LIONETTI, VINCENZO
 Distribuzione geografica
Continente #
NA - Nord America 2.562
EU - Europa 1.917
AS - Asia 486
SA - Sud America 46
OC - Oceania 19
AF - Africa 10
Continente sconosciuto - Info sul continente non disponibili 2
Totale 5.042
Nazione #
US - Stati Uniti d'America 2.541
IE - Irlanda 644
IT - Italia 598
DE - Germania 195
IN - India 148
FI - Finlandia 143
SG - Singapore 141
CN - Cina 122
SE - Svezia 98
UA - Ucraina 67
FR - Francia 56
AR - Argentina 33
GB - Regno Unito 30
PK - Pakistan 26
ES - Italia 20
AU - Australia 17
BG - Bulgaria 17
CA - Canada 17
TW - Taiwan 16
BE - Belgio 13
NL - Olanda 11
KR - Corea 10
JP - Giappone 9
RO - Romania 9
BR - Brasile 8
GR - Grecia 8
TN - Tunisia 5
CH - Svizzera 4
CL - Cile 4
IR - Iran 4
PH - Filippine 4
MX - Messico 3
MY - Malesia 3
AT - Austria 2
EU - Europa 2
HK - Hong Kong 2
MA - Marocco 2
NZ - Nuova Zelanda 2
DK - Danimarca 1
DZ - Algeria 1
GT - Guatemala 1
PE - Perù 1
RU - Federazione Russa 1
SA - Arabia Saudita 1
TG - Togo 1
ZA - Sudafrica 1
Totale 5.042
Città #
Dublin 642
Chandler 444
Rome 335
Fairfield 232
Ashburn 149
Cambridge 139
Woodbridge 119
Ann Arbor 115
Seattle 112
Dearborn 92
Helsinki 82
Princeton 81
Wilmington 81
Houston 73
Bremen 72
Plano 64
Singapore 45
Beijing 42
San Paolo di Civitate 39
Boston 33
Federal 33
Millbury 31
Lawrence 28
San Diego 27
New York 25
Andover 24
Jacksonville 24
Sofia 17
Milan 15
Grafing 14
Ladispoli 14
Boardman 13
Muro Leccese 13
Gujranwala 12
Norwalk 12
Toronto 12
Falls Church 11
Gomaringen 11
Adelaide 10
Des Moines 10
Brussels 9
Hefei 9
Faisalabad 8
Guangzhou 8
Terracina 8
Tübingen 7
Wageningen 7
Ames 6
Gravina in Puglia 6
Kunming 6
Leipzig 6
Phoenix 6
Aryanah 5
Civitavecchia 5
León 5
Mannheim 5
Nanjing 5
Naples 5
Napoli 5
New Delhi 5
Perth 5
Taichung 5
Taipei 5
Verona 5
Bacoor 4
Bari 4
Cassino 4
Gwanak-gu 4
Ibarra 4
Laurel 4
London 4
Santiago 4
Schwarmstedt 4
Washington 4
Ahvaz 3
Amherst 3
Asamizodai 3
Blanden 3
Corinth 3
Delhi 3
Duncan 3
Halle 3
Jinan 3
Kaohsiung City 3
Kuala Lumpur 3
Los Angeles 3
Madrid 3
Nanchang 3
New Taipei 3
Pátrai 3
Springfield 3
Tolentino 3
Umeå 3
Viterbo 3
Véretz 3
Zhengzhou 3
Alghero 2
Artena 2
Athens 2
Auckland 2
Totale 3.607
Nome #
Pectic enzymes as potential enhancers of ascorbic acid production through the D-galacturonate pathway in Solanaceae 111
Cell wall features transferred from common into durum wheat to improve Fusarium Head Blight resistance 110
Pyramiding PvPGIP2 and TAXI-III but not PvPGIP2 and PMEI enhances resistance against Fusarium graminearum 109
Three pectin methylesterase inhibitors protect cell wall integrity for arabidopsis immunity to Botrytis 105
Decreased Polysaccharide Feruloylation Compromises Plant Cell Wall Integrity and Increases Susceptibility to Necrotrophic Fungal Pathogens 100
The ancient battle between plants and pathogens: resilience of the plant cell wall and damage-associated molecular patterns (DAMPs) drive plant immunity 96
Transgenic expression of pectin methylesterase inhibitors limits tobamovirus spread in tobacco and Arabidopsis 96
A lower content of de-methylesterified homogalacturonan improves enzymatic cell separation and isolation of mesophyll protoplasts in Arabidopsis 95
Glycomic and phytochemical profile of olive oil vegetative waters after membrane-based filtration to recover bioactive compounds 95
Analysis of pectin mutants and natural accessions of Arabidopsis highlights the impact of de-methyl-esterified homogalacturonan on tissue saccharification 93
Plant cell wall in pathogenesis, parasitism and symbiosis 93
New insight into the biochemical features of AtPME17, a functional Arabidopsis PME affecting plant resistance to pathogens, regulated by its pro-region 92
Plant cell wall integrity perturbations and priming for defense 92
Transgenic Expression of a Fungal Endo-Polygalacturonase Increases Plant Resistance to Pathogens and Reduces Auxin Sensitivity 91
The Grapevine VvPMEI1 Gene Encodes a Novel Functional Pectin Methylesterase Inhibitor Associated to Grape Berry Development 91
