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Phylogenetic, structural, and functional characterization of AMT3;1, an ammonium transporter induced by mycorrhization among model grasses.
Koegel, Sally; Mieulet, Delphine; Baday, Sefer; Chatagnier, Odile; Lehmann, Moritz F; Wiemken, Andres; Boller, Thomas; Wipf, Daniel; Bernèche, Simon; Guiderdoni, Emmanuel; Courty, Pierre-Emmanuel.
Afiliação
  • Koegel S; Department of Environmental Sciences, Botany, Zurich-Basel Plant Science Center, University of Basel, Hebelstrasse 1, 4056, Basel, Switzerland.
  • Mieulet D; CIRAD, UMR AGAP, 34398, Montpellier Cedex 5, France.
  • Baday S; SIB Swiss Institute of Bioinformatics and Biozentrum, University of Basel, Klingelbergstrasse 50/70, 4056, Basel, Switzerland.
  • Chatagnier O; Applied Informatics Department, Informatics Institute, Istanbul Technical University, 34469, Istanbul, Turkey.
  • Lehmann MF; Agroécologie, AgroSupDijon, CNRS, INRA, Université de Bourgogne Franche-Comté, 21000, Dijon, France.
  • Wiemken A; Department of Environmental Sciences, Aquatic and Stable Isotope Biogeochemistry, University of Basel, Basel, Switzerland.
  • Boller T; Department of Environmental Sciences, Botany, Zurich-Basel Plant Science Center, University of Basel, Hebelstrasse 1, 4056, Basel, Switzerland.
  • Wipf D; Department of Environmental Sciences, Botany, Zurich-Basel Plant Science Center, University of Basel, Hebelstrasse 1, 4056, Basel, Switzerland.
  • Bernèche S; Agroécologie, AgroSupDijon, CNRS, INRA, Université de Bourgogne Franche-Comté, 21000, Dijon, France.
  • Guiderdoni E; SIB Swiss Institute of Bioinformatics and Biozentrum, University of Basel, Klingelbergstrasse 50/70, 4056, Basel, Switzerland.
  • Courty PE; CIRAD, UMR AGAP, 34398, Montpellier Cedex 5, France.
Mycorrhiza ; 27(7): 695-708, 2017 Oct.
Article em En | MEDLINE | ID: mdl-28667402
ABSTRACT
In the arbuscular mycorrhizal (AM) symbiosis, plants satisfy part of their nitrogen (N) requirement through the AM pathway. In sorghum, the ammonium transporters (AMT) AMT3;1, and to a lesser extent AMT4, are induced in cells containing developing arbuscules. Here, we have characterized orthologs of AMT3;1 and AMT4 in four other grasses in addition to sorghum. AMT3;1 and AMT4 orthologous genes are induced in AM roots, suggesting that in the common ancestor of these five plant species, both AMT3;1 and AMT4 were already present and upregulated upon AM colonization. An artificial microRNA approach was successfully used to downregulate either AMT3;1 or AMT4 in rice. Mycorrhizal root colonization and hyphal length density of knockdown plants were not affected at that time, indicating that the manipulation did not modify the establishment of the AM symbiosis and the interaction between both partners. However, expression of the fungal phosphate transporter FmPT was significantly reduced in knockdown plants, indicating a reduction of the nutrient fluxes from the AM fungus to the plant. The AMT3;1 knockdown plants (but not the AMT4 knockdown plants) were significantly less stimulated in growth by AM fungal colonization, and uptake of both 15N and 33P from the AM fungal network was reduced. This confirms that N and phosphorus nutrition through the mycorrhizal pathway are closely linked. But most importantly, it indicates that AMT3;1 is the prime plant transporter involved in the mycorrhizal ammonium transfer and that its function during uptake of N cannot be performed by AMT4.
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Texto completo: 1 Bases de dados: MEDLINE Assunto principal: Proteínas de Plantas / Proteínas de Transporte de Cátions / Micorrizas / Poaceae Idioma: En Revista: Mycorrhiza Assunto da revista: BIOLOGIA Ano de publicação: 2017 Tipo de documento: Article País de afiliação: Suíça

Texto completo: 1 Bases de dados: MEDLINE Assunto principal: Proteínas de Plantas / Proteínas de Transporte de Cátions / Micorrizas / Poaceae Idioma: En Revista: Mycorrhiza Assunto da revista: BIOLOGIA Ano de publicação: 2017 Tipo de documento: Article País de afiliação: Suíça