FRAUDENTALI, ILARIA
 Distribuzione geografica
Continente #
EU - Europa 866
NA - Nord America 852
AS - Asia 381
AF - Africa 34
SA - Sud America 6
OC - Oceania 5
Totale 2.144
Nazione #
US - Stati Uniti d'America 850
IT - Italia 436
CN - Cina 264
SE - Svezia 109
DE - Germania 97
GB - Regno Unito 86
SG - Singapore 70
FI - Finlandia 55
CI - Costa d'Avorio 27
IE - Irlanda 27
KR - Corea 21
BE - Belgio 15
FR - Francia 13
JP - Giappone 9
RU - Federazione Russa 9
SN - Senegal 7
IN - India 6
AT - Austria 4
AU - Australia 4
CL - Cile 4
ID - Indonesia 4
AL - Albania 3
NL - Olanda 3
TR - Turchia 3
BR - Brasile 2
CA - Canada 2
CZ - Repubblica Ceca 2
LT - Lituania 2
PK - Pakistan 2
ES - Italia 1
HK - Hong Kong 1
HU - Ungheria 1
LA - Repubblica Popolare Democratica del Laos 1
MT - Malta 1
NZ - Nuova Zelanda 1
PL - Polonia 1
UA - Ucraina 1
Totale 2.144
Città #
Rome 273
Chandler 140
Boardman 82
Southend 70
Fairfield 66
Ann Arbor 63
Ashburn 58
Singapore 57
Woodbridge 55
Helsinki 52
Beijing 37
Wilmington 29
Dublin 27
Nanjing 27
Seattle 26
Munich 25
Bremen 23
Seoul 21
Shanghai 19
Cambridge 18
Dearborn 18
Jinan 18
Princeton 16
Brussels 15
Fremont 15
Redmond 14
Shenyang 13
Changsha 12
Milan 11
Pisa 10
Redwood City 10
Houston 9
Tokyo 9
Dakar 7
Kunming 7
San Diego 7
Haikou 6
Jacksonville 6
Jiaxing 6
Nanchang 6
Pune 6
Ascoli Piceno 5
Florence 5
Hangzhou 5
Livorno 5
Plano 5
Urbino 5
Zhengzhou 5
Formello 4
Guangzhou 4
Hebei 4
Jakarta 4
London 4
Ningbo 4
Padova 4
Piscataway 4
Taiyuan 4
Tianjin 4
Vienna 4
Amsterdam 3
Brescia 3
Istanbul 3
Lappeenranta 3
Napoli 3
Santiago 3
Seveso 3
Taranto 3
Ariccia 2
Brno 2
Dallas 2
Esslingen am Neckar 2
Falkenstein 2
Gunzenhausen 2
Hefei 2
Lahore 2
Lanzhou 2
Russas 2
Santa Marinella 2
Stockholm 2
Taizhou 2
Turin 2
Vaprio d'Adda 2
Washington 2
West Jordan 2
Alameda 1
Augusta 1
Baotou 1
Budapest 1
Buffalo 1
Busto Arsizio 1
Cedar Knolls 1
Ciampino 1
Como 1
Dongguan 1
Edinburgh 1
Fuzhou 1
Guidonia 1
Hong Kong 1
Il-Madliena 1
Los Angeles 1
Totale 1.542
Nome #
The copper amine oxidase AtCuAOδ participates in abscisic acid-induced stomatal closure in arabidopsis 144
Innovative processes and treatments to improve the shelf-life, safety and nutritional value of ready-to-eat vegetables. 128
Improving stress tolerance of tomato plants through modification of polyamine metabolism. 117
Involvement of Arabidopsis thaliana Copper Amine Oxidase β in maturation of root protoxylem precursors induced by leaf wounding. 116
Stress-triggered long-distance communication leads to phenotypic plasticity: The case of the early root protoxylem maturation induced by leaf wounding in arabidopsis 113
Developmental, hormone- and stress-modulated expression profiles of four members of the Arabidopsis copper amine oxidase gene family 108
Developmental, hormone- and stress-modulated expression profiles of four members of the Arabidopsis copper-amine oxidase gene family 107
Leaf-wounding long-distance signaling targets AtCuAOβ leading to root phenotypic plasticity 100
Microbiological Quality of Ready-to-Eat Leafy Green Salads during Shelf-Life and Home-Refrigeration 94
Involvement of Arabidopsis Copper Amine Oxidase β in MeJA/wounding-induced stomatal closure. 90
