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dc.contributor.authorUllrich, M.
dc.contributor.authorGuenzi, A. C.
dc.contributor.authorMitchell, R. E.
dc.contributor.authorBender, C. L.
dc.date.accessioned2018-08-17T16:24:49Z
dc.date.available2018-08-17T16:24:49Z
dc.date.issued1994-08
dc.identifieroksd_m.ullrich_cloningandexpr_1994
dc.identifier.citationUllrich, M., Guenzi, A. C., Mitchell, R. E., & Bender, C. L. (1994). Cloning and expression of genes required for coronamic acid (2-ethyl-1-aminocyclopropane 1-carboxylic acid), an intermediate in the biosynthesis of the phytotoxin coronatine. Applied and Environmental Microbiology, 60(8), 2890-2897. https://doi.org/10.1128/aem.60.8.2890-2897.1994
dc.identifier.urihttps://hdl.handle.net/11244/301433
dc.description.abstractCoronamic acid (CMA; 2-ethyl-1-aminocyclopropane 1-carboxylic acid) is an intermediate in the biosynthesis of coronatine (COR), a chlorosis-inducing phytotoxin produced by Pseudomonas syringae pv. glycinea PG4180. Tn5 mutagenesis and substrate feeding studies were previously used to characterize regions of the COR biosynthetic gene cluster required for synthesis of coronafacic acid and CMA, which are the only two characterized intermediates in the COR biosynthetic pathway. In the present study, additional Tn5 insertions were generated to more precisely define the region required for CMA biosynthesis. A new analytical method for CMA detection which involves derivatization with phenylisothiocyanate and detection by high-performance liquid chromatography (HPLC) was developed. This method was used to analyze and quantify the production of CMA by selected derivatives of P. syringae pv. glycinea which contained mutagenized or cloned regions from the CMA biosynthetic region. pMU2, a clone containing a 6.45-kb insert from the CMA region, genetically complemented mutants which required CMA for COR production. When pMU2 was introduced into P. syringae pv. glycinea 18a/90 (a strain which does not synthesize COR or its intermediates), CMA was not produced, indicating that pMU2 does not contain the complete CMA biosynthetic gene cluster. However, when two plasmid constructs designated pMU234 (12.5 kb) and pKTX30 (3.0 kb) were cointroduced into 18a/90, CMA was detected in culture supernatants by thin-layer chromatography and HPLC. The biological activity of the CMA produced by P. syringae pv. glycinea 18a/90 derivatives was demonstrated by the production of COR in cosynthesis experiments in which 18a/90 transconjugants were cocultivated with CMA-requiring mutants of P. syringae pv. glycinea PG4180. CMA production was also obtained when pMU234 and pKTX30 were cointroduced into P. syringae pv. syringae B1; however, these two constructs did not enable Escherichia coli K-12 to synthesize CMA. The production of CMA in P. syringae strains which lack the COR biosynthetic gene cluster indicates that CMA production can occur independently of coronafacic acid biosynthesis and raises interesting questions regarding the evolutionary origin of the COR biosynthetic pathway.
dc.formatapplication/pdf
dc.languageen_US
dc.publisherAmerican Society for Microbiology
dc.rightsThis material has been previously published. In the Oklahoma State University Library's institutional repository this version is made available through the open access principles and the terms of agreement/consent between the author(s) and the publisher. The permission policy on the use, reproduction or distribution of the material falls under fair use for educational, scholarship, and research purposes. Contact Digital Resources and Discovery Services at lib-dls@okstate.edu or 405-744-9161 for further information.
dc.titleCloning and expression of genes required for coronamic acid (2-ethyl-1-aminocyclopropane 1-carboxylic acid), an intermediate in the biosynthesis of the phytotoxin coronatine
osu.filenameoksd_m.ullrich_cloningandexpr_1994.pdf
dc.description.peerreviewPeer reviewed
dc.identifier.doi10.1128/aem.60.8.2890-2897.1994
dc.description.departmentPlant Pathology
dc.description.departmentAgronomy
dc.type.genreArticle
dc.type.materialText
dc.subject.keywordsphytotoxin
dc.subject.keywordsplant pathogen
dc.subject.keywordsbiosynthesis
dc.subject.keywordsbiosynthetic intermediate
dc.subject.keywordsmolecular cloning
dc.subject.keywordsgene expression
dc.subject.keywordsheterologous system
dc.subject.keywordsmetabolism
dc.subject.keywordsgene cluster
dc.subject.keywordspseudomonadaceae
dc.subject.keywordspseudomonadales


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