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| Plasmid Name | Proper Citation | Insert Name | Organism | Bacterial Resistance | Defining Citation |
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pDONR 221-BPC4 (STOP) Resource Report Resource Website |
RRID:Addgene_118680 | BPC4 | Arabidopsis thaliana | Kanamycin | PMID:28400782 | Our work is based on genomic approaches in Arabidopsis thaliana and groups of genes are presented in all of the following publications: Pavicic Mirko (2019). Multifaceted roles of RING-type ubiquitin E3 ligases: reverse phenomic approaches. http://urn.fi/URN:ISBN:978-951-51-5483-5 Pavicic M., Mouhu K., Wang F., Bilicka M., Chovancek E., & Himanen K. (2017). Genomic and phenomic screens for flower related RING type ubiquitin E3 ligases in Arabidopsis. Frontiers in Plant Science. doi.org/10.3389/fpls.2017.00416 Pavicic M., Wang F., Mouhu K., Himanen K. (2019). High throughput in vitro seed germination screen identified new ABA responsive RING-type ubiquitin E3 ligases in Arabidopsis thaliana. Plant Cell Tissue and Organ Culture. https://link.springer.com/article/10.1007/s11240-019-01700-9 | Vector Backbone:pDONR 221; Vector Types:Other; Bacterial Resistance:Kanamycin | 2026-08-15 01:03:07 | 0 | |
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pBA cHA-FG1 Resource Report Resource Website |
RRID:Addgene_118665 | AT3G07200 | Arabidopsis thaliana | Spectinomycin | PMID:28400782 | 28 C in GV3101 (pMP90) strain Our work is based on genomic approaches in Arabidopsis thaliana and groups of genes are presented in all of the following publications: Pavicic Mirko (2019). Multifaceted roles of RING-type ubiquitin E3 ligases: reverse phenomic approaches. http://urn.fi/URN:ISBN:978-951-51-5483-5 Pavicic M., Mouhu K., Wang F., Bilicka M., Chovancek E., & Himanen K. (2017). Genomic and phenomic screens for flower related RING type ubiquitin E3 ligases in Arabidopsis. Frontiers in Plant Science. doi.org/10.3389/fpls.2017.00416 Pavicic M., Wang F., Mouhu K., Himanen K. (2019). High throughput in vitro seed germination screen identified new ABA responsive RING-type ubiquitin E3 ligases in Arabidopsis thaliana. Plant Cell Tissue and Organ Culture. https://link.springer.com/article/10.1007/s11240-019-01700-9 | Vector Backbone:pBA cHA; Vector Types:Plant Expression; Bacterial Resistance:Spectinomycin | 2026-08-15 01:03:06 | 0 | |
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pBA cMYC-BPC4 Resource Report Resource Website |
RRID:Addgene_118668 | BPC4 | Arabidopsis thaliana | Spectinomycin | PMID:28400782 | 28 C in GV3101 (pMP90) strain Our work is based on genomic approaches in Arabidopsis thaliana and groups of genes are presented in all of the following publications: Pavicic Mirko (2019). Multifaceted roles of RING-type ubiquitin E3 ligases: reverse phenomic approaches. http://urn.fi/URN:ISBN:978-951-51-5483-5 Pavicic M., Mouhu K., Wang F., Bilicka M., Chovancek E., & Himanen K. (2017). Genomic and phenomic screens for flower related RING type ubiquitin E3 ligases in Arabidopsis. Frontiers in Plant Science. doi.org/10.3389/fpls.2017.00416 Pavicic M., Wang F., Mouhu K., Himanen K. (2019). High throughput in vitro seed germination screen identified new ABA responsive RING-type ubiquitin E3 ligases in Arabidopsis thaliana. Plant Cell Tissue and Organ Culture. https://link.springer.com/article/10.1007/s11240-019-01700-9 | Vector Backbone:pBA cMYC; Vector Types:Plant Expression; Bacterial Resistance:Spectinomycin | 2026-08-15 01:03:06 | 0 | |
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pDEST 527-PHL2 Resource Report Resource Website |
RRID:Addgene_118670 | PHL2 | Arabidopsis thaliana | Ampicillin | PMID:28400782 | Our work is based on genomic approaches in Arabidopsis thaliana and groups of genes are presented in all of the following publications: Pavicic Mirko (2019). Multifaceted roles of RING-type ubiquitin E3 ligases: reverse phenomic approaches. http://urn.fi/URN:ISBN:978-951-51-5483-5 Pavicic M., Mouhu K., Wang F., Bilicka M., Chovancek E., & Himanen K. (2017). Genomic and phenomic screens for flower related RING type ubiquitin E3 ligases in Arabidopsis. Frontiers in Plant Science. doi.org/10.3389/fpls.2017.00416 Pavicic M., Wang F., Mouhu K., Himanen K. (2019). High throughput in vitro seed germination screen identified new ABA responsive RING-type ubiquitin E3 ligases in Arabidopsis thaliana. Plant Cell Tissue and Organ Culture. https://link.springer.com/article/10.1007/s11240-019-01700-9 | Vector Backbone:pDEST 527; Vector Types:Bacterial Expression; Bacterial Resistance:Ampicillin | 2026-08-15 01:03:06 | 0 | |
