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- <center>Figure 1: pPMQAK1-Ptrc-theo-PaFS plasmid diagram</center> ...ion system composed of Ptrc promoter and theophylline dependent riboswitch theo E* to control the expression of the α-pinene synthase. The Ptrc promoter i4 KB (535 words) - 09:01, 12 October 2023
- <center>Figure 1: pPMQAK1-Ptrc-theo-SaSS plasmid diagram</center> ...ion system composed of Ptrc promoter and theophylline dependent riboswitch theo E* to control the expression of the α-pinene synthase. The Ptrc promoter i4 KB (502 words) - 15:23, 12 October 2023
- <center>Figure 1: pPMQAK1-Ptrc-theo-AgBS plasmid diagram</center> ...ion system composed of Ptrc promoter and theophylline dependent riboswitch theo E* to control the expression of the α-pinene synthase. The Ptrc promoter i3 KB (428 words) - 09:01, 12 October 2023
- <center>Figure 1: pPMQAK1-Ptrc-theo-PtPS plasmid diagram</center> ...ion system composed of Ptrc promoter and theophylline dependent riboswitch theo E* to control the expression of the α-pinene synthase. The Ptrc promoter i3 KB (427 words) - 09:01, 12 October 2023
- <center>Figure 1: pPMQAK1-Ptrc-theo-αPS plasmid diagram</center> ...ion system composed of Ptrc promoter and theophylline dependent riboswitch theo E* to control the expression of the α-pinene synthase. The Ptrc promoter i3 KB (430 words) - 08:58, 12 October 2023
- <center>Figure 1: pPMQAK1-Ptrc-theo-βPS plasmid diagram</center> ...ion system composed of Ptrc promoter and theophylline dependent riboswitch theo E* to control the expression of the β-pinene synthase. The Ptrc promoter i3 KB (464 words) - 09:00, 12 October 2023
- <center>Figure 1: pPMQAK1-Ptrc-theo-MsLIMS plasmid diagram</center> ...ion system composed of Ptrc promoter and theophylline dependent riboswitch theo E* to control the expression of the α-pinene synthase. The Ptrc promoter i3 KB (423 words) - 09:00, 12 October 2023
- [[Image:PekingR parts theo Growth curve.png|right|thumb|500px| '''Figure.1 Growth curves of E.coli und [[Image:PekingR parts theo PIG1 2D.jpg|right|thumb|500px| '''Figure.3 Predicted secondary structure of12 KB (1,699 words) - 16:18, 10 May 2013
- [[Image: Theo gel-2.jpg|300px|thumb|center| Figure 1: Aptazyme catalytic activity assay. [[Image: Aptazyme Theo 0.jpg|300px|thumb|center| Figure 2: ß-galactosidase assay on Theophylline4 KB (552 words) - 11:57, 21 October 2019
- <center>Figure 1: pPMQAK1-Ptrc-theo-SaSS-CYP plasmid diagram</center> ...ion system composed of Ptrc promoter and theophylline dependent riboswitch theo E* to control the expression of the α-pinene synthase. The Ptrc promoter i3 KB (383 words) - 09:02, 12 October 2023
- [[Image:PekingR parts Theo P1G1 AG pic.jpg|center|thumb|300px|'''Ligand responsive pattern of AND gate2 KB (296 words) - 07:02, 5 October 2011
- ...wapping original c-di-GMP aptamer with a theophylline hammerhead ribozyme (theo HH) which was found by Ronald R. Breaker in 2000 [1,2].4 KB (572 words) - 16:18, 10 May 2013
- The down-regulating TPP ribozyme TPP 2.5 and Theo N8-3 affect the green-red ratio of bistable switch by regulating CI434 and688 B (102 words) - 14:40, 5 October 2011
- Stanford Location: theo/lysC, DNA2.0 Gene #151288, E. coli, sensor, 0133009665 & 0133009679, BIOE441,003 B (152 words) - 00:30, 9 June 2014
- Stanford Location: theo/metE, DNA2.0 Gene #151289, E. coli, sensor, 0133009065 & 0133010055, BIOE441,003 B (152 words) - 00:31, 9 June 2014
- [[Image: Theo gel-2.jpg|300px|thumb|center| Figure 1: Aptazyme catalytic activity assay.2 KB (243 words) - 18:20, 16 October 2019
- Theo sequence is golden Gate compatible388 B (45 words) - 12:45, 18 October 2019
- <center><b>Figure.1 | Verification of biosensor theo-AAG/AAAAA. </b> An in vitro transcription system was employed to test if th814 B (113 words) - 23:07, 20 October 2021
- Theo-AAG/AGAGA add GG/CC407 B (56 words) - 03:18, 21 October 2021