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This strain is derived from the EHA101 strain and has a C58-type background. Its nuclear genome contains a rifampicin resistance gene (rif) as a selection marker. To facilitate transformation, this strain carries a succinamopine-type Ti plasmid pEHA105 (pTiBo542DT-DNA) that lacks self-transfer function. This plasmid contains vir genes (vir genes are essential for T-DNA insertion into the plant genome). Although the T-DNA transfer function of pEHA105 (pTiBo542DT-DNA) is disrupted, it assists in the efficient transfer of the T-DNA from the introduced binary vector. The EHA105 strain is suitable for genetic transformation of plants such as rice and tobacco.
- Chemical transformation efficiency >104 cfu/μg DNA
- Genotype:C58 (rifR) Ti pEHA105 (pTiBo542DT-DNA) Succinamopine
Cat. No. | Description | Packaging |
BL1856A | EHA105 Competent Cells | 10×100 μL |
This strain is derived from the EHA101 strain and has a C58-type background. Its nuclear genome contains a rifampicin resistance gene (rif) as a selection marker. To facilitate transformation, this strain carries a succinamopine-type Ti plasmid pEHA105 (pTiBo542DT-DNA) that lacks self-transfer function. This plasmid contains vir genes (vir genes are essential for T-DNA insertion into the plant genome). Although the T-DNA transfer function of pEHA105 (pTiBo542DT-DNA) is disrupted, it assists in the efficient transfer of the T-DNA from the introduced binary vector. The EHA105 strain is suitable for genetic transformation of plants such as rice and tobacco.
- Chemical transformation efficiency >104 cfu/μg DNA
- Genotype:C58 (rifR) Ti pEHA105 (pTiBo542DT-DNA) Succinamopine
Cat. No. | Description | Packaging |
BL1856A | EHA105 Competent Cells | 10×100 μL |