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Arabidopsis plants acclimate to water deficit at low cost through changes of carbon usage: an integrated perspective using growth, metabolite, enzyme, and gene expression analysis.
Hummel I, Pantin F, Sulpice R, Piques M, Rolland G, Dauzat M, Christophe A, Pervent M, Bouteillé M, Stitt M, Gibon Y, Muller B. Hummel I, et al. Among authors: muller b. Plant Physiol. 2010 Sep;154(1):357-72. doi: 10.1104/pp.110.157008. Epub 2010 Jul 14. Plant Physiol. 2010. PMID: 20631317 Free PMC article.
PHENOPSIS, an automated platform for reproducible phenotyping of plant responses to soil water deficit in Arabidopsis thaliana permitted the identification of an accession with low sensitivity to soil water deficit.
Granier C, Aguirrezabal L, Chenu K, Cookson SJ, Dauzat M, Hamard P, Thioux JJ, Rolland G, Bouchier-Combaud S, Lebaudy A, Muller B, Simonneau T, Tardieu F. Granier C, et al. Among authors: muller b. New Phytol. 2006;169(3):623-35. doi: 10.1111/j.1469-8137.2005.01609.x. New Phytol. 2006. PMID: 16411964 Free article.
Are ABA, ethylene or their interaction involved in the response of leaf growth to soil water deficit? An analysis using naturally occurring variation or genetic transformation of ABA production in maize.
Voisin AS, Reidy B, Parent B, Rolland G, Redondo E, Gerentes D, Tardieu F, Muller B. Voisin AS, et al. Among authors: muller b. Plant Cell Environ. 2006 Sep;29(9):1829-40. doi: 10.1111/j.1365-3040.2006.01560.x. Plant Cell Environ. 2006. PMID: 16913872 Free article.
2,680 results