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Bacterial Vegetative Insecticidal Proteins (Vip) from Entomopathogenic Bacteria
M. Chakroun,
N. Banyuls,
Y. Bel,
B. Escriche,
J. Ferré
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7 |
2016 |
7 🐬
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Midgut microbiota and host immunocompetence underlie Bacillus thuringiensis killing mechanism
14 auth.
S. Caccia,
I. Di Lelio,
A. La Storia,
A. Marinelli,
P. Varricchio,
E. Franzetti,
N. Banyuls,
Gianluca Tettamanti,
M. Casartelli,
B. Giordana,
...
J. Ferré,
S. Gigliotti,
D. Ercolini,
F. Pennacchio
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7 |
2016 |
7 🐜
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A screening of five Bacillus thuringiensis Vip3A proteins for their activity against lepidopteran pests.
8 auth.
Iñigo Ruiz de Escudero,
N. Banyuls,
Y. Bel,
Mireya Maeztu,
B. Escriche,
D. Muñoz,
...
P. Caballero,
J. Ferré
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6 |
2014 |
6 🐜
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Characterization of the resistance to Vip3Aa in Helicoverpa armigera from Australia and the role of midgut processing and receptor binding
M. Chakroun,
N. Banyuls,
T. Walsh,
S. Downes,
Bill James,
J. Ferré
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5 |
2016 |
5 🐬
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Insights into the Structure of the Vip3Aa Insecticidal Protein by Protease Digestion Analysis
Y. Bel,
N. Banyuls,
M. Chakroun,
B. Escriche,
J. Ferré
|
5 |
2017 |
5 🐬
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Critical amino acids for the insecticidal activity of Vip3Af from Bacillus thuringiensis: Inference on structural aspects
N. Banyuls,
C. S. Hernández-Rodríguez,
J. Rie,
J. Ferré
|
4 |
2018 |
4 🦁
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Diet of the garden dormouse (Eliomys quercinus Linnaeus 1766) in orange groves: seasonal variation and use of available resources
J. Gil-Delgado,
Óscar Mira,
Adrià Viñals,
Jaime Gómez,
N. Banyuls,
Carmen Vives-Ferrándiz
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4 |
2010 |
4 🐬
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Compatibility of Phytoseiulus persimilis and Neoseiulus californicus (Acari: Phytoseiidae) with imidacloprid to manage clementine nursery pests
P. S. Argolo,
N. Banyuls,
Sandra Santiago,
Ó. Mollá,
J. Jacas,
A. Urbaneja
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4 |
2013 |
4 🐬
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Artefactual band patterns by SDS-PAGE of the Vip3Af protein in the presence of proteases mask the extremely high stability of this protein.
N. Banyuls,
P. Hernández-Martínez,
Y. Quan,
J. Ferré
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3 |
2018 |
3 🦁
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