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Biochemical Pharmacology|May 9, 2000
Clavilactones, a novel class of tyrosine kinase inhibitors of fungal originG Cassinelli, C Lanzi, T Pensa, et al.Frontiers in Plant Science|October 31, 2022
Adapting wine grape production to climate change through canopy architecture manipulation and irrigation in warm climatesRunze Yu, Nazareth Torres, Justin D Tanner, et al.Plant Physiology|August 18, 2025
The reduced canopy area in esca-symptomatic grapevine plants leads to lower canopy transpiration and mitigates water stressNinon Dell'Acqua, Gregory A Gambetta, Megan K Bartlett, et al.Biochemical Pharmacology|August 27, 1998
Decreased drug accumulation and increased tolerance to DNA damage in tumor cells with a low level of cisplatin resistanceC Lanzi, P Perego, R Supino, et al.Physiologia Plantarum|May 1, 2026
Fungal Pathogen Activity and Stress-Dependent Responses of Grapevine Wood to Esca and DroughtMarie Chambard, Dario Cantù, Giovanni Bortolami, et al.Science Advances|February 7, 2018
Drought will not leave your glass empty: Low risk of hydraulic failure revealed by long-term drought observations in world's top wine regionsGuillaume Charrier, Sylvain Delzon, Jean-Christophe Domec, et al.Plant Physiology|August 29, 2019
Exploring the Hydraulic Failure Hypothesis of Esca Leaf Symptom FormationGiovanni Bortolami, Gregory A Gambetta, Sylvain Delzon, et al.Journal of Experimental Botany|March 15, 2021
Seasonal and long-term consequences of esca grapevine disease on stem xylem integrityGiovanni Bortolami, Elena Farolfi, Eric Badel, et al.Plant, Cell & Environment|December 19, 2019
Over-accumulation of abscisic acid in transgenic tomato plants increases the risk of hydraulic failureLaurent J Lamarque, Sylvain Delzon, Haley Toups, et al.Journal of Plant Physiology|February 13, 2021
Linking root and stem hydraulic traits to leaf physiological parameters in Coffea canephora clones with contrasting drought toleranceJosé Altino Machado Filho, Weverton Pereira Rodrigues, Danilo Força Baroni, et al.Pageof 9