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Edoardo Bertini

Explore the profile of Edoardo Bertini including associated specialties, affiliations and a list of published articles. Areas
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Articles 9
Citations 110
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Recent Articles
1.
Bertini E, DInca E, Zattoni S, Lissandrini S, Cattaneo L, Ciffolillo C, et al.
Bio Protoc . 2025 Mar; 15(4):e5190. PMID: 40028030
CRISPR/Cas9 genome editing technology has revolutionized plant breeding by offering precise and rapid modifications. Traditional breeding methods are often slow and imprecise, whereas CRISPR/Cas9 allows for targeted genetic improvements. Previously,...
2.
Najafi S, Bertini E, DInca E, Fasoli M, Zenoni S
Hortic Res . 2023 Apr; 10(1):uhac240. PMID: 37077374
CRISPR/Cas9 genome editing technology can overcome many limitations of traditional breeding, offering enormous potential for crop improvement and food production. Although the direct delivery of Cas9-single guide RNA (sgRNA) ribonucleoprotein...
3.
DInca E, Foresti C, Orduna L, Amato A, Vandelle E, Santiago A, et al.
Plant Physiol . 2023 Jan; 192(3):1928-1946. PMID: 36718552
Grapevine (Vitis vinifera L.) is one of the most widely cultivated fruit crops because the winemaking industry has huge economic relevance worldwide. Uncovering the molecular mechanisms controlling the developmental progression...
4.
DInca E, Cazzaniga S, Foresti C, Vitulo N, Bertini E, Galli M, et al.
New Phytol . 2021 Feb; 231(2):726-746. PMID: 33567124
Plants undergo several developmental transitions during their life cycle. In grapevine, a perennial woody fruit crop, the transition from vegetative/green-to-mature/woody growth involves transcriptomic reprogramming orchestrated by a small group of...
5.
Vigano R, Disconzi M, Bertini E, Vigano L, Casu C
Case Rep Dent . 2020 Jul; 2020:4876437. PMID: 32685218
The aim of this case report was to evaluate the efficacy of a new platelet-rich plasma preparation and its regenerative capacity of bone periapical tissue for the treatment of a...
6.
Amato A, Cavallini E, Walker A, Pezzotti M, Bliek M, Quattrocchio F, et al.
Plant J . 2019 May; 99(6):1220-1241. PMID: 31125454
The accumulation of secondary metabolites and the regulation of tissue acidity contribute to the important traits of grape berry and influence plant performance in response to abiotic and biotic factors....
7.
Santoni M, Bertini E, Zampieri R, Cuccurullo A, Commisso M, Gecchele E, et al.
J Vis Exp . 2019 Apr; (145). PMID: 30958463
Plant molecular farming is the use of plants to produce molecules of interest. In this perspective, plants may be used both as bioreactors for the production and subsequent purification of...
8.
Fasoli M, Richter C, Zenoni S, Bertini E, Vitulo N, Dal Santo S, et al.
Plant Physiol . 2018 Sep; 178(3):1187-1206. PMID: 30224433
Grapevine () is a model for the investigation of physiological and biochemical changes during the formation and ripening of nonclimacteric fleshy fruits. However, the order and complexity of the molecular...
9.
Bertini E, Merlin M, Gecchele E, Puggia A, Brozzetti A, Commisso M, et al.
Front Plant Sci . 2018 May; 9:572. PMID: 29765386
Type-1 diabetes (T1D) is a metabolic disease involving the autoimmune destruction of insulin-producing pancreatic beta cells. It is often diagnosed by the detection of autoantibodies, typically those recognizing insulin itself...
10.
Perduca M, Bovi M, Bertinelli M, Bertini E, Destefanis L, Carrizo M, et al.
Acta Crystallogr D Biol Crystallogr . 2014 Aug; 70(Pt 8):2125-38. PMID: 25084332
Lipocalin-type prostaglandin D synthase (L-PGDS) catalyzes the isomerization of the 9,11-endoperoxide group of PGH2 (prostaglandin H2) to produce PGD2 (prostaglandin D2) with 9-hydroxy and 11-keto groups. The product of the...