Wounding-induced long-distance communication signals copper amine oxidase β-mediated stomatal closure and root protoxylem plasticity in arabidopsis 90
Involvement of ACA8/ACA10 in wounding-induced stomatal closure in Arabidopsis 83
A new player in jasmonate-mediated stomatal closure: The Arabidopsis Thaliana copper amine oxidase β 80
Enzyme activity inhibition of the ABA-inducible copper amine oxidase AtCuAOδ reverses most of the ABA-mediated stomatal closure in Arabidopsis 79
Plant copper amine oxidases: Key players in hormone signaling leading to stress-induced phenotypic plasticity 70
Caratterizzazione genotipica e fenotipica di mutanti inserzionali di Arabidopsis: movimenti stomatici 65
Distinct role of AtCuAOβ- and RBOHD-driven H2O2 production in wound-induced local and systemic leaf-to-leaf and root-to-leaf stomatal closure 61
AtCuAOβ AND RBOHD DISTINCT ROLES IN MECHANICAL WOUNDING-INDUCED STOMATAL CLOSURE 61
Plant-based biorepellents against large white butterfly caterpillars in Brassica oleracea. 58
Involvement of ACA8, ACA10 and CuAOβ in wounding-induced stomatal closure in Arabidopsis. Abstract #P17 53
Antiossidanti naturali da scarti di filiera agroalimentare per l’estensione della shelf-life delle insalate di IV GAMMA in relazione allo stress ossidativo e al fenomeno dell’imbrunimento. 46
A polyamine oxidase controls water-use efficiency in Solanum lycopersicum 45
CRISPR/Cas9-mediated mutagenesis of a polyamine oxidase gene increases tomato plant tolerance to drought stress. 41
Plant as a whole: rapid long-distance signaling mediated by Ca2+-ATPases and glutamate receptor-like channels triggers wound-induced stomatal closure. 41
Solanum lycopersicum CRISPR/Cas9 mutants for a polyamine oxidase gene exhibit improved drought stress tolerance and water-use efficiency. 40
Role of CuAOβ and RBOHD-derived hydrogen peroxide in wound-induced local and systemic signal propagation leading to stomatal closure in Arabidopsis thaliana. 39
Role of Arabidopsis ACA8 and ACA10 in stomatal modulation upon root wounding or MeJA treatment 32
Distinct roles of AtCuAOβ and RBOHD in wound-induced local and systemic leaf-to-leaf and root-to-leaf stomatal closure in Arabidopsis 30
Polyamines as seed priming agents 28
A Solanum lycopersicum polyamine oxidase contributes to the control of plant growth, xylem differentiation, and drought stress tolerance 22
Testing seed germination from herbaria: Application of seed quality enhancement techniques and implication for plant resurrection and conservation 18
Role of ACA8 and ACA10 in wound-triggered systemic signaling leading to stomatal closure 18
ACA8 and ACA10 calcium pumps are involved in the wounding-induced stomatal closure in local and distal tissues 17
Totale 2.234
Categoria #
all - tutte 9.380
article - articoli 0
book - libri 0
conference - conferenze 0
curatela - curatele 0
other - altro 0
patent - brevetti 0
selected - selezionate 0
volume - volumi 0
Totale 9.380


Totale Lug Ago Sett Ott Nov Dic Gen Feb Mar Apr Mag Giu
2019/2020276 0 0 0 0 38 28 58 32 40 69 4 7
2020/2021208 6 18 4 46 8 30 15 43 0 17 9 12
2021/2022240 47 12 19 16 20 10 28 6 30 13 14 25
2022/2023549 48 81 52 85 30 92 9 46 66 4 20 16
2023/2024498 11 24 57 14 37 51 32 91 50 19 36 76
2024/2025295 30 51 138 49 27 0 0 0 0 0 0 0
Totale 2.234