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Showing 2251 - 2296 of 2296 result(s)
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Public
BBa_K2066084
BBa_K2066084 Version 1 (Component)
Promoter characterization part - J23103 without RiboJ
Public
BBa_K2066063
BBa_K2066063 Version 1 (Component)
Promoter characterization part: J23103 with RiboJ
Public
BBa_J14463
BBa_J14463 Version 1 (Component)
Composite part comprised of J13002 and I13501
Public
BBa_J14462
BBa_J14462 Version 1 (Component)
Composite part comprised of J13002 and J04650
Public
BBa_K332024
BBa_K332024 Version 1 (Component)
A part of cell-cell-sigaling system
Public
BBa_J14465
BBa_J14465 Version 1 (Component)
Composite part comprised of J13002 and I13401
Public
BBa_J14459
BBa_J14459 Version 1 (Component)
Composite part comprised of J04500 and J04630
Public
BBa_J14464
BBa_J14464 Version 1 (Component)
Composite part comprised of J13002 and J04630
Public
BBa_K564016
BBa_K564016 Version 1 (Component)
Upstream mutated chitoporin part fused with lacZ
Public
BBa_K564017
BBa_K564017 Version 1 (Component)
Upstream mutated chitoporin part fused with lacZ
Public
BBa_K581003
BBa_K581003 Version 1 (Component)
SgrS2+Terminator (small RNA regulator, conjugate part of ptsG2)
Public
Hax
BBa_K116999 Version 1 (Component)
Testing registry entry. This part doeth not exist.
Public
SBOLDesigner CAD Tool
SBOLDesigner 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.
Public
BBa_K779120
BBa_K779120 Version 1 (Component)
RNA Reporter top strand with quencher (RQ) and tag fluorophore (Alexa 488) MammoBlock
Public
BBa_K1172914
BBa_K1172914 Version 1 (Component)
Part 2 of the Biosafety-System TetOR alive (TetO GFP)
Public
BBa_J70084
BBa_J70084 Version 1 (Component)
Adds 6 his suffix, using BioScaffold part J70030 (PpiI) in pSB1AT3
Public
[OriTR]+[R
BBa_K1439002 Version 1 (Component)
This part contains a reporter gene BBa_J04450, combined with OriTR. Used to test plasmid mobility.
Public
BBa_M45090_sequence
BBa_M45090_sequence Version 1 (Sequence)

Public
BBa_M45005_sequence
BBa_M45005_sequence Version 1 (Sequence)

Public
BBa_M45003_sequence
BBa_M45003_sequence Version 1 (Sequence)

Public
BBa_M45004_sequence
BBa_M45004_sequence Version 1 (Sequence)

Public
BBa_M45001_sequence
BBa_M45001_sequence Version 1 (Sequence)

Public
BBa_M45009_sequence
BBa_M45009_sequence Version 1 (Sequence)

Public
BBa_M45002_sequence
BBa_M45002_sequence Version 1 (Sequence)

Public
BBa_M45010_sequence
BBa_M45010_sequence Version 1 (Sequence)

Public
BBa_M45008_sequence
BBa_M45008_sequence Version 1 (Sequence)

Public
BBa_M45007_sequence
BBa_M45007_sequence Version 1 (Sequence)

Public
BBa_M45100_sequence
BBa_M45100_sequence Version 1 (Sequence)

Public
BBa_M45900_sequence
BBa_M45900_sequence Version 1 (Sequence)

Public
BBa_M45400_sequence
BBa_M45400_sequence Version 1 (Sequence)

Public
BBa_M45500_sequence
BBa_M45500_sequence Version 1 (Sequence)

Public
BBa_M45006_sequence
BBa_M45006_sequence Version 1 (Sequence)

Public
BO_4500_seq
BO_4500_seq Version 1 (Sequence)

Public
BBa_M0040_sequence
BBa_M0040_sequence Version 1 (Sequence)

Public
BBa_E0010_sequence
BBa_E0010_sequence Version 1 (Sequence)

Public
BBa_E0043_sequence
BBa_E0043_sequence Version 1 (Sequence)

Public
BBa_E0042_sequence
BBa_E0042_sequence Version 1 (Sequence)

Public
BBa_E0041_sequence
BBa_E0041_sequence Version 1 (Sequence)

Public
BBa_E0050_sequence
BBa_E0050_sequence Version 1 (Sequence)

Public
BO_30040_seq
BO_30040_seq Version 1 (Sequence)

Public
BO_10040_seq
BO_10040_seq Version 1 (Sequence)

Public
BBa_I0040_sequence
BBa_I0040_sequence Version 1 (Sequence)

Public
BBa_E1040_sequence
BBa_E1040_sequence Version 1 (Sequence)

Public
SBOLDesigner CAD Tool
SBOLDesigner Version 3.1 (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 the ability to add variant collections to combinatorial derivations, enumerating those collections, and the ability to view sequence features hierarchically. There are also some small changes to the way that preferences work in regards to saving a design with incomplete sequences.
Public
SEGA
SEGA_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.
Showing 2251 - 2296 of 2296 result(s)
Previous 41 42 43 44 45 46