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Evidence for a rhizobia-induced drought stress response strategy in Medicago truncatula.
Staudinger, Christiana; Mehmeti-Tershani, Vlora; Gil-Quintana, Erena; Gonzalez, Esther M; Hofhansl, Florian; Bachmann, Gert; Wienkoop, Stefanie.
Afiliação
  • Staudinger C; Department of Ecogenomics and Systems Biology, University of Vienna, Althanstraße 14, 1090 Vienna, Austria. Electronic address: christiana.staudinger@univie.ac.at.
  • Mehmeti-Tershani V; Department of Ecogenomics and Systems Biology, University of Vienna, Althanstraße 14, 1090 Vienna, Austria. Electronic address: vlora.mehmeti@univie.ac.at.
  • Gil-Quintana E; Department Environmental Science, Public Univeristy of Navarra Campus Arrosadía, 31006 Pamplona, Spain. Electronic address: erena.gil@unavarra.es.
  • Gonzalez EM; Department Environmental Science, Public Univeristy of Navarra Campus Arrosadía, 31006 Pamplona, Spain. Electronic address: esther.gonzalez@unavarra.es.
  • Hofhansl F; Department of Microbiology and Ecosystem Science, University of Vienna, Althanstraße 14, 1090 Vienna, Austria. Electronic address: florian.hofhansl@univie.ac.at.
  • Bachmann G; Department of Ecogenomics and Systems Biology, University of Vienna, Althanstraße 14, 1090 Vienna, Austria. Electronic address: gert.bachmann@univie.ac.at.
  • Wienkoop S; Department of Ecogenomics and Systems Biology, University of Vienna, Althanstraße 14, 1090 Vienna, Austria. Electronic address: stefanie.wienkoop@univie.ac.at.
J Proteomics ; 136: 202-13, 2016 Mar 16.
Article em En | MEDLINE | ID: mdl-26812498
ABSTRACT
Drought stress hampers plant energy and biomass production; however it is still unknown how internal CN balance and rhizobial symbiosis impact on plant response to water limitation. Here, the effect of differential optimal nitrogen nutrition and root nodule symbiosis on drought stress and rehydration responses of Medicago truncatula was assessed. Two groups of plants were nodulated with Sinorhizobium medicae or Sinorhizobium meliloti--differing in the performance of N fixation; the third group grew in a rhizobia-free medium and received mineral nitrogen fertilizer. In addition to growth analyses, physiological and molecular responses of the two systems were studied using ionomic, metabolomic and proteomic techniques. We found a significant delay in drought-induced leaf senescence in nodulated relative to non-nodulated plants, independent of rhizobial strain and uncoupled from initial leaf N content. The major mechanisms involved are increased concentrations of potassium and shifts in the carbon partitioning between starch and sugars under well-watered conditions, as well as the enhanced allocation of reserves to osmolytes during drought. Consequently, nodulated plants recovered more effectively from drought, relative to non-nodulated M. truncatula. Proteomic data suggest that phytohormone interactions and enhanced translational regulation play a role in increased leaf maintenance in nodulated plants during drought.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Proteínas de Plantas / Rhizobium / Estresse Fisiológico / Medicago truncatula Idioma: En Ano de publicação: 2016 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Proteínas de Plantas / Rhizobium / Estresse Fisiológico / Medicago truncatula Idioma: En Ano de publicação: 2016 Tipo de documento: Article