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Found 4 matching solutions for this experiment
pBGP3-G1mgNtBG1
Manabu Arioka, Department of Biotechnology, The University of To
Upstream tips |
Protocol tips |
Downstream tips |
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The resulting linear DNA fragment was self-ligated, giving rise to pBGP3 (Fig. 1A and B). The DNA sequences of all the plasmids were checked. |
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Protocol tips |
The resulting linear DNA fragment was self-ligated, giving rise to pBGP3 (Fig. 1A and B). The DNA sequences of all the plasmids were checked. |
pBGP3-G1NkBG
Manabu Arioka, Department of Biotechnology, The University of To
Upstream tips |
Protocol tips |
Downstream tips |
|
The resulting linear DNA fragment was self-ligated, giving rise to pBGP3 (Fig. 1A and B). The DNA sequences of all the plasmids were checked. |
|
Protocol tips |
The resulting linear DNA fragment was self-ligated, giving rise to pBGP3 (Fig. 1A and B). The DNA sequences of all the plasmids were checked. |
pBGP3-NtEG
Manabu Arioka, Department of Biotechnology, The University of To
Upstream tips |
Protocol tips |
Downstream tips |
|
The resulting linear DNA fragment was self-ligated, giving rise to pBGP3 (Fig. 1A and B). The DNA sequences of all the plasmids were checked. |
|
Protocol tips |
The resulting linear DNA fragment was self-ligated, giving rise to pBGP3 (Fig. 1A and B). The DNA sequences of all the plasmids were checked. |
pBGP3-RsEG
Manabu Arioka, Department of Biotechnology, The University of To
Upstream tips |
Protocol tips |
Downstream tips |
|
The resulting linear DNA fragment was self-ligated, giving rise to pBGP3 (Fig. 1A and B). The DNA sequences of all the plasmids were checked. |
|
Protocol tips |
The resulting linear DNA fragment was self-ligated, giving rise to pBGP3 (Fig. 1A and B). The DNA sequences of all the plasmids were checked. |
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