Transforming _Acinetobacter baylyi ADP1About A. baylyi ADP1Acinetobacter baylyi ADP1 is a naturally competent bacteria with enormous potential for genome engineering due to the ease of genome manipulation its competence confers. ADP1 becomes competent after being diluted into fresh media from stationary phase and remains competent until late log phase. The following procedures are used for transforming a self-replicating plasmid into ADP1 or an integrating PCR product with homology to the ADP1 genome. Genomic DNA from marker carrying ADP1 strains can also be used as a transformation source. Discussions of plasmids that are functional in ADP1 and the procedure for genome modification will be provided elsewhere.Transforming a plasmid or PCR product into ADP1The following is a standard procedure for transforming plasmid or a PCR product into the ADP1 strain.
Notes/Considerations in ADP1 transformations
Transformation efficiency / frequencyThe following is a standard procedure for detecting transformation efficiency and frequency in ADP1.
Related references (links to articles)On natural competence in nature: Natural competence for transformation - review mentions other naturally competent species Pull in and Push Out: Mechanisms of Horizontal Gene Transfer in Bacteria - - as of 2018, this is the latest review on natural competence mechanisms. Horizontal DNA Transfer Mechanisms of Bacteria as Weapons of Intragenomic Conflict - on the evolution of natural competence Inter-species population dynamics enhance microbial horizontal gene transfer and spread of antibiotic resistance - how T6SS-mediated predation/killing by ADP1 increases cross-species HGT On ADP1's natural competence: Growth phase-specific evolutionary benefits of natural transformation in Acinetobacter baylyi Costs and benefits of natural transformation in Acinetobacter baylyi The role of core and accessory type IV pilus genes in natural transformation and twitching motility in the bacterium Acinetobacter baylyi Integration of foreign DNA during natural transformation of Acinetobacter sp. by homology-facilitated illegitimate recombination | ||||||||
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< < | Acinetobacter baylyi ADP1 is a naturally competent bacteria with enormous potential for genome engineering due to the ease of genome manipulation its competence confers. ADP1 becomes competent after being diluted into into fresh media from stationary phase and remains remains competent until late log phase. The following procedures are used for transforming a self-replicating plasmid into ADP1 or an integrating PCR product with homology to the ADP1 genome. Genomic DNA from marker carrying ADP1 strains can also be used as a transformation source. Discussions of the design of which plasmids are functional in ADP1 and the procedure for genome modification will be provided elsewhere. | |||||||
> > | Acinetobacter baylyi ADP1 is a naturally competent bacteria with enormous potential for genome engineering due to the ease of genome manipulation its competence confers. ADP1 becomes competent after being diluted into fresh media from stationary phase and remains competent until late log phase. The following procedures are used for transforming a self-replicating plasmid into ADP1 or an integrating PCR product with homology to the ADP1 genome. Genomic DNA from marker carrying ADP1 strains can also be used as a transformation source. Discussions of plasmids that are functional in ADP1 and the procedure for genome modification will be provided elsewhere. | |||||||
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Related references (links to articles)On natural competence in nature: Natural competence for transformation - review mentions other naturally competent species Pull in and Push Out: Mechanisms of Horizontal Gene Transfer in Bacteria - - as of 2018, this is the latest review on natural competence mechanisms. Horizontal DNA Transfer Mechanisms of Bacteria as Weapons of Intragenomic Conflict - on the evolution of natural competence Inter-species population dynamics enhance microbial horizontal gene transfer and spread of antibiotic resistance - how T6SS-mediated predation/killing by ADP1 increases cross-species HGT On ADP1's natural competence: Growth phase-specific evolutionary benefits of natural transformation in Acinetobacter baylyi Costs and benefits of natural transformation in Acinetobacter baylyi The role of core and accessory type IV pilus genes in natural transformation and twitching motility in the bacterium Acinetobacter baylyi Integration of foreign DNA during natural transformation of Acinetobacter sp. by homology-facilitated illegitimate recombination -- Main.BrianRenda - 04 Jun 2013 -- Edited by Xue Zhang - 25 Aug 2016 -- References added G.Suarez - 25 Oct 2018 | ||||||||
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Transforming Acinetobacter baylyi ADP1About _A. baylyi ADP1Acinetobacter baylyi ADP1 is a naturally competent bacteria with enormous potential for genome engineering due to the ease of genome manipulation its competence confers. ADP1 becomes competent after being diluted into into fresh media from stationary phase and remains remains competent until late log phase. The following procedures are used for transforming a self-replicating plasmid into ADP1 or an integrating PCR product with homology to the ADP1 genome. Genomic DNA from marker carrying ADP1 strains can also be used as a transformation source. Discussions of the design of which plasmids are functional in ADP1 and the procedure for genome modification will be provided elsewhere.Transforming a plasmid or PCR product into ADP1The following is a standard procedure for transforming plasmid or a PCR product into the ADP1 strain.
