| Literature DB >> 22022613 |
Artem Tkachuk1, Maria Kim, Oksana Kravchuk, Mikhail Savitsky.
Abstract
Transgenic insects are a promising tool in sterile insect techniques and population replacement strategies. Such transgenic insects can be created using nonautonomous transposons, which cannot be transferred without a transposase source. In biocontrol procedures where large numbers of insects are released, there is increased risk of transgene remobilization caused by external transposase sources that can alter the characteristics of the transgenic organisms lead horizontal transgene transfer to other species. Here we describe a novel, effective method for transgene stabilization based on the introduction of directed double-strand breaks (DSB) into a genome-integrated sequence and their subsequent repair by the single-strand annealing (SSA) pathway. Due to the construct's organization, the repair pathway is predictable, such that all transposon and marker sequences can be deleted, while preserving integration of exogenous DNA in the genome. The exceptional conservation of DNA repair pathways makes this method suitable for a broad range of organisms.Entities:
Mesh:
Year: 2011 PMID: 22022613 PMCID: PMC3195726 DOI: 10.1371/journal.pone.0026422
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Figure 1TS51D vector stabilization strategy after site specific integration in genome.
Complete stabilization may be achieved in two steps (DSB introduction at I-SceI and then at I-CreI), or in one (simultaneous expression of two endonucleases). The breaks are repaired due to duplications of sequences flanking landing platform. Genomic sequences homologous to G1, G2 are highlighted corresponding to G1 (blue) and G2 (pink). Final insertion does not contain transposone sequences and, therefore, is immobile.
Stability of TS51D, TS51D2xSce and TS58A2xSce transgene vectors at DSBs induction under different heat shock delivery as indicated by absence or presence of marker phenotypes.
| TS51D | TS51D2xSce | TS58A2xSce | ||||||
| I-SceI | I-CreI | I-SceI + I-CreI | I-SceI | I-SceI | ||||
| phenotype |
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| 2332 (62,45%) | 1015 (94.07%) | - | 1703 (73.98%) | 685 (58.65%) | 1065 (87.52%) | 1327 (95.6%) | 1750 (45.88%) |
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| 1402 (37.55%) | 64 (5.93%) | 3135 (85.9%) | 24 (1.04%) | 146 (12.5%) | 57 (4.68%) | 8 (0.58%) | 1086 (28.47%) |
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| - | - | - | 571 (24.8%) | 267 (22.86%) | 76 (6.24%) | 53 (3.82%) | 675 (17.7%) |
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| - | - | 513 (14.1%) |
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| 0 |
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| 1402 (37.55%) | 64 (5.93%) | 3648 (100%) | 599 (26.02%) | 483 (41.35%) | 152 (12.49%) | 61 (4.4%) | 2064 (54.12%) |
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| 3734 | 1079 | 3648 | 2302 | 1168 | 1217 | 1388 | 3814 |
All vectors contain two recognition sites for homing endonucleases. DSBs can be induced in TS51D sequentially (columns I-SceI and I-CreI) or simultaneously (I-SceI + I-CeI). Two breaks are induced in TS51D2xSce and TS58A2xSce. For optimal induction of I-SceI strong heatshock is necessary, and for I-CreI – light one. Figures for full one-step transgene stabilization are in bold. Statistical analysis is provided in Supplementary Table S1.
(G+) GFP expression in these phenotypes is masked by RFP expression.
summary stabilization after deletion of at least one ITR (sum of W-(G+)R+, W+G+R- and W-G+R-).
DSB induction by I-CreI endonuclease was carried out in flies with already stabilized transgene (without 3′ITR and white).
Figure 2Phenotypes and PCR analysis of vector sequences in line TS51D and their derivatives.
a. Combined TS51D, TS51D2xSce and TS58A2xSce schematic structure after integration in landing platform. Arrows above indicate primers. Image inserts show eye phenotypes of flies from TS51D2xSce line and their derivatives. b. Agarose gel with PCR products from indicated primers. Primer pairs 51DL/GFPf were used to analyze to analyze deletion of 3′ITR with RFP, Amp/51DR – deletion of 5′ITR with white. Primers pairs: lanes 1, 3, 5, 7 – 51DL/GFPf (prediction size of products 5630 or 1881 bp); lanes 2, 4, 8, 10 - Amp/51DR (7640 and 2167 bp). Size of PCR products for R-G+W+, R+G+W- и R-G+W- flies agree with the expected size for SSA-pathway repair (Supplementary ).