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Organismos vivos modificados (LMO)
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Identidad del organismo vivo modificado
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NovoFly™
EN
TD1#12
No
NovoFly™ (event TD1#12) is a genetically modified strain of the New World screwworm, Cochliomyia hominivorax, developed to support sterile insect technique (SIT) programmes through the production of male-only insect cohorts. The strain contains a conditional female-lethal genetic system based on tetracycline-repressible gene expression (Tet-OFF) and sex-specific alternative splicing mediated by an intron derived from the transformer (tra) gene. In the absence of tetracycline-class antibiotics, female embryos produce a functional transcript encoding the pro-apoptotic effector LshidAla2, resulting in female lethality during embryonic development. In males, sex-specific alternative splicing results in a non-functional lethal transcript, allowing male embryos to survive. The female-lethal system can be repressed by tetracycline-class antibiotics during colony maintenance, permitting females to survive and enabling propagation of the strain. The strain also contains a constitutively expressed DsRedex2 fluorescent marker, which enables identification of transgenic individuals by red fluorescence throughout the life cycle.
EN
El término "organismo receptor" hace referencia a un organismo (modificado o no modificado) que fue objeto de una modificación genética, en tanto que "organismos parentales" hace referencia a los implicados en el cruzamiento o la fusión de células.
The original transformation was performed using the Jamaica-06 strain of Cochliomyia hominivorax. Subsequently, the transformed line was backcrossed with the PanCR-24 strain of Cochliomyia hominivorax to generate a homozygous production strain designated TD1#12 (NovoFly™).
EN
Características del proceso de modificación
pAll-in-one plasmid
EN
  • Microinyección
  • Otros (piggyBac transposon-mediated germline transformation)
Algunos de estos elementos genéticos pueden estar presentes como fragmentos o formas truncadas. Por favor, véanse las notas a continuación, en los casos en los que corresponda.
  • BCH-GENE-SCBD-115246-2 piggyBac | Trichoplusia ni - Cabbage looper, Cabbage looper moth, Cabbage plusia, Common cabbage looper, Lettuce looper
    Transposon
  • BCH-GENE-SCBD-101475-13 Tetracycline-controlled transactivator | Escherichia coli (ECOLX)
    Secuencia de codificación de proteínas |
  • BCH-GENE-SCBD-259117-1 P10 terminator | Autographa californica multiple nucleopolyhedrovirus (AcMNPV)
    Terminador
  • BCH-GENE-SCBD-114748-3 SV40 poly-adenylation signal | Macaca mulatta polyomavirus 1 (SV40, Simian vacuolating virus 40, simian virus 40, Rhesus macaque polyomavirus)
    Terminador
  • BCH-GENE-SCBD-300805-1 Lsbnk promoter | Lucilia sericata (Common greenbottle fly, Sheep-strike greenbottle fly, Common European greenbottle fly)
    Promotor
  • BCH-GENE-SCBD-300808-1 Modified head involution defective Ala2 | Lucilia sericata (Common greenbottle fly, Sheep-strike greenbottle fly, Common European greenbottle fly)
    Secuencia de codificación de proteínas | Cambios en la fisiología y/o producción
  • BCH-GENE-SCBD-300807-1 φC31 attP (phage attachment) site | Lomovskayavirus C31 (φC31 bacteriophage)
    Excision-integration site
  • BCH-GENE-SCBD-300822-1 Cochliomyia hominivorax transformer sex-specific intron (Chtra intron) | Cochliomyia hominivorax (New World screwworm, New World screwworm fly)
    Intron
  • BCH-GENE-SCBD-300824-1 Lucilia cuprina heat shock protein 83 promoter | Lucilia cuprina (Australian sheep blowfly, Sheep blowfly, Bronze bottle fly, Green bottle fly)
    Promotor
  • BCH-GENE-SCBD-300823-1 Lucilia cuprina tubulin polyadenylation signal | Lucilia cuprina (Australian sheep blowfly, Sheep blowfly, Bronze bottle fly, Green bottle fly)
    Terminador
  • BCH-GENE-SCBD-300832-1 DsRed-Express2 Fluorescent Protein | Discosoma sp. (Coral anemones, Sea anemones)
    Secuencia de codificación de proteínas | Cambios en la calidad y/o el contenido metabólico (Pigmentación / coloración)
  • BCH-GENE-SCBD-300831-1 Lucilia cuprina heat shock protein 70 promoter | Lucilia cuprina (Australian sheep blowfly, Sheep blowfly, Bronze bottle fly, Green bottle fly)
    Promotor
  • BCH-GENE-SCBD-105038-4 Tetracycline Operator | Escherichia coli (ECOLX)
    Operator
NovoFly™ contains a single insertion of the pAll-in-one construct integrated into the genome through piggyBac-mediated germline transformation system. The construct contains three functional coding sequences that together constitute a tetracycline-repressible (Tet-Off) genetic sexing system with female-specific lethality and a fluorescent marker.

