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Nitrate-dependent control of root architecture and N nutrition are altered by a plant growth-promoting Phyllobacterium sp
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Nitrate-dependent control of root architecture and N nutrition are altered by a plant growth-promoting Phyllobacterium sp

Sophie Mantelin, Guilhem Desbrosses, Marièle Larcher, Timothy J. Tranbarger, Jean-Claude Cleyet-Marel et Bruno Touraine
Planta, Vol.223(3), p.591-603
02/2006
PMID: 16160849

Résumé

Plant growth-promoting rhizobia—Root development Nitrate availability N uptake N transporter Arabidopsis légumineuse arabidopsis rhizosphère expression génique nutrition azotée symbiose architecture racinaire nutritional availability nutrient availability PGPR plant growth promoting rhizobacteria root development root architecture NNI nitrogen nutrition index nitrogen Phyllobacterium
Both root architecture and plant N nutrition are altered by inoculation with the plant growth-promoting rhizobacteria (PGPR) Phyllobacterium strain STM196. It is known that NO3- and N metabolites can act as regulatory signals on root development and N transporters. In this study, we investigate the possible interrelated effects on root development and N transport. We show that the inhibition of Arabidopsis lateral root growth by high external NO3- is overridden by Phyllobacterium inoculation. However, the leaf NO3- pool remained unchanged in inoculated plants. By contrast, the Gln root pool was reduced in inoculated plants. Unexpectedly, NO3- influx and the expression levels of AtNRT1.1 and AtNRT2.1 genes coding for root NO(3)(-)transporters were also decreased after 8 days of Phyllobacterium inoculation. Although the mechanisms by which PGPR exert their positive effects remain unknown, our data show that they can optimize plant development independently from N supply, thus alleviating the regulatory mechanisms that operate in axenic conditions. In addition, we found that Phyllobacterium sp. elicited a very strong induction of AtNRT2.5 and AtNRT2.6, both genes preferentially expressed in the shoots whose functions are unknown

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