Notes/Considerations in ADP1 transformations | ||||||||
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Transformation efficiency / frequencyThe following is a standard procedure for detecting transformation efficiency and frequency in ADP1 strain.
Related references (links to articles)On natural competence in nature: Natural competence for transformation - review mentions other naturally competent species Pull in and Push Out: Mechanisms of Horizontal Gene Transfer in Bacteria - - as of 2018, this is the latest review on natural competence mechanisms. Horizontal DNA Transfer Mechanisms of Bacteria as Weapons of Intragenomic Conflict - on the evolution of natural competence Inter-species population dynamics enhance microbial horizontal gene transfer and spread of antibiotic resistance - how T6SS-mediated predation/killing by ADP1 increases cross-species HGT On ADP1's natural competence: Growth phase-specific evolutionary benefits of natural transformation in Acinetobacter baylyi Costs and benefits of natural transformation in Acinetobacter baylyi The role of core and accessory type IV pilus genes in natural transformation and twitching motility in the bacterium Acinetobacter baylyi Integration of foreign DNA during natural transformation of Acinetobacter sp. by homology-facilitated illegitimate recombination -- Main.BrianRenda - 04 Jun 2013 -- Edited by Xue Zhang - 25 Aug 2016 -- References added G.Suarez - 25 Oct 2018
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Transforming Acinetobacter baylyi ADP1About _A. baylyi ADP1Acinetobacter baylyi ADP1 is a naturally competent bacteria with enormous potential for genome engineering due to the ease of genome manipulation its competence confers. ADP1 becomes competent after being diluted into into fresh media from stationary phase and remains remains competent until late log phase. The following procedures are used for transforming a self-replicating plasmid into ADP1 or an integrating PCR product with homology to the ADP1 genome. Genomic DNA from marker carrying ADP1 strains can also be used as a transformation source. Discussions of the design of which plasmids are functional in ADP1 and the procedure for genome modification will be provided elsewhere.Transforming a plasmid or PCR product into ADP1The following is a standard procedure for transforming plasmid or a PCR product into the ADP1 strain.
Notes/Considerations in ADP1 transformations
Transformation efficiency / frequencyThe following is a standard procedure for detecting transformation efficiency and frequency in ADP1 strain.
Related references (links to articles)On natural competence in nature: Natural competence for transformation - review mentions other naturally competent species Pull in and Push Out: Mechanisms of Horizontal Gene Transfer in Bacteria - - as of 2018, this is the latest review on natural competence mechanisms. Horizontal DNA Transfer Mechanisms of Bacteria as Weapons of Intragenomic Conflict - on the evolution of natural competence | ||||||||
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> > | Inter-species population dynamics enhance microbial horizontal gene transfer and spread of antibiotic resistance - how T6SS-mediated predation/killing by ADP1 increases cross-species HGT | |||||||
On ADP1's natural competence:
Growth phase-specific evolutionary benefits of natural transformation in Acinetobacter baylyi
Costs and benefits of natural transformation in Acinetobacter baylyi
The role of core and accessory type IV pilus genes in natural transformation and twitching motility in the bacterium Acinetobacter baylyi
Integration of foreign DNA during natural transformation of Acinetobacter sp. by homology-facilitated illegitimate recombination
-- Main.BrianRenda - 04 Jun 2013
-- Edited by Xue Zhang - 25 Aug 2016
-- References added G.Suarez - 25 Oct 2018
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Transforming Acinetobacter baylyi ADP1About _A. baylyi ADP1Acinetobacter baylyi ADP1 is a naturally competent bacteria with enormous potential for genome engineering due to the ease of genome manipulation its competence confers. ADP1 becomes competent after being diluted into into fresh media from stationary phase and remains remains competent until late log phase. The following procedures are used for transforming a self-replicating plasmid into ADP1 or an integrating PCR product with homology to the ADP1 genome. Genomic DNA from marker carrying ADP1 strains can also be used as a transformation source. Discussions of the design of which plasmids are functional in ADP1 and the procedure for genome modification will be provided elsewhere.Transforming a plasmid or PCR product into ADP1The following is a standard procedure for transforming plasmid or a PCR product into the ADP1 strain.