1. Transcription of the optimized tetracycline-controlled transactivator (tTAo) is driven by the embryonic Lucilia sericata bottleneck (Lsbnk) promoter and terminates at the P10 polyadenylation signal. Expression of tTAo during early embryonic development provides the driver component of the Tet-Off system. In the absence of tetracycline-class antibiotics, tTAo binds to the 21 tandem tetracycline operator sequences (tetO21) associated with the Lucilia cuprina heat shock protein 70 (Lchsp70) promoter and activates transcription of the downstream female-lethal effector.

2. The effector cassette encodes the modified Lucilia sericata head involution defective protein (LshidAla2) and terminates at the SV40 polyadenylation signal. A sex-specific intron derived from the Cochliomyia hominivorax transformer gene (Chtra intron) is incorporated into the cassette, producing a functional transcript only in females. Male-specific splicing generates a non-functional isoform containing premature stop codons. In the presence of sufficient concentrations of tetracycline or doxycycline, the antibiotic binds tTAo and reduces its affinity for the tetracycline operator sequences, thereby suppressing activation of LshidAla2 expression and allowing survival of both sexes and maintenance of mixed-sex colonies under laboratory rearing conditions.

3. Transcription of the DsRed-Express2 (DsRedex2) fluorescent marker is driven by the L. cuprina heat shock protein 83 (Lchsp83) promoter and terminates at the L. cuprina tubulin (Lctub) polyadenylation signal.

The construct additionally contains a φC31 attP attachment site, which provides a recognition site for φC31 integrase-mediated site-specific recombination, and piggyBac terminal sequence(s) associated with the transposon-mediated germline transformation system.

Notes:
-The TD1#12 genetic construct is present as a single, stably integrated copy in a homozygous state and is inherited in a Mendelian manner.
-Whole-genome sequencing confirmed a single insertion event and the absence of plasmid backbone sequences.
-The insertion is located within an intronic region and is not predicted to disrupt endogenous genes or open reading frames.
-DsRedex2 is constitutively expressed in all cell types and throughout the insect life cycle and permits identification of transgenic individuals. Therefore fluorescence is detectable in all tissues and life stages of both sexes.
-DsRedex2 is expressed at substantially higher levels than tTAo and LshidAla2. Mean DsRedex2 protein levels were approximately 113 ng per adult male and 0.2 ng per egg.
-Expression of tTAo and LshidAla2 was low, close to the lower detection limit of the assay (5–10 pg/mL), and occurred primarily during early embryonic development.
EN
Características del OVM
No endogenous genes are known to have been intentionally altered or silenced by the transformation. Whole-genome sequencing indicated that the transgene insertion occurred within an intronic region and is not predicted to disrupt endogenous gene expression or coding sequences.
EN
  • Control biológico
  • Investigación
Método(s) de detección
NovoFly™ can be detected through fluorescence microscopy or handheld ultraviolet illumination owing to constitutive expression of the DsRedex2 fluorescent marker throughout all developmental stages. Homozygous individuals generally display stronger fluorescence than hemizygous individuals. Molecular confirmation can be achieved using PCR assays targeting the piggyBac insertion junctions or transgene-specific regions such as DsRedex2 and tTAo.
EN
Información adicional
NovoFly™ is a genetically engineered male-only strain developed to improve the efficiency of sterile insect technique programmes targeting Cochliomyia hominivorax. Female embryos die during development unless tetracycline-class antibiotics are supplied during colony rearing. As a consequence, rearing facilities produce only males, increasing production efficiency and reducing costs associated with maintaining female insects. 

Prior to field release, NovoFly™ males are sterilized using irradiation according to established SIT protocols. Released males are therefore sterile and cannot establish or spread the introduced traits in wild populations. Male-only releases are expected to improve SIT efficiency because all released insects contribute to mating with wild females, whereas conventional SIT programmes release both sexes.

EN
Registros que hacen referencia a este documento Mostrar en la búsqueda
Tipo de registro Campo Registro(s)
Evaluación del riesgo generada por un proceso regulatorio Organismo(s) vivo(s) modificado(s) 1
Decisión o cualquier otra comunicación de un país Identificación del OVM 2