BBa_S01896BBa_S01896 Version 1 (Component)Intermediate part from assembly 240
BBa_S01419BBa_S01419 Version 1 (Component)Intermediate part from assembly 240
BBa_S01816BBa_S01816 Version 1 (Component)Intermediate part from assembly 240
BBa_S01535BBa_S01535 Version 1 (Component)Intermediate part from assembly 240
BBa_S01372BBa_S01372 Version 1 (Component)Intermediate part from assembly 239
BBa_S01997BBa_S01997 Version 1 (Component)Intermediate part from assembly 240
BBa_S02002BBa_S02002 Version 1 (Component)Intermediate part from assembly 240
BBa_S01907BBa_S01907 Version 1 (Component)Intermediate part from assembly 240
BBa_S01936BBa_S01936 Version 1 (Component)Intermediate part from assembly 240
BBa_S02107BBa_S02107 Version 1 (Component)Intermediate part from assembly 240
BBa_S01996BBa_S01996 Version 1 (Component)Intermediate part from assembly 240
BBa_S01376BBa_S01376 Version 1 (Component)Intermediate part from assembly 239
BBa_S01379BBa_S01379 Version 1 (Component)Intermediate part from assembly 239
BBa_S01663BBa_S01663 Version 1 (Component)Intermediate part from assembly 240
BBa_S01660BBa_S01660 Version 1 (Component)Intermediate part from assembly 240
BBa_S01898BBa_S01898 Version 1 (Component)Intermediate part from assembly 240
BBa_S01381BBa_S01381 Version 1 (Component)Intermediate part from assembly 239
BBa_S01830BBa_S01830 Version 1 (Component)Intermediate part from assembly 240
BBa_S01845BBa_S01845 Version 1 (Component)Intermediate part from assembly 240
BBa_S01380BBa_S01380 Version 1 (Component)Intermediate part from assembly 239
BBa_S01377BBa_S01377 Version 1 (Component)Intermediate part from assembly 239
BBa_S01842BBa_S01842 Version 1 (Component)Intermediate part from assembly 240
BBa_S01383BBa_S01383 Version 1 (Component)Intermediate part from assembly 239
BBa_S01843BBa_S01843 Version 1 (Component)Intermediate part from assembly 240
BBa_S01378BBa_S01378 Version 1 (Component)Intermediate part from assembly 239
BBa_S01847BBa_S01847 Version 1 (Component)Intermediate part from assembly 240
BBa_S01826BBa_S01826 Version 1 (Component)Intermediate part from assembly 240
BBa_S01382BBa_S01382 Version 1 (Component)Intermediate part from assembly 239
BBa_S01821BBa_S01821 Version 1 (Component)Intermediate part from assembly 240
BBa_S02001BBa_S02001 Version 1 (Component)Intermediate part from assembly 240
BBa_K2066084BBa_K2066084 Version 1 (Component)Promoter characterization part - J23103 without RiboJ
BBa_K2066063BBa_K2066063 Version 1 (Component)Promoter characterization part: J23103 with RiboJ
BBa_J14462BBa_J14462 Version 1 (Component)Composite part comprised of J13002 and J04650
BBa_K332024BBa_K332024 Version 1 (Component)A part of cell-cell-sigaling system
BBa_J14459BBa_J14459 Version 1 (Component)Composite part comprised of J04500 and J04630
BBa_J14464BBa_J14464 Version 1 (Component)Composite part comprised of J13002 and J04630
BBa_K564016BBa_K564016 Version 1 (Component)Upstream mutated chitoporin part fused with lacZ
BBa_K564017BBa_K564017 Version 1 (Component)Upstream mutated chitoporin part fused with lacZ
BBa_K581003BBa_K581003 Version 1 (Component)SgrS2+Terminator (small RNA regulator, conjugate part of ptsG2)
BBa_K1172914BBa_K1172914 Version 1 (Component)Part 2 of the Biosafety-System TetOR alive (TetO GFP)
BBa_J70084BBa_J70084 Version 1 (Component)Adds 6 his suffix, using BioScaffold part J70030 (PpiI) in pSB1AT3
[OriTR]+[RBBa_K1439002 Version 1 (Component)This part contains a reporter gene BBa_J04450, combined with OriTR. Used to test plasmid mobility.
BBa_J119300BBa_J119300 Version 1 (Component)Part for inserting modified D-Dogs for Golden Gate Assembly using BsgI
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.