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Virto C, Navarro D, Tellez MM, Herrero S, Williams T, Murillo R, Caballero P. 2014
Natural populations of Spodoptera exigua are infected by multiple viruses that
are transmitted to their offspring. J Invertebr Pathol.122:22-7.
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Jakubowska AK, Vogel H, Ferré J, Herrero S. 2013.
Increase in Gut Microbiota after Immune Suppression in
Baculovirus-infected Larvae. PLoS Pathog 9(5): e1003379.
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Navarro-Cerrillo G, Hernández-Martínez P, Vogel H, Ferré J,
Herrero S 2013. A new gene superfamily of
pathogen-response (repat) genes in Lepidoptera:
Classification and expression analysis. Comp Biochem Physiol
B Biochem Mol Biol.164(1):10-7.
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Bel Y, Jakubowska AK, Costa J, Herrero S, Escriche B. 2013.
Comprehensive analysis of gene expression profiles of the
beet Armyworm Spodoptera exigua larvae challenged
with Bacillus thuringiensis Vip3Aa toxin. PLoS
One.2;8(12):e81927.
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Beperet I, Barrera G, Simón O, Williams T, López-Ferber M,
Gasmi L, Herrero S, Caballero P. 2013. The sf32 unique
gene of Spodoptera frugiperda multiple
nucleopolyhedrovirus (SfMNPV) is a non-essential gene that
could be involved in nucleocapsid organization in
occlusion-derived virions. PLoS One.30;8(10):e77683.
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Jakubowska AK, Vogel H, Herrero S. 2013. Increase in gut
microbiota after immune suppression in baculovirus-infected
larvae. PLoS Pathog. 9(5):e1003379
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Navarro-Cerrillo G, Hernández-Martínez P, Vogel H, Ferré J,
Herrero S. 2013 A new gene superfamily of
pathogen-response (repat) genes in Lepidoptera:
Classification and expression analysis.Comp Biochem Physiol
B Biochem Mol Biol. 164(1):10-7
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Pascual L, Jakubowska AK, Blanca JM, Cañizares J, Ferré J,
Gloeckner G, Vogel H, Herrero S. 2012.
The transcriptome of Spodoptera exigua larvae
exposed to different types of microbes. Insect Biochem Mol
Biol.42(8):557-70.
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Navarro-Cerrillo G, Ferré J, de Maagd RA, Herrero S. 2012.
Functional interactionsbetween members of the REPAT
family of insect pathogen-induced proteins. Insect Mol
Biol.21(3):335-42.
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Millán-Leiva A, Jakubowska AK, Ferré J, Herrero S. 2012.
Genome sequence of SeIV-1, a novel virus from the
Iflaviridae family infective to Spodoptera exigua.
J. Invertebr Pathol.109(1):127-33
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Terenius O, Papanicolaou A, