Annalisa Polverari
University of Verona
44 Papers
314 Citations
Annalisa Polverari is an academic researcher from University of Verona. The author has contributed to research in topics: Biology & Plasmopara viticola. The author has an hindex of 16, co-authored 41 publications.
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Papers
Nitric oxide-mediated transcriptional changes in Arabidopsis thaliana.
Annalisa Polverari,Barbara Molesini,Mario Pezzotti,Roberto Buonaurio,M. Marte,Massimo Delledonne +5 more
TL;DR: Investigation of the changes in the expression profiles of Arabidopsis thaliana following infiltration with the NO donor sodium nitroprusside revealed that many of the identified genes modulated by NO were previously reported to be modulated in disease-related experiments.
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Genome-wide characterisation and expression profile of the grapevine ATL ubiquitin ligase family reveal biotic and abiotic stress-responsive and development-related members.
Pietro Ariani,Alice Regaiolo,Arianna Lovato,Alejandro Giorgetti,Andrea Porceddu,Salvatore Camiolo,Darren Wong,Simone D. Castellarin,Elodie Vandelle,Annalisa Polverari +9 more
TL;DR: The data offer the first genome-wide overview and annotation of the grapevine ATL family, and provide a basis for investigating the roles of specific family members in grapevine physiology and stress responses, as well as potential biotechnological applications.
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cDNA-AFLP analysis of plant and pathogen genes expressed in grapevine infected with Plasmopara viticola
Marianna Polesani,Filomena Desario,Alberto Ferrarini,Anita Zamboni,Mario Pezzotti,A. Kortekamp,Annalisa Polverari +6 more
TL;DR: This study provides the first global catalogue of grapevine and P. viticola genes expressed during infection, together with their functional annotations, to elucidate the molecular basis of the infection process and identify genes and chemicals that could help to inhibit the pathogen.
Expression of Medicago truncatula Genes Responsive to Nitric Oxide in Pathogenic and Symbiotic Conditions
Alberto Ferrarini,Matteo De Stefano,Emmanuel Baudouin,Chiara Pucciariello,Annalisa Polverari,Alain Puppo,Massimo Delledonne +6 more
TL;DR: This work clearly shows that NO-responsive genes behave differently depending on the plant organ and on the type of interaction, strengthening the need to consider regulatory networks, including different signaling molecules.
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