David  Turra
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Data quality aware analysis of differential expression in RNA-seq with NOISeq R/Bioc package
S Tarazona, P Furiˇ-TarÝ, D TurrÓ, AD Pietro, MJ Nueda, A Ferrer, ...
Nucleic acids research 43 (21), e140-e140, 2015
Study of the three-way interaction between Trichoderma atroviride, plant and fungal pathogens by using a proteomic approach
R Marra, P Ambrosino, V Carbone, F Vinale, SL Woo, M Ruocco, ...
Current genetics 50 (5), 307-321, 2006
A fungal pathogen secretes plant alkalinizing peptides to increase infection
S Masachis, D Segorbe, D TurrÓ, M Leon-Ruiz, U FŘrst, M El Ghalid, ...
Nature Microbiology 1 (6), 1-9, 2016
The secreted peptide PIP1 amplifies immunity through receptor-like kinase 7
S Hou, X Wang, D Chen, X Yang, M Wang, D TurrÓ, A Di Pietro, W Zhang
PLoS pathogens 10 (9), e1004331, 2014
Protein kinases in plant-pathogenic fungi: conserved regulators of infection
D TurrÓ, D Segorbe, A Di Pietro
Annual Review of Phytopathology 52, 267-288, 2014
Identification of a New Biocontrol Gene in Trichoderma atroviride: The Role of an ABC Transporter Membrane Pump in the Interaction with Different Plantá…
M Ruocco, S Lanzuise, F Vinale, R Marra, D TurrÓ, SL Woo, M Lorito
Molecular plant-microbe interactions 22 (3), 291-301, 2009
HapX-Mediated Iron Homeostasis Is Essential for Rhizosphere Competence and Virulence of the Soilborne Pathogen Fusarium oxysporum
MS Lˇpez-Berges, J Capilla, D TurrÓ, L Schafferer, S Matthijs, C J÷chl, ...
The Plant Cell 24 (9), 3805-3822, 2012
Fungal pathogen uses sex pheromone receptor for chemotropic sensing of host plant signals
D Turra, M El Ghalid, F Rossi, A Di Pietro
Nature 527 (7579), 521-524, 2015
Multiple roles and effects of a novel Trichoderma hydrophobin
M Ruocco, S Lanzuise, N Lombardi, SL Woo, F Vinale, R Marra, ...
Molecular Plant-Microbe Interactions 28 (2), 167-179, 2015
Root Exudates of Stressed Plants Stimulate and Attract Trichoderma Soil Fungi
N Lombardi, S Vitale, D TurrÓ, M Reverberi, C Fanelli, F Vinale, R Marra, ...
Molecular Plant-Microbe Interactions 31 (10), 982-994, 2018
Application of Trichoderma harzianum (T22) and Trichoderma atroviride (P1) as plant growth promoters, and their compatibility with copper oxychloride
FVGDA Khalid, AFSR Marra
浙江大学学报 (农业与生命科学版) 30 (4), 425-425, 2004
Three Fusarium oxysporum mitogen‐activated protein kinases (MAPKs) have distinct and complementary roles in stress adaptation and cross‐kingdom pathogenicity
D Segorbe, A Di Pietro, E PÚrez‐Nadales, D TurrÓ
Molecular plant pathology 18 (7), 912-924, 2017
Genotype-dependent expression of specific members of potato protease inhibitor gene families in different tissues and in response to wounding and nematode infection
D Turra, D Bellin, M Lorito, C Gebhardt
Journal of plant physiology 166 (7), 762-774, 2009
Identification and characterization of potato protease inhibitors able to inhibit pathogenicity and growth of Botrytis cinerea
MR Hermosa, D Turra, V Fogliano, E Monte, M Lorito
Physiological and molecular plant pathology 68 (4-6), 138-148, 2006
Potato type I and II proteinase inhibitors: modulating plant physiology and host resistance
D Turra, M Lorito
Current Protein and Peptide Science 12 (5), 374-385, 2011
The genome of opportunistic fungal pathogen Fusarium oxysporum carries a unique set of lineage-specific chromosomes
Y Zhang, H Yang, D Turra, S Zhou, DH Ayhan, GA DeIulio, L Guo, K Broz, ...
Communications biology 3 (1), 1-12, 2020
Chemotropic sensing in fungus–plant interactions
D TurrÓ, A Di Pietro
Current opinion in plant biology 26, 135-140, 2015
A conserved co‐chaperone is required for virulence in fungal plant pathogens
L Lo Presti, C Lˇpez DÝaz, D TurrÓ, A Di Pietro, M Hampel, K Heimel, ...
New Phytologist 209 (3), 1135-1148, 2016
Autocrine pheromone signalling regulates community behaviour in the fungal pathogen Fusarium oxysporum
S Vitale, A Di Pietro, D TurrÓ
Nature microbiology 4 (9), 1443-1449, 2019
NADPH oxidase regulates chemotropic growth of the fungal pathogen Fusarium oxysporum towards the host plant
DE Nordzieke, TR Fernandes, M El Ghalid, D TurrÓ, A Di Pietro
New Phytologist 224 (4), 1600-1612, 2019
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