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Alfredo Cruz-Ramirez (CV)

Professor Cinvestav 2C

Alfredo Cruz-Ramirez (CV)

Position

Professor Cinvestav 2C

Group

Molecular and Developmental Complexity

SNI Level

Nivel-I Sistema Nacional de Investigadores

E-mail

lcruz@langebio.cinvestav.mx

Phone

52 462 166 3005

Education

Bachelor: Ingeniero Agroindustrial. Instituto de Ciencias Agropecuarias de la Universidad Autónoma del Estado de Hidalgo Diciembre de 1995./ Ms.C. Maestría en Ciencias en Bioquímica y Biología Molecular. Escuela Nacional de Ciencias Biológicas del Instituto Politécnico Nacional, Noviembre 2000./ PhD Doctor en Ciencias en Bioquímica y Biología Molecular. Escuela Nacional de Ciencias Biológicas del Instituto Politécnico Nacional, Noviembre 2004./ Postdoctoral Research Fellow: Laboratorio Dr. Luis Herrera-Estrella. CINVESTAV-IPN Irapuato. 2005-2007. “Caracterización molecular de los cambios en la arquitectura de la raíz en respuesta a la disponibilidad de fósforo en Arabidopsis thaliana”./ Postdoctoral Research Fellow: Ben Scheres’ Lab. Utrecht University, The Netherlands. Laboratory of Molecular Genetics. 2007- 2012. “Study of the role of Retinoblastoma (RBR) in Assymetric Cell Division and Stem Cell mainteinance”.

Awards

Mención Honorífica para Tesis de Maestría E.N.C.B.-I.P.N./ Mención Honorífica para Tesis de Doctorado E.N.C.B.-I.P.N./ European Molecular Biology Organization, Longterm Postdoctoral Fellow.

