Prof. Dr. Veronica Maurino

Profile

Academic positionFull Professor
Research fieldsPlant Physiology,Biochemistry,Cell Biology
KeywordsMolecular Biology, Plant Physiology, Malate, Photorespiration

Current contact address

CountryGermany
CityBonn
InstitutionRheinische Friedrich-Wilhelms-Universität Bonn
InstituteBereich Molekulare Physiologie
Homepagehttps://www.izmb.uni-bonn.de/de/molekulare-pflanzenphysiologie

Host during sponsorship

Prof. Dr. Ulf-Ingo FlüggeInstitut für Pflanzenwissenschaften, Universität zu Köln, Köln
Start of initial sponsorship01/12/1998

Programme(s)

1998Humboldt Research Fellowship Programme

Publications (partial selection)

2007Holger Fahnenstich, Mariana Saigo, Michaela Niessen, María Inés Zanor, Carlos Andreo, Alisdair Fernie, María Fabiana Drincovich, Ulf-Ingo Flügge and Verónica Graciela Maurino Alteration of organic acid metabolism in Arabidopsis thaliana overexpressing the maize C4-NADP-malic enzyme causes accelerated senescence during extended darkness. In: Plant Physiology, 2007, 640-652
2006Verónica Graciela Maurino, Esther Grube, Julia Zielinski, Alexander Schild, Karsten Fischer and Ulf-Ingo Flügge Identification and expression analysis of twelve members of the Nucleobase-Ascorbate Transporter (NAT) gene family in Arabidopsis thaliana. . In: Plant and Cell Physiology, 2006, 1381-1393
2005Mariel Gerrard Wheeler, Marcos Tronconi, María Fabiana Drincovich, Carlos Andreo, Ulf-Ingo Flügge and Verónica Graciela Maurino: A comprehensive analysis of the NADP-malic enzyme gene family of Arabidopsis thaliana. In: Plant Physiology, 2005, 39-51
2005Valeria Lara, María Fabiana Drincovich, Gabriela Müller, Verónica Graciela Maurino and Andreo NADP-malic enzyme and Hsp70: co-purification of both proteins and modification of NADP-malic enzyme properties by association with Hsp70. In: Plant and Cell Physiology, 2005, 997-1006
2004Mariana Saigo, Federico Bologna, Verónica Graciela Maurino, Enrique Detarsio, Carlos Andreo and María Fabiana Drincovich: Maize recombinant non-C4 NADP-malic enzyme: A novel dimeric malic enzyme with high specific activity.. In: Plant Mol. Biol., 2004, 97-107