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puc19-pCas13a Resource Report Resource Website |
RRID:Addgene_118963 | Cas13a | Arabidopsis thaliana | Ampicillin | PMID:29301551 | Vector Backbone:PUC19MinusMCS; Vector Types:Plant Expression; Bacterial Resistance:Ampicillin | 2026-08-15 01:03:08 | 0 | ||
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pSOMA-NLS Resource Report Resource Website |
RRID:Addgene_118937 | SOMA Sensor for Arabidopsis MAPK activity with Nuclear Localization Signal | Arabidopsis thaliana | Kanamycin | PMID:30444549 | The Eevee Linker present in this plasmid was invented by Prof. Michiyuki Matsuda at Kyoto University. The Eevee Linker has been patented by Kyoto University. The plasmid backbone used to produce the SOMA sensor was a kind gift of Michiyuki Matsuda and Kazuhiro Aoki. Please note there are some sequence discrepancies between the Addgene quality control sequence and the author-supplied Genbank sequence. The authors have noted that the discrepancies do NOT affect plasmid function. | Vector Backbone:pCAMBIA-1300; Vector Types:Plant Expression; Bacterial Resistance:Kanamycin | 2026-08-15 01:03:09 | 0 | |
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pET-SOMA-T679A Resource Report Resource Website |
RRID:Addgene_118936 | SOMA FRET sensor for measuring MAPK activity in Arabidopsis thaliana with T679A Mutation | Arabidopsis thaliana | Ampicillin | PMID:30444549 | The Eevee Linker present in this plasmid was invented by Prof. Michiyuki Matsuda at Kyoto University. The Eevee Linker has been patented by Kyoto University. The plasmid backbone used to produce the SOMA sensor was a kind gift of Michiyuki Matsuda and Kazuhiro Aoki. Please note there are some sequence discrepancies between the Addgene quality control sequence and the author-supplied Genbank sequence. The authors have noted that the discrepancies do NOT affect plasmid function. | Vector Backbone:pET-32(a)+; Vector Types:Bacterial Expression; Bacterial Resistance:Ampicillin | 2026-08-15 01:03:08 | 0 | |
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pSOMA-T679A-NLS Resource Report Resource Website |
RRID:Addgene_118938 | SOMA Sensor for Arabidopsis MAPK activity with T679A Mutation and Nuclear Localization Signal | Arabidopsis thaliana | Kanamycin | PMID:30444549 | The Eevee Linker present in this plasmid was invented by Prof. Michiyuki Matsuda at Kyoto University. The Eevee Linker has been patented by Kyoto University. The plasmid backbone used to produce the SOMA sensor was a kind gift of Michiyuki Matsuda and Kazuhiro Aoki. Please note there are some sequence discrepancies between the Addgene quality control sequence and the author-supplied Genbank sequence. The authors have noted that the discrepancies do NOT affect plasmid function. | Vector Backbone:pCAMBIA-1300; Vector Types:Plant Expression; Bacterial Resistance:Kanamycin | 2026-08-15 01:03:08 | 0 | |
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pET-SOMA Resource Report Resource Website |
RRID:Addgene_118935 | SOMA FRET sensor for measuring MAPK activity in Arabidopsis thaliana | Arabidopsis thaliana | Ampicillin | PMID:30444549 | The Eevee Linker present in this plasmid was invented by Prof. Michiyuki Matsuda at Kyoto University. The Eevee Linker has been patented by Kyoto University. The plasmid backbone used to produce the SOMA sensor was a kind gift of Michiyuki Matsuda and Kazuhiro Aoki. Please note there are some sequence discrepancies between the Addgene quality control sequence and the author-supplied Genbank sequence. The authors have noted that the discrepancies do NOT affect plasmid function. | Vector Backbone:pET-32(a)+; Vector Types:Bacterial Expression; Bacterial Resistance:Ampicillin | 2026-08-15 01:03:08 | 0 | |
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CUC1 pGreenII0129 Resource Report Resource Website |
RRID:Addgene_12066 | CUC1 | Arabidopsis thaliana | Kanamycin | PMID:15202996 | See "sequence" for full insert sequence. See article for cloning details. | Backbone Size:5000; Vector Backbone:pGreenII0129; Vector Types:plant transformation via Agrobacterium; Bacterial Resistance:Kanamycin | 2026-08-15 01:03:25 | 0 | |
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5mCUC1 pBluescript Resource Report Resource Website |
