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J Exp Bot ; 75(18): 5989-6005, 2024 Sep 27.
Article de Anglais | MEDLINE | ID: mdl-38970454

RÉSUMÉ

Plant phenotypic plasticity plays an important role in nitrogen (N) acquisition and use under nitrogen-limited conditions. However, this role has never been quantified as a function of N availability, leaving it unclear whether plastic responses should be considered as potential targets for selection. A combined modelling and experimentation approach was adopted to quantify the role of plasticity in N uptake and plant yield. Based on a greenhouse experiment we considered plasticity in two maize (Zea mays) traits: root-to-leaf biomass allocation ratio and emergence rate of axial roots. In a simulation experiment we individually enabled or disabled both plastic responses for maize stands grown across six N levels. Both plastic responses contributed to maintaining a higher N uptake, and plant productivity as N availability declined compared with stands in which plastic responses were disabled. We conclude that plastic responses quantified in this study may be a potential target trait in breeding programs for greater N uptake across N levels while it may only be important for the internal use of N under N-limited conditions in maize. Given the complexity of breeding for plastic responses, an a priori model analysis is useful to identify which plastic traits to target for enhanced plant performance.


Sujet(s)
Modèles biologiques , Azote , Racines de plante , Zea mays , Zea mays/croissance et développement , Zea mays/métabolisme , Zea mays/physiologie , Azote/métabolisme , Racines de plante/croissance et développement , Racines de plante/métabolisme , Racines de plante/physiologie , Biomasse , Feuilles de plante/métabolisme , Feuilles de plante/physiologie , Feuilles de plante/croissance et développement
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