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Resultado 1-10 de 20.
Ano de publicaçãoTítuloAutor(es)
2015Sorghum root architecture subjeted to biogas-digestate application.LEAL, D. P. B.; BLOSSFELD, S.; SOUSA, S. M. de; NAGEL, K. A.; JABLONOWSKI, N. D.
2016Functional characterization of Phosphorus Starvation Tolerance1 genes in sorghum (SbPSTOL1).MACIEL, L. S.; BARROS, B. A.; DAMASCENO, C. M. B.; SOUSA, S. M. de; GUIMARAES, C. T.; MAGALHAES, J. V.
2015Tobacco transformation with rice Phosphorus-Starvation Tolerance 1 gene and its sorghum and maize homologs.LOPES, S. da S.; LANA, U. G. de P.; ALVES, M. de C.; PALHARES, P. L. S.; MAGALHAES, J. V.; GUIMARAES, C. T.; CARNEIRO, A. A.; SOUSA, S. M. de
2015Analysis of phosphorus-starvation tolerance 1 cis-acting regulatory DNA elements from rice, maize and sorghum.FRANÇA, B. N.; SOUSA, S. M. de
2017Phylogenetic analysis and functional characterization of SbPSTOL1 proteins in sorghum.MACIEL, L. S.; BARROS, B. A.; DAMASCENO, C. M. B.; SOUSA, S. M. de; MAGALHAES, J. V.
2019Characterization of root morphology and evaluation of sorgoleone exudation in sorghum genotypes contrasting for phosphorus acquisition efficiency.OLIVEIRA, I. F. de; SIMEONE, M. L. F.; SCHAFFERT, R. E.; CANUTO, K. M.; RIBEIRO, P. R. V.; SOUSA, S. M. de
2019Overexpression of maize and sorghum Phosphorus-Starvation Tolerance 1 genes enhance vegetative growth and root surface area in transgenic tobaccoLOPES, S. S.; COSTA, J. F. V.; PALHARES, P. L.; LANA, U. G. de P.; ALVES, M. C.; MAGALHAES, J. V. de; GUIMARÃES, C. T.; CARNEIRO, A. A.; SOUSA, S. M. de
2019Phosphate fertilization impacts the structure of bacterial community of maize and sorghum rhizosphereCAMPOLINO, M. L.; LANA, U. G. de P.; COELHO, A. M.; GOMES, E. A.; SOUSA, S. M. de
2019Genetic diversity of the community of rhizosphere microorganisms from maize and sorghum genotypes grown under field conditions under different sources and levels of phosphorus.CAMPOLINO, M. L.; LANA, U. G. de P.; COELHO, A. M.; GOMES, E. A.; SOUSA, S. M. de
2019The genetic architecture of phosphorus efficiency in sorghum involves pleiotropic QTL for root morphology and grain yield under low phosphorus availability in the soil.BERNARDINO, K. C.; PASTINA, M. M.; MENEZES, C. B. de; SOUSA, S. M. de; MACIEL, L. S.; CARVALHO JÚNIOR, G.; GUIMARÃES, C. T.; BARROS, B. de A.; SILVA, L. da C. e; CARNEIRO, P. C. S.; SCHAFFERT, R. E.; KOCHIAN, L. V.; MAGALHAES, J. V. de