Evidence for transcriptional and post-translational regulation of sucrose synthase in pea nodules by the cellular redox state

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  • Universidad Pública de Navarra (UPNA)
  • Université Côte d'Azur
  • Universität Bielefeld
  • University of Florida
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Details

OriginalspracheEnglisch
Seiten (von - bis)622-630
Seitenumfang9
FachzeitschriftMolecular Plant-Microbe Interactions
Jahrgang21
Ausgabenummer5
PublikationsstatusVeröffentlicht - 1 Mai 2008
Extern publiziertJa

Abstract

Nitrogen fixation (NF) in legume nodules is very sensitive to environmental constraints. Nodule sucrose synthase (SS; EC 2.4.1.13) has been suggested to play a crucial role in those circumstances because its downregulation leads to an impaired glycolytic carbon flux and, therefore, a depletion of carbon substrates for bacteroids. In the present study, the likelihood of SS being regulated by oxidative signaling has been addressed by the in vivo supply of paraquat (PQ) to nodulated pea plants and the in vitro effects of oxidizing and reducing agents on nodule SS. PQ produced cellular redox imbalance leading to an inhibition of NF. This was preceded by the downregulation of SS gene expression, protein content, and activity. In vitro, oxidizing agents were able to inhibit SS activity and this inhibition was completely reversed by the addition of dithiothreitol. The overall results are consistent with a regulation model of nodule SS exerted by the cellular redox state at both the transcriptional and post-translational levels. The importance of such mechanisms for the regulation of NF in response to environmental stresses are discussed.

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Evidence for transcriptional and post-translational regulation of sucrose synthase in pea nodules by the cellular redox state. / Marino, Daniel; Hohnjec, Natalija; Küster, Helge et al.
in: Molecular Plant-Microbe Interactions, Jahrgang 21, Nr. 5, 01.05.2008, S. 622-630.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

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abstract = "Nitrogen fixation (NF) in legume nodules is very sensitive to environmental constraints. Nodule sucrose synthase (SS; EC 2.4.1.13) has been suggested to play a crucial role in those circumstances because its downregulation leads to an impaired glycolytic carbon flux and, therefore, a depletion of carbon substrates for bacteroids. In the present study, the likelihood of SS being regulated by oxidative signaling has been addressed by the in vivo supply of paraquat (PQ) to nodulated pea plants and the in vitro effects of oxidizing and reducing agents on nodule SS. PQ produced cellular redox imbalance leading to an inhibition of NF. This was preceded by the downregulation of SS gene expression, protein content, and activity. In vitro, oxidizing agents were able to inhibit SS activity and this inhibition was completely reversed by the addition of dithiothreitol. The overall results are consistent with a regulation model of nodule SS exerted by the cellular redox state at both the transcriptional and post-translational levels. The importance of such mechanisms for the regulation of NF in response to environmental stresses are discussed.",
keywords = "Carbon metabolism, Pisum sativum L.",
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Download

TY - JOUR

T1 - Evidence for transcriptional and post-translational regulation of sucrose synthase in pea nodules by the cellular redox state

AU - Marino, Daniel

AU - Hohnjec, Natalija

AU - Küster, Helge

AU - Moran, Jose F.

AU - González, Esther M.

AU - Arrese-Igor, Cesar

PY - 2008/5/1

Y1 - 2008/5/1

N2 - Nitrogen fixation (NF) in legume nodules is very sensitive to environmental constraints. Nodule sucrose synthase (SS; EC 2.4.1.13) has been suggested to play a crucial role in those circumstances because its downregulation leads to an impaired glycolytic carbon flux and, therefore, a depletion of carbon substrates for bacteroids. In the present study, the likelihood of SS being regulated by oxidative signaling has been addressed by the in vivo supply of paraquat (PQ) to nodulated pea plants and the in vitro effects of oxidizing and reducing agents on nodule SS. PQ produced cellular redox imbalance leading to an inhibition of NF. This was preceded by the downregulation of SS gene expression, protein content, and activity. In vitro, oxidizing agents were able to inhibit SS activity and this inhibition was completely reversed by the addition of dithiothreitol. The overall results are consistent with a regulation model of nodule SS exerted by the cellular redox state at both the transcriptional and post-translational levels. The importance of such mechanisms for the regulation of NF in response to environmental stresses are discussed.

AB - Nitrogen fixation (NF) in legume nodules is very sensitive to environmental constraints. Nodule sucrose synthase (SS; EC 2.4.1.13) has been suggested to play a crucial role in those circumstances because its downregulation leads to an impaired glycolytic carbon flux and, therefore, a depletion of carbon substrates for bacteroids. In the present study, the likelihood of SS being regulated by oxidative signaling has been addressed by the in vivo supply of paraquat (PQ) to nodulated pea plants and the in vitro effects of oxidizing and reducing agents on nodule SS. PQ produced cellular redox imbalance leading to an inhibition of NF. This was preceded by the downregulation of SS gene expression, protein content, and activity. In vitro, oxidizing agents were able to inhibit SS activity and this inhibition was completely reversed by the addition of dithiothreitol. The overall results are consistent with a regulation model of nodule SS exerted by the cellular redox state at both the transcriptional and post-translational levels. The importance of such mechanisms for the regulation of NF in response to environmental stresses are discussed.

KW - Carbon metabolism

KW - Pisum sativum L.

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U2 - 10.1094/MPMI-21-5-0622

DO - 10.1094/MPMI-21-5-0622

M3 - Article

C2 - 18393622

AN - SCOPUS:43549117506

VL - 21

SP - 622

EP - 630

JO - Molecular Plant-Microbe Interactions

JF - Molecular Plant-Microbe Interactions

SN - 0894-0282

IS - 5

ER -

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