| Literature DB >> 25188820 |
Chong Mei John Koh, Yanbin Liu, Minge Du, Lianghui Ji.
Abstract
BACKGROUND: Rhodosporidium toruloides is a β-carotenoid accumulating, oleaginous yeast that has great biotechnological potential. The lack of reliable and efficient genetic manipulation tools have been a major hurdle blocking its adoption as a biotechnology platform.Entities:
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Year: 2014 PMID: 25188820 PMCID: PMC4101874 DOI: 10.1186/1471-2180-14-50
Source DB: PubMed Journal: BMC Microbiol ISSN: 1471-2180 Impact factor: 3.605
Figure 1Genomic organization of /from . (A) Genomic organization of KU70. (B) Genomic organization of KU80. Exons (indicated by black boxes) were identified by comparing the cDNAs and their corresponding genomic DNA sequences. The positions of translation initiation (ATG) and termination (TGA) codons are indicated by arrows. Colored bars indicate positions of gene-specific primers (GSPs) designed for RACEs, with those for 3′ RACE shown on top and those for 5′ RACE shown at the bottom.
Comparison of /organization between fungal homologues
| AB177394 | 2046 | 51.4 | 2 | 45.4 | 54 | [ | ||
| EF061656 | 2283 | 50.7 | 5 | 45.4 | 67 | [ | ||
| XM_573016 | 1683 | 48.0 | 10 | 46.6 | 117 | [ | ||
| CR382129 | 1758 | 48.9 | 0 | - | - | [ | ||
| XM_501610 | ||||||||
| KF850470 | 2121 | 59.8 | 15 | 61.1 | 61 | This study | ||
| AB177395 | 2764 | 51.2 | 7 | 48.3 | 111 | [ | ||
| XM_568810 | 2511 | 47.9 | 13 | 43.4 | 53 | [ | ||
| CR382131 | 2181 | 48.6 | 1 | 37.5 | 48 | [ | ||
| XM_503443 | ||||||||
| KF850471 | 2769 | 62.1 | 10 | 61.1 | 66 | This study |
Note: CDS: coding sequence; nt: nucleotide.
Figure 2Sequence comparison of Ku70s. Multiple sequence alignment of R. toruloides Ku70 amino acid sequence (R_tor) with homologues from Homo sapiens (H_sap, P12956), A. niger (A_nig, ABN13872), N. crassa (N_cra, BAD16622) and C. neoformans (C_neo, XP_573016). The N-terminal von Williebrand A (vWA)-like domain, a central core domain and the C-terminal SAP (SAF-A/B, Acinus and PIAS) domains are marked with arrow-lines.
Figure 3deletion strategy and Southern blot results. (A) Schematic illustration of KU70 deletion strategy. LB and RB are the left border and right border sequences of T-DNA derived from pPZP200, respectively; P: R. toruloides GPD1 promoter; hpt-3: codon-optimized hygromycin phosphotransferase gene; T: transcriptional terminator of A. tumefaciens nopaline synthase gene; LoxP: recognition sequences of Cre recombinase; Rg70Lf and Rg70Rr: primers to amplify KU70 gene deletion region; Rg70f3 and Rg70r2: primers for fungi colony PCR; Rt100 and Rt101: primers to amplify probe used for Southern blot analysis. Unique restriction enzyme digest sites used are shown. (B) Southern blot results of putative ∆ku70 transformants. Genomic DNA was digested with PvuI and a band shift from 2.2 kb (WT) to 2.7 kb indicates successful deletion of KU70.
Gene deletion frequency in WT and ∆ku70e strains
| 800 | 0 (560) | 2.1% (48) | |
| 1000 | 0 (48) | 95.8% (48) | |
| 750 | 10.5% (6152) | 75.3% (885) | |
Note: aHomology sequence length on each side of the hygromycin selection cassette; bNumber in parenthesis indicate number of transformants screened.
Figure 4Phenotypic and genotypic characterization of pKOCAR2 transformants. (A) A transformation plate showing both red and albino transformants, with black arrow heads marking some albino transformants. (B) Southern blot results using the 5′ flanking sequence of CAR2 as a probe. Genomic DNA was digested with PvuI and a band shift from 5.0 kb (WT) to 3.0 kb indicates successful deletion of CAR2 gene.
