BBa_K1316016BBa_K1316016 Version 1 (Component)constitutively expressed eGFP under the control of J23110 Anderson promoter
BBa_K239004BBa_K239004 Version 1 (Component)Part of narGP promoter, activated by Fnr during oxygen deficiency
VR8BBa_K176052 Version 1 (Component)Reverse primer VR8 (bind to K176042), member of VR3~VR12
VR3BBa_K176047 Version 1 (Component)Reverse primer VR3 (bind to K176037), member of VR3~VR12
VR10BBa_K176054 Version 1 (Component)Reverse primer VR10 (bind to K176044), member of VR3~VR12
VR4BBa_K176048 Version 1 (Component)Reverse primer VR4 (bind to K176038), member of VR3~VR12
S+P28+ori+BBa_K320009 Version 1 (Component)Constitutive expression of P28 in Asaia and Resistance to Tetracycline
BBa_J100308BBa_J100308 Version 1 (Component)Variant of repClone Red(J100205) w/ wt TetR promoter (R0040)
VR11BBa_K176055 Version 1 (Component)Reverse primer VR11 (bind to K176045), member of VR3~VR12
VR12BBa_K176056 Version 1 (Component)Reverse primer VR12 (bind to K176046), member of VR3~VR12
BBa_K242250BBa_K242250 Version 1 (Component)antisense RNA targeting replication machineries of T3 and T7 bacteriophages
FecR 1-85BBa_K257020 Version 1 (Component)FecR 1-85 - amplification of the ferric citrate induction response
BBa_K176088BBa_K176088 Version 1 (Component)Reverse sequencing primer binds to the middle of luxR (VRluxR)
BBa_K143003BBa_K143003 Version 1 (Component)5??? Integration Sequence for the PyrD locus of B. subtilis
VR5BBa_K176049 Version 1 (Component)Reverse primer VR5 (bind to K176039), member of VR3~VR12
VR7BBa_K176051 Version 1 (Component)Reverse primer VR7 (bind to K176041), member of VR3~VR12
VR9BBa_K176053 Version 1 (Component)Reverse primer VR9 (bind to K176043), member of VR3~VR12
BBa_K1216009BBa_K1216009 Version 1 (Component)Variant of the wild-type pLuxR promoter with lower sensitivity
BBa_K349004BBa_K349004 Version 1 (Component)RFP BbsI BA (for Construction of AB Type Bytes-v2)
VR6BBa_K176050 Version 1 (Component)Reverse primer VR6 (bind to K176040), member of VR3~VR12
S+imm+ori+BBa_K320008 Version 1 (Component)Constitutive expression of Immunotoxin in Asaia and resistance to Kanamycine
BBa_K1015010BBa_K1015010 Version 1 (Component)Ampicillin resistance gene
SBOLDesigner CAD ToolSBOLDesigner Version 3.0 (Agent)SBOLDesigner is a simple, biologist-friendly CAD software tool for creating and manipulating the sequences of genetic constructs using the Synthetic Biology Open Language (SBOL) 2 data model. Throughout the design process, SBOL Visual symbols, a system of schematic glyphs, provide standardized visualizations of individual parts. SBOLDesigner completes a workflow for users of genetic design automation tools. It combines a simple user interface with the power of the SBOL standard and serves as a launchpad for more detailed designs involving simulations and experiments. Some new features in SBOLDesigner are SynBioHub integration, local repositories, importing of parts/sequences from existing files, import and export of GenBank and FASTA files, extended role ontology support, the ability to partially open designs with multiple root ComponentDefinitions, backward compatibility with SBOL 1.1, and versioning.