Publications
  1. Arabidopsis BIRD Zinc Finger Proteins Jointly Stabilize Tissue Boundaries by Confining the Cell Fate Regulator SHORT-ROOT and Contributing to Fate Specification. Yuchen Long, Wouter Smet, Alfredo Cruz-Ramírez, Bas Castelijns, Wim de Jonge, Ari Pekka Mähönen, Benjamin P. Bouchetd, Gabino Sanchez Perez, Anna Akhmanova, Ben Scheres, and Ikram Blilou. 2015. The Plant Cell.
  2. Irreversible fate commitment in the Arabidopsis stomatal lineage requires a FAMA and RETINOBLASTOMA-RELATED module. Juliana L. Matos, Charles Hachez, On Su Lau, Alfredo Cruz-Ramírez, Ben Scheres, Dominique C. Bergman. 2014. eLife 03271.
  3. Plants as Bioreactors for Human Health Nutrients. Chapter 15 in Biosystems Engineering: Biofactories for Food Production in the Century XXI. Cruz-Ramírez Luis Alfredo, García-Ramírez Jesús Agustín, Rico-Resendiz Felix Edgardo, Membrilla-Ochoa Alfonso, Herrada-Alonso Janette, Escobar-Feregrino Tania, Torres-Pacheco Irineo, Guevara-González G. Ramón,Campos-Guillén Juan and Cruz-Hernández Andrés. 2013. Springer International Publishing, 423-54.
  4. A SCARECROW-RETINOBLASTOMA Protein Network Controls Protective Quiescence in the Arabidopsis Root Stem Cell Organizer. Alfredo Cruz-Ramírez, Sara Díaz-Triviño, Guy Wachsman, Yujuan Du, Mario Arteága-Vázquez, Hongtao Zhang, Rene Benjamins, Ikram Blilou, Anne B. Neef, Vicki Chandler and Ben Scheres. 2013. Plos Biology, 11: e1001724.
  5. Phospholipase DΖ2 plays an important role in extraplastidic galactolipid biosynthesis and Pi recycling in Arabidopsis roots. Alfredo Cruz-Ramírez, Araceli Oropeza-Aburto, Francisco Razo-Hernández, Enrique Ramírez-Chavez, Luis Herrera Estrella. 2006. Proc. Nac. Acad. Sci. (PNAS), 103: 6765–70.
  6. An attenuated bi-stable circuit involving SCARECROW-RETINOBLASTOMA interaction mediates asymmetric stem cell divisions in Arabidopsis. Alfredo Cruz-Ramírez, Sara Díaz-Triviño, Ikram Blilou, Verónica A. Grieneisen, Athanasius F. M. Marée, Rosangela Sozzani, Christos Zamioudis, Pál Miskolczi, Jeroen Nieuwland, René Benjamins, Pankaj Dhonukshe, Juan Caballero-Pérez, Beatrix Horvath, Ari Pekka Mähonën,Jian Xu, James A.H. Murray, Philip N. Benfey, Laszlo Bako and Ben Scheres. 2012. Cell, 150: 1002-15.
  7. Translational regulation of Arabidopsis XIPOTL1 is modulated by phosphocholine levels via the phylogenetically conserved upstream open reading frame 30. Alatorre-Cobos, Alfredo Cruz-Ramírez, Celine A. Hayden, Claudia-Anahí Pérez Torres, Anne-Laure Chauvin, Enrique Ibarra-Laclette, Erika Alva-Cortés, Richar Jorgensen and Luis Herrera-Estrella. 2012. J. Exp. Bot. 63: 5203-21.
  8. Functional and Transcriptome Analysis Reveals an Aclimatization Strategy for Abiotic Stress Tolerance mediated by Arabidopsis NF-YA Family members. Marco Antonio Leyva-González, Enrique Ibarra-Laclette, Alfredo Cruz-Ramírez and Luis Herrera-Estrella. 2012. PLoS One. 7: e48138.
  9. Functional analysis of the Arabidopsis PLDZ2 promoter reveals an evolutionarily conserved low-Pi-responsive transcriptional enhancer element. Araceli Oropeza-Aburto, Alfredo Cruz-Ramírez, Gustavo J. Acevedo-Hernández, Claudia-Anahí Pérez-Torres, Juan Caballero-Pérez, and Luis Herrera-Estrella. 2012. J Exp Bot, 635: 2189-202.
  10. How to stimulate stem cells in plants. Akie Shimotohno, Hongtao Zhang, Alfredo Cruz-Ramírez and Scheres Ben. 2011. Netherlands Proteomics Center Highlights. Volume 14.
  11. Effect of Nutrient Availability on Root System Development. Cruz-Ramírez A, Calderón-Vázquez and Herrera-Estrella L. 2009. pp 288–324. Annual Plant Reviews, Volume 37: Root Development. Wiley-Blackwell Publishing.
  12. The genome of Bacillus coahuilensis reveals adaptationsessential for survival in the relic of an ancient marine environment. Alcaraz LD, Olmedo G, Bonilla G, Cerritos R, Hernández G, Cruz A, Ramírez E, Putonti C, Jiménez B, Martínez E, López V, Arvizu JL, Ayala F, Razo F, CaballeroJ, Siefert J, Eguiarte L, Vielle JP, Martínez O, Souza V, Herrera-Estrella A, Herrera-Estrella L. 2008. Proc.Nac. Acad. Sci. (PNAS) 105: 5803-8.
  13. Phosphate Availability Alters Lateral Root Development in Arabidopsis by Modulating Auxin Sensitivity via a Mechanism Involving the TIR1 Auxin Receptor. Claudia-Anahí Pérez-Torres, Jose López-Bucio, Alfredo Cruz-Ramírez, EnriqueIbarra-Laclette, Sunethra Dharmasiri, Mark Estelle and Luis Herrera-Estrella. 2008. The Plant Cell, 20: 3258-72.
  14. Phospholipase DΖ2 plays an important role in extraplastidic galactolipid biosynthesis and Pi recycling in Arabidopsis roots. Alfredo Cruz-Ramírez, Araceli Oropeza-Aburto, Francisco Razo-Hernández, Enrique Ramírez-Chavez, Luis Herrera Estrella. 2006. Proc. Nac. Acad. Sci. (PNAS), 103: 6765–70.
  15. Mexican crops of agroalimentary importance. In Advances in Agricultural and Food Biotechnology. Cruz-Ramírez Luís Alfredo, Valdez-Morales Maribel, Chacón-López Martina Alejandra, Rosas-Cárdenas Flor de Fátima and Cruz-Hernández Andrés. 2006. Research Signpost 35-53.
  16. Phosphate Starvation Induces a Determinate Developmental Program inthe Roots of Arabidopsis thaliana. Lenin Sánchez-Calderón, José López-Bucio, Alejandra Chacón-López, Alfredo Cruz-Ramírez, Fernanda Nieto-Jacobo, Joseph G. Dubrovsky and Luis Herrera Estrella. 2005. Plant Cell Physiol, 46: 174-84.
  17. Root architecture. In Plant Architecture and its Manipulation. J. López-Bucio, A. Cruz-Ramírez, A. Pérez-Torres, J. G. Ramírez-Pimentel, L. Sánchez- Calderón and L. Herrera-Estrella. 2005. Annual Plant Reviews, Volume 17. Blackwell Publishing.
  18. The xipotl Mutant of Arabidopsis Reveals a Critical Role for Phospholipid Metabolism in Root System Development and Epidermal Cell Integrity. Alfredo Cruz-Ramírez, Jose López-Bucio, Gabriel Ramírez-Pimentel, Andrés Zurita-Silva, Lenin Sánchez-Calderon, Enrique Ramırez-Chavez, Emmanuel Gonzalez-Ortega, and Luis Herrera-Estrella. 2004. The Plant Cell, 16: 2020–34.
  19. The role of nutrient availability in regulating root architecture. José López-Bucio, Alfredo Cruz-Ramírez and Luis Herrera-Estrella. 2003. Current Opinion in Plant Biology, 6: 280–87.



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