RRID:Addgene_12065 | CUC1 mutant | Arabidopsis thaliana | Ampicillin | PMID:15202996 | The CUC1 plasmid (addgene # 12064) was used as a starting material. The sequence of the primer pair used for CUC1 mutagenesis is 5mCUC1 forward 5'-CCGATCATCAATACCTTTGCGACGGAGCATGTTTCATGTTTTT CAAATAACTCTGCTGCTCATACCG-3' and 5mCUC1 reverse 5'-CGGTATGAGCAGCAGAGTTATTTGAAAAACATGAAACATGCTCCGTCGCAAAGGTATTGATGATCGG-3'. See "sequence" for the full insert sequence. See article for cloning details. | Backbone Marker:Stratagene; Backbone Size:3000; Vector Backbone:pBluescript II SK+; Vector Types:Bacterial Expression; Bacterial Resistance:Ampicillin | miR-resistant CUC1. Made by introducing five silent mutations within the miR164-complementarity domain of a CUC1 genomic clone. | 2026-08-15 01:03:27 | 0 |
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ARF17 pGreenII0229 Resource Report Resource Website |
RRID:Addgene_12070 | ARF17 | Arabidopsis thaliana | Kanamycin | PMID:15829600 | See "sequence" for full insert sequence. See article for cloning details. | Backbone Size:5000; Vector Backbone:pGreenII0229; Vector Types:Plant Expression, plant transformation via Agrobacterium; Bacterial Resistance:Kanamycin | 2026-08-15 01:03:26 | 0 | |
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35S:5mARF17 pLBR19 Resource Report Resource Website |
RRID:Addgene_12073 | 5mARF17 | Arabidopsis thaliana | Ampicillin | PMID:15829600 | To generate 35S:5mARF17, a 3.3 kb EcoR1-BamH1 fragment of the 6.6 kb 5mARF17 pBluescript clone was subcloned into pLBR19 downstream from the duplicated enhancer of CaMV 35S RNA promoter. See "sequence" for full insert sequence. | Backbone Marker:(pLBR19 is derived from pUC19, but contains the CaMV 35S promote; Backbone Size:5500; Vector Backbone:pLBR19; Vector Types:Plant Expression; Bacterial Resistance:Ampicillin | miR160-resistant version of ARF17 has five silent mutations within the miR160-complementary domain of an ARF17 genomic clone, thereby increasing the number of mismatches between miR160 and the ARF17 mRNA from one in wild type to six. | 2026-08-15 01:03:28 | 0 |
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ARF17 pGreenII0129 Resource Report Resource Website |
RRID:Addgene_12080 | ARF17 | Arabidopsis thaliana | Kanamycin | PMID:15829600 | See "sequence" for full insert sequence. See article for cloning details. | Backbone Size:5000; Vector Backbone:pGreenII0229; Vector Types:Plant Expression, plant transformation via Agrobacterium; Bacterial Resistance:Kanamycin | 2026-08-15 01:03:27 | 0 | |
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pSW457 - tCLV3 Resource Report Resource Website |
RRID:Addgene_115980 | tCLV3 | Arabidopsis thaliana | Ampicillin | PMID:30026289 | Vector Backbone:E000; Vector Types:Unspecified; Bacterial Resistance:Ampicillin | 2026-08-15 01:02:38 | 0 | ||
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pSW181 - GR-LhG4 Resource Report Resource Website |
RRID:Addgene_115983 | GR-LhG4 | Arabidopsis thaliana | Ampicillin | PMID:30026289 | Vector Backbone:C000; Vector Types:Unspecified; Bacterial Resistance:Ampicillin | 2026-08-15 01:02:39 | 0 | ||
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pSW614 - pREV Resource Report Resource Website 1+ mentions |
RRID:Addgene_115989 | pREV | Arabidopsis thaliana | Ampicillin | PMID:30026289 | Vector Backbone:A000; Vector Types:Unspecified; Bacterial Resistance:Ampicillin | 2026-08-15 01:02:39 | 1 | ||
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pSW177 - pCASP1 Resource Report Resource Website |
RRID:Addgene_115986 | pCASP1 | Arabidopsis thaliana | Ampicillin | PMID:30026289 | Vector Backbone:A000; Vector Types:Unspecified; Bacterial Resistance:Ampicillin | 2026-08-15 01:02:39 | 0 | ||
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pSW454 - pUFO Resource Report Resource Website |
RRID:Addgene_115978 | pUFO | Arabidopsis thaliana | Ampicillin | PMID:30026289 | Vector Backbone:A000; Vector Types:Unspecified; Bacterial Resistance:Ampicillin | 2026-08-15 01:02:39 | 0 | ||
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pSW455 - pCLV3 Resource Report Resource Website |
RRID:Addgene_115979 | pCLV3 | Arabidopsis thaliana | Ampicillin | PMID:30026289 | Vector Backbone:A000; Vector Types:Unspecified; Bacterial Resistance:Ampicillin | 2026-08-15 01:02:38 | 0 |
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