Congressi SIGA
- Book of abstract
- Scientific Programme
- Session 1 - Improving plant resilience to biotic and abiotic stresses
- Session 2 - Genomics and breeding of grain legumes
- Session 3 - Totipotency / Pluripotency and cell differentation for genetic transformation of crop plants
- Session 4 - Epigenetic memory in plants
- Session 5 - Quantitative traits and their molecular bases
- Session 7 - Omics for food nutritional quality and traceability
- Session 8 - Genetics and Biotechnology
- Symposium - Editing crop genomes for next generation breeding
- Authors Index
- Keywords Index
Organised by: |
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Centro di Ricerca per l'Agrumicoltura e le Colture Mediterranee |
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Under the patronage of: |
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With the support of: |
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Session 1 - Improving plant resilience to biotic and abiotic stresses
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1.01 |
Bailey-Serres J., Alam R., Locke A., Pauluzzi G., Reynoso M., Lee T., Septiningsih E. Too much or too little water – From rice genes to paddy fields |
1.02 |
Keller B. Host and pathogen-informed strategies to achieve durable resistance in wheat |
ORAL COMMUNICATIONS |
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1.03 |
Curci P.L., Aiese Cigliano R., Zuluaga D., Sanseverino W., Sonnante G. Transcriptome response to nitrogen starvation in durum wheat |
1.04 |
The WHEALBI Consortium A genomic resource to study allelic variation in barley for the adaptation to the environment |
1.05 |
Punzo P., Ruggiero A., Nurcato R., Possenti M., Morelli G., Grillo S., Batelli G. An expression-based functional screening highlights the importance of splicing and growth-regulation processes for osmotic stress tolerance |
1.06 |
Chialva M., Salvioli A., Daghino S., Bagnaresi P., Neri F., Novero M., Spadaro D., Perotto S., Bonfante P. Natural soils more than genotypes elicit defense priming in tomato plant |
1.07 |
Raggi L., Ceccarelli S., Negri V. Genomic evolution in barley populations multiplied under different stress conditions |
1.08 |
Peressotti E., Buonassisi D., Migliaro D., Dolzani C., Banchi E., Poles L., Arrigoni E., Stefanini M., Velasco R., Vezzulli S. Novel approaches to genetically and phenotipically characterize downy mildew resistance in grapevine |
1.09 |
Maccaferri M., Aouini L., Frascaroli E., Ammar K., Gharbi M.S., Prodi A., Stefanelli S., Corneti S., Mantovani P., Massi A., Kema G.H.J., Tuberosa R. GWAS and linkage analysis for partial resistance to Zymoseptoria tritici in elite durum wheat |
1.10 |
Lo Cicero L., Catara V., Strano C.P., Bella P., Madesis P., Lo Piero A.R. Tobacco plants over-expressing the sweet orange GSTUs acquire tolerance to both abiotic and biotic stresses |
POSTER COMMUNICATIONS |
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1.11 |
Comastri A., Janni M., Simmonds J., Uauy C., Pignone D., Marmiroli N. Discovering new alleles of sHSP genes in durum wheat (Triticum durum Desf.) by TILLING |
1.12 |
Calafiore R., Schettini C., Fontanella V., Rigano M.M., Francese M., Frusciante L., Barone A. Screening of tomato landraces for tolerance to heat stress conditions |
1.13 |
Buffagni V., Graziano S., Gullì M., Janni M., Marmiroli N. Adapting durum wheat to climate changes: identification of new targets for drought resistance variability |
1.14 |
Bizzarri M., Molisso M., Aversano R., Aiese Cigliano R., Sanseverino W., Palladino M., Romano N., Vitaglione P., Carputo D., Frusciante L., Di Matteo A. smallRNA and quality traits profiling in response to drought stress in potato |
1.15 |
Volante A., Monaco S., Orasen G., Oliver V., Valè G. Effect of alternate wetting and drying (AWD) growing conditions on the field performance of different European rice varieties |
1.16 |
Ben Hassen M., Cao T.V., Laval J., Colombi C., Orasen G., Rakotomalala J., Razafinimpiasa L., Bertone C., Volante A., Biselli C., Ahmadi N., Valè G. Breeding for resistance to water stress in a japonica rice background, using Genomic selection |
1.17 |
Nigro D., Fortunato S., Marè C., Aprile A., Cattivelli L., Blanco A., Gadaleta A. Changes in glutamine synthetase and asparagine synthetase genes expression in two durum wheat genotypes grown in drought stress conditions |
1.18 |
Silletti S., Van Oosten M., Di Stasio E., Raimondi G., Ventorino V., Pepe O., Woo S.L., Maggio A. Biostimulant action of Azotobacter chrococcum and Trichoderma in durum wheat exposed to drought stress |
1.19 |
Landi S., Nurcato R., Batelli G., Aiese-Cigliano R., Sanseverino W., Costa A., Leone A, Grillo S. Two Italian tomato landraces show distinctive gene network profiles in response to water deficit |
