Effects of Clomazone on IPP Isomerase and Prenyl Transferase Activities in Cell Suspension Cultures and Cotyledons of Solanaceous Species

Author:

Scott Jon E.,Weston Leslie A.,Chappell Joseph,Hanley Kathleen

Abstract

Laboratory assays were conducted to determine the sensitivity of tomato and tobacco cell suspension cultures and tomato and pepper cotyledons to clomazone. A comparison of fresh weight and carotenoid content indicated up to a three-fold difference between the clomazone-tolerant tobacco and clomazone-susceptible tomato cell suspension cultures. In contrast, an approximate 60-fold difference between the tolerant pepper and susceptible tomato cotyledons was observed when total chlorophyll and carotenoid contents were measured. The effect of clomazone and its possible metabolites on in vivo and in vitro extractable IPP isomerase (EC 5.3.3.2) and prenyltransferase (EC 2.5.1.29) activity was investigated. There was no clear inhibitory effect of clomazone or possible clomazone metabolites upon enzyme activity in tomato or tobacco cell suspension cultures or on light or dark grown tomato or pepper cotyledons. No specific enzymatic target site of clomazone was identified in correlation with the reduction in total chlorophyll or carotenoid content.

Publisher

Cambridge University Press (CUP)

Subject

Plant Science,Agronomy and Crop Science

Reference36 articles.

1. FMC 57020 Effects on Chloroplast Development in Pitted Morningglory (Ipomoea lacunosa) Cotyledons

2. Abbreviations: IPP, isopentenyl diphosphate; DMAPP, dimethylallyl diphosphate GPP, geranyl diphosphate; FPP, farnesyl diphosphate; GGPP, geranylgeranyl diphosphate; PPFD, photosynthetic photon flux density; PVPP, polyvinylpolypyrrolidone; BME, β-mercaptoethanol; HAT, hours after treatment; I50, clomazone concentration at which 50% inhibition was obtained; KF, an inhibition of phosphatase activity.

3. Differential tolerance of velvetleaf, jimsonweed, and morningglory to clomazone;Weston;Abstr. Weed Sci. Soc. Am.,1990

4. Herbicide Clomazone Does Not Inhibit In Vitro Geranylgeranyl Synthesis from Mevalonate

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