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M. Rodrigues ; C. Pacheco ; M. Chaves | 1995Lupinus albus L. from different climatic origins responded to a 15 d period of water shortage during flowering by losing 50% of the total leaf canopy and gaining 55% in stem dry weight. Water deficits also led to a significant increase in the fi[...]article/chapitre/communication
P. Jackson ; S. Paulo ; Brownleader M. ; P. Freire ; C. Ricardo | 1999thèse/mémoire
thèse/mémoire
thèse/mémoire
Langue(s) du résumé : FREarticle/chapitre/communication
J. Taylor ; B. Thompson ; J. Pate ; C. Atkins ; R. Pharis | 1990article/chapitre/communication
N. Sunderland ; R. Brown | 1976article/chapitre/communication
N. Sunderland ; R. Brown | 1956article/chapitre/communication
O. Wolf ; W. Jeschke ; W. Hartung | 1990article/chapitre/communication
W. Jeschke ; P. Baumel ; N. Rath ; F. Czygan ; P. Proksch | 1994A recently developed empirically based modelling technique was used to quantify uptake, flow and utilization of C and N in Lupinus albus L., uninfected and parasitized by Cuscuta reflexa Roxb. plants over a 12 d period during flowering and early[...]article/chapitre/communication
W. Jeschke ; N. Rath ; P. Baumel ; F. Czygan ; P. Proksch | 1994Nodulated Lupinus albus L. was grown on quartz sand in the greenhouse and supplied with a N-free culture solution. Half the plants were infected with Cuscuta reflexa Roxb. at 33 DAS. An empirically based modelling technique was developed to quan[...]thèse/mémoire
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article/chapitre/communication
ouvrage
J. Neves Martins, - Editeur scientifique ; VII. International Lupin Conference (1993/04/18-23; Evora; PRT) ; M. Beirao da Costa, - Editeur scientifique | Lisbonne : ISA Press | 1994