Engineering the cell wall by reducing de-methyl-esterified homogalacturonan improves saccharification of plant tissues for bioconversion 90
Retargeting of a Plant Defense Protease by a Cyst Nematode Effector 90
PECTOPLATE: the simultaneous phenotyping of pectin methylesterases, pectinases and oligogalacturonides in plants during biotic stresses 89
A functional pectin methylesterase inhibitor protein (SolyPMEI) is expressed during tomato fruit ripening and interacts with PME-1 89
How do pectin methylesterases and their inhibitors affect the spreading of tobamovirus? 84
The Plant Invertase/Pectin Methylesterase Inhibitor Superfamily 83
AtPME17 is a functional arabidopsis thaliana pectin methylesterase regulated by its PRO region that triggers PME activity in the resistance to botrytis cinerea 82
Overexpression of pectin methylesterase inhibitors in Arabidopsis restricts fungal infection by Botrytis cinerea 82
Alteration of pectin integrity by expression of a fungal polygalacturonase enhances pathogen resistance. 81
Methyl esterification of pectin plays a role during plant-pathogen interactions and affects plant resistance to diseases 81
The Ectopic Expression of a Pectin Methyl Esterase Inhibitor Increases Pectin Methyl Esterification and Limits Fungal Diseases in Wheat 79
Cell wall traits as potential resources to improve resistance of durum wheath against Fusarium graminearum 79
Deconstruction by microbial cell wall degrading enzymes to convert plant biomass into 2nd generation biofuels 78
In silico identification of structural signatures in Arabidopsis thaliana pectin methylesterases 78
Pectin Methylesterase Is Induced in Arabidopsis upon Infection and Is Necessary for a Successful Colonization by Necrotrophic Pathogens 77
Olive mill wastes. A source of bioactive molecules for plant growth and protection against pathogens 75
Extracellular matrix in plants and animals: Hooks and locks for viruses 73
The esterification status and the length of acidic stretches of homogalacturonan is critical for plant biomass processing. 70
Molecular signalling and recognition in plant defense mechanisms 69
PECTIN MODIFICATION IMPROVES UTILIZATION OF PLANT BIOMASSES TO BIOFUEL CONVERSION 69
Pro-pectin methylesterases as zymogens for plant cell wall mediated immunity 66
Pectin methylesterase inhibitors affect plant growth and defence against pathogens 64
Targeted pectin modification to improve cell wall saccharification for biofuel production 64
Oligogalacturonide signalling: sensing a breach in the wall 63
Protein precursors for effective plant immunity: the case of pectin methylesterases 60
Plant cell wall dynamics and wall-related susceptibility in plant-pathogen interactions 60
Large scale analysis of the tomato membrane proteome during fruit ripening 60
Arabidopsis and Brachypodium transgenic plants expressing A.nidulans acetylesterases have decreased degree of polysaccharide acetylation and increased resistance to pathogens 58
Pectin modification to improve plant biomass utilization 57
THE STRUCTURE OF HOMOGALACTURONAN IS CRITICAL FOR PLANT BIOMASS PROCESSING 57
Pectin methylesterification in plant development and defence against pathogens 56
Pectin modification to improve cell wall saccharification for biofuel production 53
Methylesterification of pectin in plant development and defence against pathogens 51
Pathogen-resistance induced by transgenic expression of a fungal polygalacturonase can be suppressed by auxin 51
Improved saccharification of plant cell wall through in muro pectin modification 50
Enhancement of the wheat defence response to fungal pathogens by increasing the degree of methyl esterification of cell wall pectins 50
Cell wall integrity: Targeted post-synthetic modifications to reveal its role in plant growth and defense against pathogens 50
Plants expressing a fungal polygalacturonase have enhanced pathogen resistance and altered auxin responses 49
Phytochemical profile of olive oil mill vegetative waters 49
TUNING PECTIN METHYLESTERIFICATION TO PROTECT CELL WALL INTEGRITY FOR IMMUNITY TO PATHOGENS 48