1.20 |
Sudiro C., Formentin E., Ronci M.B., Locato V., Barizza E., Zottini M., De Gara L., Lo Schiavo F. Rice cells from two varieties with differing salt tolerance unveil mechanisms of resistance by modulating antioxidant defence system and cytoplasmic K+ levels |
1.21 |
Ruggiero A., Landi S., Nurcato R., Costa A., Van Oosten M., Grillo S., Batelli G. Identification of pepper ABA core signaling components and their role in seed germination |
1.22 |
De Stefano R., Docimo T., De Palma M., Tucci M. Modulation of salt stress tolerance in Arundo donax |
1.23 |
Van Oosten M.J., Di Stasio E., Silletti S., Raimondi G., Maggio A. Salt-tress tolerance of tomato inoculated with Azotobacter chrococcum and nitrogen assimilation |
1.24 |
Zuluaga D.L., De Paola D., Janni M., Curci P.L., Liuzzi V., Morgese A., Sonnante G. Durum wheat miRNAs involved in the regulation of nitrogen metabolism during grain filling |
1.25 |
Fantini E., Zhang L., Jimenez-Gomez J.M., Piron F., Bendahmane A., Giuliano G., Perrotta G., Facella P. New cryptochrome mutants help in understanding the role of blue light receptors in flowering, circadian rhythms and development of tomato |
1.26 |
Vannozzi A., Donnini S., Vigani G., Bonghi C., Zocchi G., Lucchin M. Root transcriptome analysis in rootstock genotypes with contrasting tolerance to iron chlorosis |
1.27 |
Trevisan S., Ravazzolo L., Manoli A., Forestan C., Quaggiotti S., Varotto S. Molecular characterization and stress-induced expression profiling of BZR transcription factor family in Zea mays L. |
1.28 |
Biscarini F., Cozzi P., Casella L., Riccardi P., Vattari A., Orasen G. , Perrini S., Tacconi G., Tondelli A., Biselli C., Ben Hassen M., Cattivelli L., Spindel J., Mc Couch S., Abbruscato P., Valè G., Piffanelli P., Greco R. Genome-wide association study for plant, grain, and root morphology in temperate rice |
1.29 |
Raggi L., Ciancaleoni S., Torricelli R., Unmole M.M., Ceccarelli S., Negri V. Selection of barley heterogeneous populations and lines through an evolutionary breeding program for organic and low-input agriculture |
1.30 |
Tundo S., Janni M., Moscetti I., Mandalà G., Savatin D., Blechl A., D’Ovidio R. Tissue-specific expression of PvPGIP2 to improve wheat resistance against Fusarium graminearum |
1.31 |
Giancaspro A., Giove S.L., Zito D., Bellincampi D., Lionetti V., Fabri E., Blanco A., Gadaleta A. Study of suitable candidate genes involved in resistance to Fusarium graminearum in durum wheat |
1.32 |
Zilio M., Sangiorgio S., Venturini G., Tadiello M., Bononi M., Iriti M., Consonni G. Analysis of cuticular wax deposition in the maize silks and its role in Fusarium verticillioides infection |
1.33 |
Piarulli L., Colasuonno P., Nigro D., Gadaleta A., Signorile M.A., Blanco A., Simeone R. Fine mapping of Pm36, a powdery mildew resistance gene in wheat |
1.34 |
Bubici G., Carluccio A.V., Cillo F. Characterization of the tomato py-1 locus conferring recessive resistance against Pyrenochaeta lycopersici |
1.35 |
Licciardello G., Ferraro R., Scuderi G., Giampetruzzi A., Catara A. Comparative analysis of miRNAs production in sweet orange grafted on sour orange after inoculation with two Citrus tristeza virus isolates |
1.36 |
Zingaretti L., Blanco G.C., Meloni A., Vittori D., Rugini E., De Pace C. Targeted exploration of Castanea sativa genetic resources in situ led to trait discovery for biotic stress resistance |
1.37 |
Vitiello A., Molisso D., D'Agostino N., Digilio M.C., Pennacchio F., Corrado G., Rao R. Transcriptional reprogramming of zucchini plant during aphid infestation |
1.38 |
Licciardello G., Caruso A., Gheleri R., Strano C.P., Trantas E., Sarris P.F., Bella P., Lo Piero R., Almeida N., Catara V. Transcriptome-based analysis of two LuxR regulators involved in Pseudomonas corrugata interaction with host and non-host plants |
1.39 |
Caruso P., Catara V., Pruvost O., Robene I., Licciardello C., Caruso M., Timpanaro G., Aysan Y., Cetinkaya-Yildiz R., Pavone R., Redondo C., Cubero J. ORPRAMed Project: risk assessment of introduction of Xanthomonas citri subsp. citri through commercial trade of ornamental rutaceous plants in the Mediterranean basin |
1.40 |
Stevanato P., Moliterni V.M.C., Mandolino G., Broccanello C., Barone V., Bertaggia M., Cagnin M., Pizzeghello D., Baglieri A., Squartini A., Concheri G., Nardi S. Ionomic and molecular responses of sugar beet to changes in sulfate availability |
1.41 |
Saccomanno A., Pecchioni N., Marone D., Russo M.A., De Vita P., Steffenson B., Matny O., Blanco A., Gadaleta A., Mastrangelo A.M. Identification of loci for resistance to stem rust in a tetraploid wheat collection |