Figure 5Targeted deletion of and genes. (A) and (D) Illustration of gene deletion constructs; (B) and (E): Southern blots using probes shown in (A) and (D); (C) Colony phenotype of WT and ∆ste20 strains mated with R. toruloides ATCC 10788; (F) Growth phenotype of WT and ∆ura3 strains derived from 10-fold serially diluted cells. The latter showed resistance to 5-FOA (1 g/L) – a substrate that can be converted to a toxic intermediate by the URA3-encoded enzyme [27].
Effects of homologous sequence length on deletion frequency
| 0 (780) | 0 (8) | - | |
| 0 (620) | 21.4% (14) | - | |
| 0.7% (1668) | 30.3% (33) | 43.3 | |
| 11.2% (2124) | 67.0% (778) | 6 | |
| 10.5% (6152) | 75.3% (885) | 7.2 | |
| 30.4% (2280) | 91.7% (2196) | 3 | |
| 20.5% (2730) | 91.0% (4304) | 4.4 | |
Note: aNumber in parenthesis indicate number of transformants screened.
Figure 6Sensitivity of WT (top) and -deficient strain (bottom) to DNA damaging agents. An initial cell suspension of OD600 = 1.0 was serially diluted 10 folds for four times and spotted on YPD agar plates containing 0.01% MMS (v/v, upper panel) or subjected to 200 J/m2UV irradiation (bottom panel). Top panel shows the non-treated control. All plates were incubated at 28°C for 3 days.
Oligonucleotides used
| Rg70f3 | GTTCATCCCGAGGACCATCAGTC | Sense primer for |
| Rg70r3 | GGGATGAGCTCCTTGAGCTTTGC | Antisense primer 1 for |
| Rg70r4 | TCTTCGTCCGGGTAGATGAAGTAG | Antisense primer 2 for |
| Rg70r5 | ATCCTTTGGGCTGGCGATGACTTTG | Antisense primer 3 for |
| Rg80f2 | GTCGCTTGAGCGCATCTTCAACAAG | Sense primer for |
| Rg80r2 | ATCACGATGTCCTCGTCCTCGTCGT | Antisense primer 1 for |
| Rg80r3 | CTCCAACCTGCGGACATGCTTCTT | Antisense primer 2 for |
| Rg80r4 | GAAGCGAGCCTTGCGCTTGATCTCG | Antisense primer 3 for |
| Rg70Lf | CTCGTGTCAAGAAAACCAGCAAG | |
| Rg70Rr | ACCTCAGCAACCAACCTACCAGT | |
| C50f | TCCTCCTACCGACGCTCTACC | |
| C50r | CTCTGTGCAGCCATCTCGTTC | |
| C100f | TTCATTGCCTCAACCCACATC | |
| C100r | CGTCCCCAATGCTGAGATAAA | |
| C250f | CAAAGTTGGAGGAGGGAGGAG | |
| C250r | GTTGAGAAACCAGCGAGACCA | |
| C500f | CCTGGGACTCGTACCTCATCC | |
| C500r | GCGACCGCGACTGACTAGTTT | |
| Rt079 | GGACTGGACTACTGGCTCGTGT | |
| Rt080 | TCAAGAGCTACCAGGAGAGCAAC | |
| C1000f | GGGGCTGTCTGTGACTTGCTAT | |
| C1000r | TCGAGCTCAAGCTGAAGAAGAAG | |
| C1500f | CTCTCGCACGGGGAGGTAGT | |
| C1500r | TGCTTGCCAAGAAGCCTACAATA | |
| STE20Lf | GCTCGTGTTGCGGGAACAGT | |
| STE20Rr | GGGCACGCCTTCTTCAAGAAC | |
| Rt033 | GTCAAGCCGCCCAGGCTGTC | |
| Rt034 | GGATCCGCCAAGTCGCGCAG | |
| Rg70r2 | GTCCTTCTTCACCACGCGTTTCTT | Specific primer for ∆ku70 fungi colony PCR |
| Rt096 | CGAATCCAACATCGACATGATTT | Specific primer for ∆car2 fungi colony PCR |
| Rt097 | TATTGACGAGCTGAAGAGCCTGT | |
| Rt006 | TCTCCCTCGCCCTCTGCT | Specific primer for |
| Rt007 | AGCCATGCCGGTGAGCTTG | |
| Rt100 | GACCCGACAGACGAGTGGAC | |
| Rt101 | AGGTCCTTGAGAAAGCGGATG | |
| Rt083 | CTCACCCTCGTGTTGCTCGTA | |
| Rt084 | CCTCTCCTCCCTCCTCCAACT |