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Plant Cell ; 27(9): 2384-400, 2015 Sep.
Article de Anglais | MEDLINE | ID: mdl-26296963

RÉSUMÉ

We combined transcriptomic and biochemical approaches to study rhizobial and plant sulfur (S) metabolism in nitrogen (N) fixing nodules (Fix(+)) of Lotus japonicus, as well as the link of S-metabolism to symbiotic nitrogen fixation and the effect of nodules on whole-plant S-partitioning and metabolism. Our data reveal that N-fixing nodules are thiol-rich organs. Their high adenosine 5'-phosphosulfate reductase activity and strong (35)S-flux into cysteine and its metabolites, in combination with the transcriptional upregulation of several rhizobial and plant genes involved in S-assimilation, highlight the function of nodules as an important site of S-assimilation. The higher thiol content observed in nonsymbiotic organs of N-fixing plants in comparison to uninoculated plants could not be attributed to local biosynthesis, indicating that nodules are an important source of reduced S for the plant, which triggers whole-plant reprogramming of S-metabolism. Enhanced thiol biosynthesis in nodules and their impact on the whole-plant S-economy are dampened in plants nodulated by Fix(-) mutant rhizobia, which in most respects metabolically resemble uninoculated plants, indicating a strong interdependency between N-fixation and S-assimilation.


Sujet(s)
Loteae/métabolisme , Nodules racinaires de plante/métabolisme , Nodules racinaires de plante/microbiologie , Soufre/métabolisme , Protéines bactériennes/génétique , Protéines bactériennes/métabolisme , Régulation de l'expression des gènes végétaux , Loteae/génétique , Loteae/physiologie , Mesorhizobium/génétique , Mesorhizobium/physiologie , Fixation de l'azote , Oxidoreductases/génétique , Oxidoreductases/métabolisme , Oxidoreductases acting on sulfur group donors/métabolisme , Protéines végétales/métabolisme , Thiols/métabolisme , Radio-isotopes du soufre/métabolisme , Radio-isotopes du soufre/pharmacocinétique , Symbiose , Distribution tissulaire , Facteurs de transcription/génétique , Facteurs de transcription/métabolisme
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