BBa_K1607008BBa_K1607008 Version 1 (Component)HER2-extracellular domain mutant 7
BBa_K337096BBa_K337096 Version 1 (Component)Fragment 7 of wt AAV8
BBa_K337064BBa_K337064 Version 1 (Component)Fragment 7 of wt AAV1
BBa_K337080BBa_K337080 Version 1 (Component)Fragment 7 of wt AAV5
BBa_K337104BBa_K337104 Version 1 (Component)Fragment 7 of wt AAV9
BBa_J202045BBa_J202045 Version 1 (Component)Ptet Characterization (Mutant#7)
BBa_P101109BBa_P101109 Version 1 (Component)LMS RBS.ORF.Term
BBa_K132000BBa_K132000 Version 1 (Component)RBS+kanR+LVA
BBa_K390017BBa_K390017 Version 1 (Component)psbA2 promoter, 5'UTR, and RBS
BBa_K1452001BBa_K1452001 Version 1 (Component)Pos/neg selection (Bacillus)
BBa_J33204BBa_J33204 Version 1 (Component)xylE reporter gene with rbs
BBa_K091225BBa_K091225 Version 1 (Component)pBAD RBS LacI
BBa_I732017BBa_I732017 Version 1 (Component)lacZ full-length (RBS+ TERM-)
Excel2SBOLExcel2SBOL_collection Version 1 (Collection)A collection of sbol that is used for the excel2sbol library
RBS-His-ScBBa_K1602031 Version 1 (Component)HisTag-Scaffold_Si4-Tag fusion protein with RBS BBa_B0034
BBa_K516030BBa_K516030 Version 1 (Component)mRFP protein generator TERM+ RBS+(B0030)
BBa_K624012BBa_K624012 Version 1 (Component)RBS from Pmsp3
BBa_K346001BBa_K346001 Version 1 (Component)RBS (B0034) + MerR (mercury-responsive transcription factor)
BBa_K1364000BBa_K1364000 Version 1 (Component)N-acetylatedGlucosamine based chemotaxis for Bacillus subtilis
BBa_K1471011BBa_K1471011 Version 1 (Component)RBS (Arabidopsis Thaliana).
BBa_K624001BBa_K624001 Version 1 (Component)tetR+RBS+GFP+ter
BBa_M36934BBa_M36934 Version 1 (Component)Element 7 (Unidentified DNA from pD864: 2761 to 2773)
NAND2-7BBa_I732304 Version 1 (Component)NAND Candidate (U073O22D001O47)
RBS-yjhGBBa_K1602002 Version 1 (Component)B0034-yjhG
BBa_J176086BBa_J176086 Version 1 (Component)Polycomb ATF neg. ctrl. 7 "
BBa_J176076BBa_J176076 Version 1 (Component)Polycomb ATF neg. ctrl. 7
BBa_J176148BBa_J176148 Version 1 (Component)Test miR-luc sensor 7
BBa_K649303BBa_K649303 Version 1 (Component)PlacIQ-RBS-ispS
BBa_K575014BBa_K575014 Version 1 (Component)RhlR/PAI2 Inducible Promoter + RBS (B0030) + RFP
BBa_K1702003BBa_K1702003 Version 1 (Component)Lipase L1 from Bacillus stearothermophilus
BBa_K1871003BBa_K1871003 Version 1 (Component)alpha amylase coding sequence, from Bacillus amyloliquefaciens
BBa_K592016BBa_K592016 Version 1 (Component)B0034-YF1-B0034-FixJ, blue light sensor and RR with RBS
BBa_K863022BBa_K863022 Version 1 (Component)bhal laccase from Bacillus halodurans with constitutive promoter J23100, RBS and HIS tag
cI857BBa_J06503 Version 1 (Component)Lambda cI857 (Lambda II) (RBS- LVA+)
BBa_K116634BBa_K116634 Version 1 (Component)RBS + LuxR + RBS + LuxI + T
BBa_K1175007BBa_K1175007 Version 1 (Component)beta-galacturonidase (YesZ) from Bacillus Subtilis 168
placIQ RBSBBa_K193602 Version 1 (Component)placIQ RBS melA on pSB4A5
BBa_K174006BBa_K174006 Version 1 (Component)Sac single crossover site for Bacillus subtilis
BBa_K1364021BBa_K1364021 Version 1 (Component)Integrative plasmid for Bacillus subtilis (pSBbs4E)
BBa_K541525BBa_K541525 Version 1 (Component)LALF for Bacillus subtilis with LipA signal peptide
DigitalizerDigitalizer_collection Version 1 (Collection)A genetic device to digitalize gene expression into a sharp on/off signal.
BBa_K2029015BBa_K2029015 Version 1 (Component)pSBbs1AK1 (replicative Bacillus subtilis expression vector)
BBa_K1159002BBa_K1159002 Version 1 (Component)Laccase from <i>Bacillus pumilus</i> in RFC[25]
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_K1820011BBa_K1820011 Version 1 (Component)RBS + sfGFP(Bs) + terminator
BBa_I13001BBa_I13001 Version 1 (Component)RBS B0030 w/ YFP (-LVA) TT