BBa_K1699004BBa_K1699004 Version 1 (Component)gRNA for SaCas9 targeting human ubiquitin B gene under U6 promoter
BBa_K809721BBa_K809721 Version 1 (Component)DLD3 promoter + kozak + hoiln(lambda phage) + ADH1 terminator
BBa_K525010BBa_K525010 Version 1 (Component)Fusion Protein of S-Layer SbpA and LigA with His-Tag
BBa_K525009BBa_K525009 Version 1 (Component)Fusion Protein of S-Layer SgsE and LigA with His-Tag
BBa_M31540BBa_M31540 Version 1 (Component)Four Proteins involved in the production of the M13K07 phage coat.
BBa_K182001BBa_K182001 Version 1 (Component)Intermediate Part consisting of LacI ( RBS+, Term +) and a Tet operator.
BBa_K346034BBa_K346034 Version 1 (Component)T7p(BBa_I719005)+RBS(B0034)+Lpp-OmpA+MBP(surface display of mercury binding peptide)
BBa_M1592BBa_M1592 Version 1 (Component)other gene
BBa_K1675008BBa_K1675008 Version 1 (Component)A device used in the synthesis of lactic acid
BBa_K1707016BBa_K1707016 Version 1 (Component)TetR-ssRA repressor controlling the expression of CFP-ssRA
BBa_K1702005BBa_K1702005 Version 1 (Component)Trans-zeatin biosynthesis under control of the lac promoter
BBa_K1060014BBa_K1060014 Version 1 (Component)Strong constitutive expression of EBF synthase from Artemisia annua
BBa_K557003BBa_K557003 Version 1 (Component)luxpR+cI: for modulating the ratio of Toggle switch
BBa_M1676BBa_M1676 Version 1 (Component)a construct to detect the presence/absence of glucose
BBa_K1565000BBa_K1565000 Version 1 (Component)This part is a colorimetric indicator of cell lysis
Xylr sensoBBa_I723140 Version 1 (Component)Xylene sensor for creation of reporter constructs (secondary version)
BBa_K1932005BBa_K1932005 Version 1 (Component)This device is made up of BBa_K1932000;BBa_K1932001;BBa_K1932004
BBa_K1104701BBa_K1104701 Version 1 (Component)The control group of positive feedback in suicide group
BBa_K1707029BBa_K1707029 Version 1 (Component)thermosensitive cI repressor controlling the expression of CFP-ssRA
BBa_C0011BBa_C0011 Version 1 (Component)ccdB gene from <I> E. coli </I>
SEGASEGA_collection Version 1 (Collection)In the Standardized Genome Architecture (SEGA), genomic integration of DNA fragments is enabled by λ-Red recombineering and so-called landing pads that are a common concept in synthetic biology and typically contain features that i) enable insertion of additional genetic elements and ii) provide well-characterized functional parts such as promoters and genes, and iii) provides insulation against genome context-dependent effects. The SEGA landing pads allow for reusable homology regions and time-efficient construction of parallel genetic designs with a minimal number of reagents and handling steps. SEGA bricks, typically synthetic DNA or PCR fragments, are integrated on the genome simply by combining the two reagents (i.e. competent cells and DNA), followed by incubation steps, and successful recombinants are identified by visual inspection on agar plates. The design of the SEGA standard was heavily influenced by the Standard European Vector Architecture (SEVA). SEGA landing pads typically hosts two major genetic “control elements” that influence gene expression on the transcriptional (C1), and translational (C2) level. Furthermore, landing pads contain gadgets such as selection and counterselection markers.
BBa_I3401BBa_I3401 Version 1 (Component)Lambda cI switch input device (B0034.C0051.B0015)
BBa_K525002BBa_K525002 Version 1 (Component)Fusion protein of SbpA, NADP+ Oxidoreductase, BisdA and BisdB with PT7/lac
BBa_K525001BBa_K525001 Version 1 (Component)Fusion protein of SgsE, NADP+ Oxidoreductase, BisdA and BisdB with PT7/lac
GH371BBa_V1011 Version 1 (Component)E. coli strain GH371; 5-fluorouracil resistant upp mutant of GeneHogs