Notes/Considerations in ADP1 transformations
Transformation efficiency / frequencyThe following is a standard procedure for detecting transformation efficiency and frequency in ADP1 strain.
Related references (links to articles)On natural competence in nature: Natural competence for transformation - review mentions other naturally competent species Pull in and Push Out: Mechanisms of Horizontal Gene Transfer in Bacteria - - as of 2018, this is the latest review on natural competence mechanisms. Horizontal DNA Transfer Mechanisms of Bacteria as Weapons of Intragenomic Conflict - on the evolution of natural competence On ADP1's natural competence: Growth phase-specific evolutionary benefits of natural transformation in Acinetobacter baylyi Costs and benefits of natural transformation in Acinetobacter baylyi The role of core and accessory type IV pilus genes in natural transformation and twitching motility in the bacterium Acinetobacter baylyi Integration of foreign DNA during natural transformation of Acinetobacter sp. by homology-facilitated illegitimate recombination -- Main.BrianRenda - 04 Jun 2013 -- Edited by Xue Zhang - 25 Aug 2016 | ||||||||
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< < | -- Reference additions by G.Suarez - 25 Oct 2018 | |||||||
> > | -- References added G.Suarez - 25 Oct 2018 | |||||||
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Transforming Acinetobacter baylyi ADP1About _A. baylyi ADP1Acinetobacter baylyi ADP1 is a naturally competent bacteria with enormous potential for genome engineering due to the ease of genome manipulation its competence confers. ADP1 becomes competent after being diluted into into fresh media from stationary phase and remains remains competent until late log phase. The following procedures are used for transforming a self-replicating plasmid into ADP1 or an integrating PCR product with homology to the ADP1 genome. Genomic DNA from marker carrying ADP1 strains can also be used as a transformation source. Discussions of the design of which plasmids are functional in ADP1 and the procedure for genome modification will be provided elsewhere.Transforming a plasmid or PCR product into ADP1The following is a standard procedure for transforming plasmid or a PCR product into the ADP1 strain.
Notes/Considerations in ADP1 transformations
Transformation efficiency / frequencyThe following is a standard procedure for detecting transformation efficiency and frequency in ADP1 strain.
Related references (links to articles) | ||||||||
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< < | Natural competence for transformation - reviews natural competence in nature | |||||||
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> > | Natural competence for transformation - review mentions other naturally competent species Pull in and Push Out: Mechanisms of Horizontal Gene Transfer in Bacteria - - as of 2018, this is the latest review on natural competence mechanisms. Horizontal DNA Transfer Mechanisms of Bacteria as Weapons of Intragenomic Conflict - on the evolution of natural competence On ADP1's natural competence: | |||||||
Growth phase-specific evolutionary benefits of natural transformation in Acinetobacter baylyi Costs and benefits of natural transformation in Acinetobacter baylyi | ||||||||
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< < | Pull in and Push Out: Mechanisms of Horizontal Gene Transfer in Bacteria - - as of 2018, this is the latest review on natural competence mechanisms. | |||||||
The role of core and accessory type IV pilus genes in natural transformation and twitching motility in the bacterium Acinetobacter baylyi | ||||||||
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< < | Horizontal DNA Transfer Mechanisms of Bacteria as Weapons of Intragenomic Conflict - on the evolution of natural competence -- Main.BrianRenda - 04 Jun 2013 -- Edited by Xue Zhang - 25 Aug 2016 | |||||||
> > | Integration of foreign DNA during natural transformation of Acinetobacter sp. by homology-facilitated illegitimate recombination -- Main.BrianRenda - 04 Jun 2013 -- Edited by Xue Zhang - 25 Aug 2016 | |||||||
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> > | -- Reference additions by G.Suarez - 25 Oct 2018 | |||||||
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Transforming Acinetobacter baylyi ADP1About _A. baylyi ADP1Acinetobacter baylyi ADP1 is a naturally competent bacteria with enormous potential for genome engineering due to the ease of genome manipulation its competence confers. ADP1 becomes competent after being diluted into into fresh media from stationary phase and remains remains competent until late log phase. The following procedures are used for transforming a self-replicating plasmid into ADP1 or an integrating PCR product with homology to the ADP1 genome. Genomic DNA from marker carrying ADP1 strains can also be used as a transformation source. Discussions of the design of which plasmids are functional in ADP1 and the procedure for genome modification will be provided elsewhere.Transforming a plasmid or PCR product into ADP1The following is a standard procedure for transforming plasmid or a PCR product into the ADP1 strain.