Coexpression of fungal cell wall-modifying enzymes reveals their additive impact on arabidopsis resistance to the fungal pathogen, Botrytis cinerea 48
Pectin methylesterase inhibitors in plant defence 47
Homogalacturonan plays a critical role in processing of plant biomass 47
Overexpression of pectin methylesterase inhibitors in Arabidopsis affects defence against pathogens 47
Pectin methylesterase and inhibitor (PMEI) in food industry applications 46
null 46
Alterations of the turnip vein clearing virus spreading in Arabidopsis thaliana over-expressing pectin methylesterase inhibitors 45
Enhancement of the wheat defence response to fungal pathogens by modifying the pectin component of the cell wall 44
Oligogalacturonide signalling: sensing a breach in the wall. 44
Pectin methylesterification: Its role in plant development and defence against pathogens 44
High methylesterification of pectin reduces the susceptibility of plants to fungal and bacterial pathogens. 42
Pectin methylesterase activity affects susceptibility of plants to necrotrophic pathogens 42
Valorization of biowastes from olive oil mill as inducers of plant defence responses 41
High methylesterification of pectin reduces the susceptibility of plants to fungal and bacterial pathogens 41
Role of pectin methylesterification in plant development and defence against pathogens 41
Uso di piante con un ridotti livelli di omogalatturonano de-esterificato nella parete cellulare o parti di esse per migliorare la saccarificazione di biomasse vegetali 40
The molecular dialogue between grapevine inflorescence/berry and Botrytis cinerea during initial, quiescent and egression infection stages 40
Host pectin methylesterase plays a role in the susceptibility to necrotrophic pathogens 38
Use of plants with reduced levels of de-esterified homogalacturonan in the cell wall or portions thereof for improving the saccharification of plant biomasses 35
Use of plants with reduced levels of de-esterified homogalacturonan in the cell wall or portions thereof for improving the saccharification of plant biomasses 32
USE OF A PROTEIN INHIBITOR OF PECTIN METHYLESTERASE FOR REDUCING METHANOL FORMATION IN GRAPE MUST AND MARC, AND PROCESS THEREFOR 28
Arabidopsis subtilases promote defense-related pectin methylesterase activity and robust immune responses to botrytis infection 27
LIQUID FRACTION OF TWO-PHASE OLIVE POMACE IS ENRICHED IN OLIGOSACCHARIDES ACTIVATORS OF PLANT IMMUNITY 27
Use of plants with reduced levels of de-esterified homogalacturonan in the cell wall or portion thereof for improving the saccharification of plant biomasses 25
Uso di un inibitore proteico della pectina metilesterasi per la riduzione della formazione di metanolo in mosti di uva e vinacce e processo per la stessa 23
UPCYCLING BY-PRODUCTS FROM AGROINDUSTRY AND BIOREFINERIES IN SUSTAINABLE AGROBIOLOGICALS 21
SBT3.3 and pro-PME17 are secreted through distinct protein secretion pathways in the apoplast 20
Subtilases trigger pectin-related immunity against pathogens 16
UPCYCLING BY-PRODUCTS FROM AGROINDUSTRY AND BIOREFINERIES IN SUSTAINABLE PHYTOVACCINES AND FERTILIZERS FOR PLANT AND SOIL HEALTH 14
Editorial: Plant cell wall in pathogenesis, parasitism and symbiosis, Volume II 8
Molecular factors underlying Arabidopsis PME activation against Botrytis 5
Pull the fuzes: Processing protein precursors to generate apoplastic danger signals for triggering plant immunity 4
Totale 5.251
Categoria #
all - tutte 12.283
article - articoli 0
book - libri 0
conference - conferenze 0
curatela - curatele 0
other - altro 0
patent - brevetti 496
selected - selezionate 0
volume - volumi 0
Totale 12.779


Totale Lug Ago Sett Ott Nov Dic Gen Feb Mar Apr Mag Giu
2019/2020616 99 8 5 23 53 128 110 66 58 31 22 13
2020/2021363 17 21 22 18 31 20 2 22 48 106 36 20
2021/20221.061 3 52 103 25 91 27 16 77 69 69 326 203
2022/20231.698 155 211 23 261 172 289 5 425 82 22 36 17
2023/2024992 25 88 32 16 81 142 119 156 17 142 88 86
2024/202512 12 0 0 0 0 0 0 0 0 0 0 0
Totale 5.251