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Page 1
Combined salt and low nitrate stress conditions lead to morphophysiological changes and tissue-specific transcriptome reprogramming in tomato.
Batelli G, Ruggiero A, Esposito S, Venezia A, Lupini A, Nurcato R, Costa A, Palombieri S, Vitiello A, Mauceri A, Cammareri M, Sunseri F, Grandillo S, Granell A, Abenavoli MR, Grillo S. Batelli G, et al. Among authors: sunseri f. Plant Physiol Biochem. 2024 Oct;215:108976. doi: 10.1016/j.plaphy.2024.108976. Epub 2024 Jul 27. Plant Physiol Biochem. 2024. PMID: 39094482 Free article.
Integration of QTL and transcriptome approaches for the identification of genes involved in tomato response to nitrogen deficiency.
Desaint H, Héreil A, Belinchon-Moreno J, Carretero Y, Pelpoir E, Pascal M, Brault M, Dumont D, Lecompte F, Laugier P, Duboscq R, Bitton F, Grumic M, Giraud C, Ferrante P, Giuliano G, Sunseri F, Causse M. Desaint H, et al. Among authors: sunseri f. J Exp Bot. 2024 Sep 27;75(18):5880-5896. doi: 10.1093/jxb/erae265. J Exp Bot. 2024. PMID: 38869971
Integrated omics approach reveals the molecular pathways activated in tomato by Kocuria rhizophila, a soil plant growth-promoting bacterium.
Mauceri A, Puccio G, Faddetta T, Abbate L, Polito G, Caldiero C, Renzone G, Lo Pinto M, Alibrandi P, Vaccaro E, Abenavoli MR, Scaloni A, Sunseri F, Cavalieri V, Palumbo Piccionello A, Gallo G, Mercati F. Mauceri A, et al. Among authors: sunseri f. Plant Physiol Biochem. 2024 May;210:108609. doi: 10.1016/j.plaphy.2024.108609. Epub 2024 Apr 13. Plant Physiol Biochem. 2024. PMID: 38615442 Free article.
Nitrogen use efficiency, growth and physiological parameters in different tomato genotypes under high and low N fertilisation conditions.
Flores-Saavedra M, Villanueva G, Gramazio P, Vilanova S, Mauceri A, Abenavoli MR, Sunseri F, Prohens J, Plazas M. Flores-Saavedra M, et al. Among authors: sunseri f. Plant Physiol Biochem. 2024 Mar;208:108447. doi: 10.1016/j.plaphy.2024.108447. Epub 2024 Feb 19. Plant Physiol Biochem. 2024. PMID: 38417307 Free article.
Dual domestications and origin of traits in grapevine evolution.
Dong Y, Duan S, Xia Q, Liang Z, Dong X, Margaryan K, Musayev M, Goryslavets S, Zdunić G, Bert PF, Lacombe T, Maul E, Nick P, Bitskinashvili K, Bisztray GD, Drori E, De Lorenzis G, Cunha J, Popescu CF, Arroyo-Garcia R, Arnold C, Ergül A, Zhu Y, Ma C, Wang S, Liu S, Tang L, Wang C, Li D, Pan Y, Li J, Yang L, Li X, Xiang G, Yang Z, Chen B, Dai Z, Wang Y, Arakelyan A, Kuliyev V, Spotar G, Girollet N, Delrot S, Ollat N, This P, Marchal C, Sarah G, Laucou V, Bacilieri R, Röckel F, Guan P, Jung A, Riemann M, Ujmajuridze L, Zakalashvili T, Maghradze D, Höhn M, Jahnke G, Kiss E, Deák T, Rahimi O, Hübner S, Grassi F, Mercati F, Sunseri F, Eiras-Dias J, Dumitru AM, Carrasco D, Rodriguez-Izquierdo A, Muñoz G, Uysal T, Özer C, Kazan K, Xu M, Wang Y, Zhu S, Lu J, Zhao M, Wang L, Jiu S, Zhang Y, Sun L, Yang H, Weiss E, Wang S, Zhu Y, Li S, Sheng J, Chen W. Dong Y, et al. Among authors: sunseri f. Science. 2023 Mar 3;379(6635):892-901. doi: 10.1126/science.add8655. Epub 2023 Mar 2. Science. 2023. PMID: 36862793
51 results