccharoperbutylacetonicum N1-4 is well known as a hyper-butanol-producing strain. However, the lack of genetic engineering tools hinders further elucidation of its solvent production mechanism and development of more robust strains. In this study, we set out to develop an efficient genome engineering system for this microorganism based on the clustered regularly interspaced short palindromic repeats (CRISPR) and CRISPR-associated 9 (CRISPR-Cas9) system. First, the functionality of the CRISPR-Cas9 system previously customized for Clostridium beijerinckii was evaluated in C. saccharoperbutylacetonicum by targeting pta and buk , two essential genes for acetate and butyrate production, respectively. pta and buk single and double deletion mutants were successfully obtained based on this system. However, the genome engineering efficiency was rather low (the mutation rate is <20%). Therefore, the efficiency was further optimized by evaluating various promoters for guide RNA (gRNA) expression. With promoter P J23119 , we achieved a mutation rate of 75% for pta deletion without serial subculturing as suggested previously for C. beijerinckii . Thus, this developed CRISPR-Cas9 system is highly desirable for efficient genome editing in C. saccharoperbutylacetonicum . Batch fermentation results revealed that both the acid and solvent production profiles were altered due to the disruption of acid production pathways; however, neither acetate nor butyrate production was eliminated with the deletion of the corresponding gene. The butanol production, yield, and selectivity were improved in mutants, depending on the fermentation medium. In the pta buk double deletion mutant, the butanol production in P2 medium reached 19.0 g/liter, which is one of the highest levels ever reported from batch fermentations. IMPORTANCE An efficient CRISPR-Cas9 genome engineering system was developed for C. saccharoperbutylacetonicum N1-4. This paves the way for elucidating the solvent production mechanism in this hyper-butanol-producing microorganism and developing strains with desirable butanol-producing features. This tool can be easily adapted for use in closely related microorganisms. As also reported by others, here we demonstrated with solid data that the highly efficient expression of gRNA is the key factor determining the efficiency of CRISPR-Cas9 for genome editing. The protocol developed in this study can provide essential references for other researchers who work in the areas of metabolic engineering and synthetic biology. The developed mutants can be used as excellent starting strains for development of more robust ones for desirable solvent production." @default.
- W2591715427 created "2017-03-16" @default.
- W2591715427 creator A5041710973 @default.
- W2591715427 creator A5043626399 @default.
- W2591715427 creator A5063355829 @default.
- W2591715427 creator A5083031482 @default.
- W2591715427 creator A5086722810 @default.
- W2591715427 date "2017-05-15" @default.
- W2591715427 modified "2023-10-18" @default.
- W2591715427 title "Genome Editing in Clostridium saccharoperbutylacetonicum N1-4 with the CRISPR-Cas9 System" @default.
- W2591715427 cites W1504788143 @default.
- W2591715427 cites W1580150127 @default.
- W2591715427 cites W1813168975 @default.
- W2591715427 cites W1934749280 @default.
- W2591715427 cites W1939556909 @default.
- W2591715427 cites W1969084128 @default.
- W2591715427 cites W1970237267 @default.
- W2591715427 cites W1976354869 @default.
- W2591715427 cites W1982811794 @default.
- W2591715427 cites W1988399585 @default.
- W2591715427 cites W1988817798 @default.
- W2591715427 cites W1993137427 @default.
- W2591715427 cites W1995716143 @default.
- W2591715427 cites W2000046950 @default.
- W2591715427 cites W2000790382 @default.
- W2591715427 cites W2003171404 @default.
- W2591715427 cites W2021767455 @default.
- W2591715427 cites W2023453257 @default.
- W2591715427 cites W2025830086 @default.
- W2591715427 cites W2026859503 @default.
- W2591715427 cites W2029211913 @default.
- W2591715427 cites W2036875488 @default.
- W2591715427 cites W2045435533 @default.
- W2591715427 cites W2050480410 @default.
- W2591715427 cites W2056215502 @default.
- W2591715427 cites W2066106666 @default.
- W2591715427 cites W2066991387 @default.
- W2591715427 cites W2070614858 @default.
- W2591715427 cites W2086993020 @default.
- W2591715427 cites W2096261947 @default.
- W2591715427 cites W2098189220 @default.
- W2591715427 cites W2101119036 @default.
- W2591715427 cites W2103368185 @default.
- W2591715427 cites W2110528780 @default.
- W2591715427 cites W2113879892 @default.
- W2591715427 cites W2120263648 @default.
- W2591715427 cites W2122054566 @default.
- W2591715427 cites W2128146431 @default.
- W2591715427 cites W2130877913 @default.
- W2591715427 cites W2131157113 @default.
- W2591715427 cites W2133908827 @default.
- W2591715427 cites W2136107296 @default.
- W2591715427 cites W2136343510 @default.
- W2591715427 cites W2139735472 @default.
- W2591715427 cites W2143999510 @default.
- W2591715427 cites W2154568091 @default.
- W2591715427 cites W2154883726 @default.
- W2591715427 cites W2160051211 @default.
- W2591715427 cites W2163744084 @default.
- W2591715427 cites W2168935258 @default.
- W2591715427 cites W2179008870 @default.
- W2591715427 cites W2231252456 @default.
- W2591715427 cites W2254390344 @default.
- W2591715427 cites W2261829810 @default.
- W2591715427 cites W2274294921 @default.
- W2591715427 cites W2310679544 @default.
- W2591715427 cites W2327813647 @default.
- W2591715427 cites W2343655376 @default.
- W2591715427 cites W2397457481 @default.
- W2591715427 cites W2399213131 @default.
- W2591715427 cites W2407174002 @default.
- W2591715427 cites W2416098422 @default.
- W2591715427 cites W2479285410 @default.
- W2591715427 cites W2480061040 @default.
- W2591715427 cites W2488780863 @default.
- W2591715427 cites W2498972343 @default.
- W2591715427 cites W2505908622 @default.
- W2591715427 cites W2552036646 @default.
- W2591715427 cites W4244026361 @default.
- W2591715427 doi "https://doi.org/10.1128/aem.00233-17" @default.
- W2591715427 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/5411512" @default.
- W2591715427 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/28258147" @default.
- W2591715427 hasPublicationYear "2017" @default.
- W2591715427 type Work @default.
- W2591715427 sameAs 2591715427 @default.
- W2591715427 citedByCount "68" @default.
- W2591715427 countsByYear W25917154272017 @default.
- W2591715427 countsByYear W25917154272018 @default.
- W2591715427 countsByYear W25917154272019 @default.
- W2591715427 countsByYear W25917154272020 @default.
- W2591715427 countsByYear W25917154272021 @default.
- W2591715427 countsByYear W25917154272022 @default.
- W2591715427 countsByYear W25917154272023 @default.
- W2591715427 crossrefType "journal-article" @default.
- W2591715427 hasAuthorship W2591715427A5041710973 @default.
- W2591715427 hasAuthorship W2591715427A5043626399 @default.
- W2591715427 hasAuthorship W2591715427A5063355829 @default.
- W2591715427 hasAuthorship W2591715427A5083031482 @default.
- W2591715427 hasAuthorship W2591715427A5086722810 @default.
- W2591715427 hasBestOaLocation W25917154271 @default.