An in vivo N-15 NMR Study of agropine synthesis in transformed root cultures of Nicotiana tabacum

The biosynthesis of the opine agropine in transformed Nicotiana tabacum L. root cultures was studied using in vivo 15N nuclear magnetic resonance (NMR) spectroscopy. Roots were incubated with [15N]ammonium and/or [15N]nitrate, and the incorporation of the label into agropine, conjugated polyamines,...

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Main Authors: Ford, Y, Ratcliffe, R, Robins, R
Format: Journal article
Language:English
Published: 2000
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author Ford, Y
Ratcliffe, R
Robins, R
author_facet Ford, Y
Ratcliffe, R
Robins, R
author_sort Ford, Y
collection OXFORD
description The biosynthesis of the opine agropine in transformed Nicotiana tabacum L. root cultures was studied using in vivo 15N nuclear magnetic resonance (NMR) spectroscopy. Roots were incubated with [15N]ammonium and/or [15N]nitrate, and the incorporation of the label into agropine, conjugated polyamines, γ-aminobutyric acid (GABA), glutamate (Glu), glutamine (Gln) and nicotine was monitored by NMR. The largest labelled pool was agropine in cells grown on a 15N-enriched medium and its synthesis was maintained, to the detriment of the Gln pool, under conditions of nitrogen (N) starvation. These observations indicate that the synthesis of agropine is not tightly regulated and that it represents a significant sink for carbon (C) and N in the plant. The addition of α-naphthaleneacetic acid (NAA) and kinetin to the growth medium caused de-differentiation of the root cultures and perturbation of secondary N metabolism. The amount of agropine relative to Gln increased but the total accumulation of agropine decreased, in part because of the increase in the synthesis of conjugated polyamines. These results show that agropine biosynthesis perturbs both primary and secondary N metabolism, and that the perturbation differs according to the culture conditions and the imposed stress.
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spelling oxford-uuid:37de801a-1ff3-4445-acf3-d2466e22900b2022-03-26T13:46:32ZAn in vivo N-15 NMR Study of agropine synthesis in transformed root cultures of Nicotiana tabacumJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:37de801a-1ff3-4445-acf3-d2466e22900bEnglishSymplectic Elements at Oxford2000Ford, YRatcliffe, RRobins, RThe biosynthesis of the opine agropine in transformed Nicotiana tabacum L. root cultures was studied using in vivo 15N nuclear magnetic resonance (NMR) spectroscopy. Roots were incubated with [15N]ammonium and/or [15N]nitrate, and the incorporation of the label into agropine, conjugated polyamines, γ-aminobutyric acid (GABA), glutamate (Glu), glutamine (Gln) and nicotine was monitored by NMR. The largest labelled pool was agropine in cells grown on a 15N-enriched medium and its synthesis was maintained, to the detriment of the Gln pool, under conditions of nitrogen (N) starvation. These observations indicate that the synthesis of agropine is not tightly regulated and that it represents a significant sink for carbon (C) and N in the plant. The addition of α-naphthaleneacetic acid (NAA) and kinetin to the growth medium caused de-differentiation of the root cultures and perturbation of secondary N metabolism. The amount of agropine relative to Gln increased but the total accumulation of agropine decreased, in part because of the increase in the synthesis of conjugated polyamines. These results show that agropine biosynthesis perturbs both primary and secondary N metabolism, and that the perturbation differs according to the culture conditions and the imposed stress.
spellingShingle Ford, Y
Ratcliffe, R
Robins, R
An in vivo N-15 NMR Study of agropine synthesis in transformed root cultures of Nicotiana tabacum
title An in vivo N-15 NMR Study of agropine synthesis in transformed root cultures of Nicotiana tabacum
title_full An in vivo N-15 NMR Study of agropine synthesis in transformed root cultures of Nicotiana tabacum
title_fullStr An in vivo N-15 NMR Study of agropine synthesis in transformed root cultures of Nicotiana tabacum
title_full_unstemmed An in vivo N-15 NMR Study of agropine synthesis in transformed root cultures of Nicotiana tabacum
title_short An in vivo N-15 NMR Study of agropine synthesis in transformed root cultures of Nicotiana tabacum
title_sort in vivo n 15 nmr study of agropine synthesis in transformed root cultures of nicotiana tabacum
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