Notes/Considerations in ADP1 transformations
Transformation efficiency / frequencyThe following is a standard procedure for detecting transformation efficiency and frequency in ADP1 strain.
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> > | Related references (links to articles)Natural competence for transformation - reviews natural competence in nature | |||||||
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> > | Growth phase-specific evolutionary benefits of natural transformation in Acinetobacter baylyi Costs and benefits of natural transformation in Acinetobacter baylyi Pull in and Push Out: Mechanisms of Horizontal Gene Transfer in Bacteria - - as of 2018, this is the latest review on natural competence mechanisms. The role of core and accessory type IV pilus genes in natural transformation and twitching motility in the bacterium Acinetobacter baylyi Horizontal DNA Transfer Mechanisms of Bacteria as Weapons of Intragenomic Conflict - on the evolution of natural competence | |||||||
-- Main.BrianRenda - 04 Jun 2013
-- Edited by Xue Zhang - 25 Aug 2016
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Transforming Acinetobacter baylyi ADP1About _A. baylyi ADP1Acinetobacter baylyi ADP1 is a naturally competent bacteria with enormous potential for genome engineering due to the ease of genome manipulation its competence confers. ADP1 becomes competent after being diluted into into fresh media from stationary phase and remains remains competent until late log phase. The following procedures are used for transforming a self-replicating plasmid into ADP1 or an integrating PCR product with homology to the ADP1 genome. Genomic DNA from marker carrying ADP1 strains can also be used as a transformation source. Discussions of the design of which plasmids are functional in ADP1 and the procedure for genome modification will be provided elsewhere.Transforming a plasmid or PCR product into ADP1The following is a standard procedure for transforming plasmid or a PCR product into the ADP1 strain.
Notes/Considerations in ADP1 transformations
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< < | Acinetobacter baylyi ADP1 (AB) is a naturally competent bacteria with enormous potential for genome engineering due to the ease of genome manipulation its competence confers. AB becomes competent after being diluted into into fresh media from stationary phase and remains remains competent until late log phase. The following procedures are used for transforming a self-replicating plasmid into AB or an integrating PCR product with homology to the AB genome. Genomic DNA from marker carrying AB strains can also be used as a transformation source. Discussions of the design of which plasmids are functional in AB and the procedure for genome modification will be provided elsewhere. | |||||||
> > | Acinetobacter baylyi ADP1 is a naturally competent bacteria with enormous potential for genome engineering due to the ease of genome manipulation its competence confers. ADP1 becomes competent after being diluted into into fresh media from stationary phase and remains remains competent until late log phase. The following procedures are used for transforming a self-replicating plasmid into ADP1 or an integrating PCR product with homology to the ADP1 genome. Genomic DNA from marker carrying ADP1 strains can also be used as a transformation source. Discussions of the design of which plasmids are functional in ADP1 and the procedure for genome modification will be provided elsewhere. | |||||||
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-- Main.BrianRenda - 04 Jun 2013 |
Transforming Acinetobacter baylyi ADP1About A. baylyi ADP1Acinetobacter baylyi ADP1 (AB) is a naturally competent bacteria with enormous potential for genome engineering due to the ease of genome manipulation its competence confers. AB becomes competent after being diluted into into fresh media from stationary phase and remains remains competent until late log phase. The following procedures are used for transforming a self-replicating plasmid into AB or an integrating PCR product with homology to the AB genome. Genomic DNA from marker carrying AB strains can also be used as a transformation source. Discussions of the design of which plasmids are functional in AB and the procedure for genome modification will be provided elsewhere.Transforming a plasmid or PCR product into ABThe following is a standard procedure for transforming plasmid or a PCR product into the ADP1 strain.
Notes/Considerations in AB transformations
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