
Congressi SIGA

- Book of abstract
- Scientific Programme
- Session 1 - Epigenetics
- Session 2A - Genome structure function and plasticity
- Session 2B - Proteostasis
- Session 2C - Transport and assimilation: from single cells to whole plant
- Session 3A - Genetics, physiology and breeding of fruit plants
- Session 3B - La diversità genetica umana e il concetto di razza
- Session 3C - La storia della Genetica Italiana
- Session 4 - Systems Biology
- Session 5A - AGI oral Session
- Session 5B - Starch biology and biotechnology
- Session 5C - Green biotechnology for industrial uses
- Session 6A - Crop productivity: physiology and genetics
- Session 6B - Genes and human hereditary diseases
- Session 7 - Biotic interactions: symbiosis and pathogenesis
- Session 8 - Food nutritional value and life span
- Session 9 - Genetics, physiology and biotechnology
- Authors Index
- Keywords Index
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Session 7 - Biotic interactions: symbiosis and pathogenesis
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INVITED LECTURE |
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Ariel F., Plet J., Brault-Hernandez M., Verdenaud M., Carrere S., Gouzy J., Chan R., Mathesius U., Crespi M., Frugier F. - Cytokinin pathways regulating Medicago truncatula symbiotic nodule development | |
7.02 | Bellincampi D. - Plant cell wall in pathogenesis: how its structure can influence plant-pathogen interactions |
ORAL COMMUNICATIONS |
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7.03 | Navarro B., Gisel A., Rodio M.E., Delgado S., Flores R., Di Serio F. - Involvement of RNA silencing in plant response to infectious non-coding RNAs |
7.04 | Pavan S., Schiavulli A., Appiano M., Marcotrigiano A.R., Cillo F., Visser R.G.F., Bai Y., Lotti C., Ricciardi L. - Pea powdery mildew er1 resistance is associated to loss-of-function mutations at a MLO homologous locus |
7.05 | Genre A., Chabaud M., Novero M., Faccio A., Barker D., Bonfante P. - Calcium spiking in arbuscular mycorrhizas: the who and where of presymbiotic signaling |
7.06 | Locato V., Cimini S., Novo Uzal E., Levi M., Micera A., Balzamino B.O., Evidente A., De Gara L. - Ophiobolin a activates different defence responses depending on the applied dose in TBY-2 cells |
POSTERS |
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7.07 | Panza L., Lazzaroni N., Balconi C., Berardo N., Hartings H. - Study of Fusarium-induced biosynthetic pathway shifts in Zea mays L. |
7.08 | Pii Y., Molesini B., Pandolfini T. - Study of MtN5 transcriptional control and of its involvement in Medicago truncatula nodulation pathway |
7.09 | Valente M.T., Infantino A., Aragona M. - Understanding the role of an extracellular endo-1,4-beta-glucanase in the Pyrenochaeta lycopersici-tomato pathosystem |
7.10 | Caranci S., Iannacone M., Cervone F., Caprari C. - Analysis of pectic enzyme activities produced by three phytopathogenic fungi grown on plant cell walls |
7.11 | Baccelli I., Scala A., Glave A., Pazzagli L., Cappugi G., Bernardi R. - Cerato-platanin and cerato-populin induce differential gene expression in Platanus acerifolia |
7.12 | Laura M., Lazzari B., Bobbio V., Caprera A., Borghi C., Strozzi F., Allavena A., Stella A. - De novo sequencing of Anemone coronaria transcriptome to discover putative genes involved in Tranzechelia discolour infection responce |
7.13 | Calabrese I.T., Paradiso A., Ciccarese F., De Pinto M.C. - Oidium neolycopersici infection induces different responses on resistant and susceptible tomato plants |
7.14 | Savatin D.V., Gigli Bisceglia N., Cervone F., De Lorenzo G. - Identification of early transduction elements involved in oligogalacturonide signalling |
7.15 | Biselli C., Martini A., Urso S., Faccini N., Tacconi G., Cattivelli L., Valè G. - Haplotype analysis of the Rdg2a locus in different barley varieties |
7.16 | Desiderio F., Como F., Mastrangelo A.M., Rubiales D., Pasquini M., Baravelli M., Simeone R., Blanco A., Cattivelli L., Valè G. - Identification and mapping of a new leaf rust resistance gene derived from Triticum turgidum var. dicoccum |
7.17 | Barbierato V., Tononi P., Toppino L., Delledonne M., Rotino G.L. - Microarray analysis of gene expression variation in eggplant roots subjected to inoculation with Fusarium oxysporum and Verticillium dahliae |
7.18 | Janni M., Volpi C., D’Ovidio R. - Production of transgenic wheat plants expressing the protein inhibitors AcPMEI and PvPGIP2 to enhance resistance to fungal diseases |
