Isotopic labelling reveals the efficient adaptation of wheat root TCA cycle flux modes to match carbon demand under ammonium nutrition

Proper carbon (C) supply is essential for nitrogen (N) assimilation especially when plants are grown under ammonium (NH4+) nutrition. However, how C and N metabolic fluxes adapt to achieve so remains uncertain. In this work, roots of wheat (Triticum aestivum L.) plants grown under exclusive NH4+ or...

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Detalhes bibliográficos
Autores: Vega Mas, Izargi Aida, Cukier, Caroline, Coleto Reyes, Inmaculada, González Murua, María del Carmen Begoña, Limami, Anis M., González Moro, María Begoña, Marino Bilbao, Daniel
Formato: artículo
Fecha de publicación:2019
País:España
Recursos:Universidad del País Vasco
Repositorio:Addi. Archivo Digital para la Docencia y la Investigación
OAI Identifier:oai:addi.ehu.eus:10810/41933
Acesso em linha:http://hdl.handle.net/10810/41933
Access Level:acceso abierto
Palavra-chave:NAD(H)-dependent glutamate-dehydrogenase
nitrogen use efficiency
triticum-aestivum L.
phosphoenolpyruvate carboxylase
asparagine synthetase
arabidopsis-thaliana
illuminated leaves
tomato plants
amino-acid
gaba shunt
Descrição
Resumo:Proper carbon (C) supply is essential for nitrogen (N) assimilation especially when plants are grown under ammonium (NH4+) nutrition. However, how C and N metabolic fluxes adapt to achieve so remains uncertain. In this work, roots of wheat (Triticum aestivum L.) plants grown under exclusive NH4+ or nitrate (NO3-) supply were incubated with isotope-labelled substrates ((NH4+)-N-15, (NO3-)-N-15, or [C-13]Pyruvate) to follow the incorporation of N-15 or C-13 into amino acids and organic acids. Roots of plants adapted to ammonium nutrition presented higher capacity to incorporate both (NH4+)-N-15 and (NO3-)-N-15 into amino acids, thanks to the previous induction of the NH4+ assimilative machinery. The N-15 label was firstly incorporated into [N-15]Gln via glutamine synthetase; ultimately leading to [N-15]Asn accumulation as an optimal NH4+ storage. The provision of [C-13]Pyruvate led to [C-13]Citrate and [C-13] Malate accumulation and to rapid [C-13]2-OG consumption for amino acid synthesis and highlighted the importance of the anaplerotic routes associated to tricarboxylic acid (TCA) cycle. Taken together, our results indicate that root adaptation to ammonium nutrition allowed efficient assimilation of N thanks to the promotion of TCA cycle open flux modes in order to sustain C skeleton availability for effective NH4+ detoxification into amino acids.