Title : Towards a better understanding of the genetic and physiological basis for nitrogen use efficiency in maize.

Pub. Date : 2001 Mar

PMID : 11244107






3 Functional Relationships(s)
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1 Because at this locus coincidences of QTLs for grain yield, GS, NR activity, and nitrate content were also observed, we hypothesize that leaf nitrate accumulation and the reactions catalyzed by NR and GS are coregulated and represent key elements controlling nitrogen use efficiency in maize. Nitrates nitrate reductase [NADH] 1 Zea mays
2 Because at this locus coincidences of QTLs for grain yield, GS, NR activity, and nitrate content were also observed, we hypothesize that leaf nitrate accumulation and the reactions catalyzed by NR and GS are coregulated and represent key elements controlling nitrogen use efficiency in maize. Nitrates nitrate reductase [NADH] 1 Zea mays
3 Because at this locus coincidences of QTLs for grain yield, GS, NR activity, and nitrate content were also observed, we hypothesize that leaf nitrate accumulation and the reactions catalyzed by NR and GS are coregulated and represent key elements controlling nitrogen use efficiency in maize. Nitrates nitrate reductase [NADH] 1 Zea mays