7.19 | Moscetti I., Kalunke R., Janni M., Rocchi V., Sella L., Favaron F., D’Ovidio R. - Isolation and characterization of xylanase inhibitors from chromosome group 5 of wheat |
7.20 | D’Ovidio R., Moscetti I., Janni M., Volpi C., Cervone F. - The expression of a fungal polygalacturonase causes cell wall pectin modification and alters plant growth in wheat |
7.21 | Volpi C., Raiola A., Janni M., O’Sullivan D.M., Gordon A., Favaron F., D’Ovidio R. - The lack of recognition of the polygalacturonases secreted by Claviceps purpurea by PvPGIP2 is responsible for susceptibility in wheat transgenic plants |
7.22 | Kalunke R., Janni M., Benedetteli S., D’Ovidio R. - Co-transformation of pectinase and xylanase inhibitors (PGIP, PMEI and XI) to enhance wheat resistance to fungal disease |
7.23 | Abbruscato P., Nepusz T., Mizzi L., Del Corvo M., Morandini P., Fumasoni I., Michel C., Paccanaro A., Guiderdoni E., Schaffrath U., Morel J.B., Piffanelli P., Faivre-Rampant O. - Expression profiling of the WRKY monocot-specific clade in rice |
7.24 |
Bernardi J., Lanubile A., Maschietto V., Marocco A. - Isolating resistance genes against Fusarium ear rot in maize |
7.25 | Ferriello F., Tramparulo M., Puopolo G., Zoina A., Frusciante L., Ercolano M.R. - Towards the modeling of tomato-FORL interaction |
7.26 | Pontieri P., Iacobino E., Massardo D.R., Pignone D., Del Giudice L., Tredici S.M., Pizzolante G., De Caroli S., Talà A., Alifano P., Maffei M.E., Gnavi G., Atbeha Zebelo S., Cordero C., Rubiolo P., Bicchi C. - Identification of bacteria living in the Chrysolina herbacea gut by culture-based approaches |
7.27 | Baldan E., Squartini A., Zottini M., Baldan B. - Characterization and diversity of bacterial endophytes of Vitis vinifera |
7.28 | Maffei G., Miozzi L., Fiorilli V., Lanfranco L., Accotto G.P. - Tomato, arbuscular mycorrhizal fungi and geminiviruses: plant health in a tripartite interaction |
7.29 | Laino P., Russo M.P., Fantozzi E., Guardo M., Reforgiato-Recupero G., Valè G., Cattivelli L., Moliterni V.M.C. - CTV-induced modulation of the Citrus bark proteome – and phosphoproteome – during compatible and incompatible interactions |
7.30 | Zaugg I., Panzeri D., Daminati M.G., Bollini R., Bacher S., Sparvoli F. - A new Arcelin variant responsible for resistance of common bean seeds to bean weevils? |
7.31 | Lanzanova C., Berardo N., Valoti P., Hartings H., Torri A., Motto M., Balconi C. - IDIAM –Project: identification of genetic variability and genes for selection of genotypes tolerant to rootworm damage in maize |
7.32 | Coppa T., Pansa M.G., Ingegno B.L., Tavella L., Vaccino P. - Interactions between bugs’ feeding and wheat quality |
7.33 | Cerana R., Crosti P., Malerba M. - Chitosan-induced cell death in sycamore cultured cells |
7.34 | Ferrari S., Galletti R., De Lorenzo G. - Role of MAP kinases in the activation of Arabidopsis defense responses triggered by elicitors |
7.35 | Landoni M., Bellatti S., De Francesco A., Delledonne M., Ferrarini A., Venturini L., Tonelli C. - A mutation in the FZL gene of Arabidopsis causes a lesion mimic phenotype |
7.36 | Sicilia F., Modesti V., Andreani F., Gramegna G., Cervone F., De Lorenzo G. - an interaction network mediated by the oligogalacturonide receptor wak1 regulates Arabidopsis local response to wounding |
7.37 | Molesini B., Pii Y., Cecconi D., Bulgarini A., Pandolfini T. - A proteomic approach to study the autoregulation of nodulation in Medicago truncatula |
7.38 | Verrillo F., Lomaglio T., Lindermayr C., Durner J., Scippa G.S., Marra M., Rocco M. - Analysis of S-nitrosylated proteins in Arabidopsis thaliana leaves subjected to oxidative stress or wounding |
7.39 | Baldoni E., Mattana M., Locatelli F., Picchi V., Cagliani L.R., Consonni R., Genga A. - Metabolic and molecular responses of Italian rice cultivars to BTH treatment |
7.40 | Vandelle E., Sottocornola B., Bellin D., Delledonne M. - The specificity of tyrosine nitration questions the redundancy of AtMKK4 and AtMKK5 during plant defense responses |
7.41 | Bellin D., Hussain J., Bouneb M., Kleinfelder Fontanesi K., Pachaiappan R., Vandelle E., Delledonne M. - cGMP signaling in plant-pathogen interactions |
7.42 | Di Giacomo E., Iafrate S., Iannelli M.A., Peng J., Chen R., Plet J., Frugier F., Frugis G. - Role of KNOX1 transcription factors of Medicago truncatula in root nodule formation and hormone signal transduction |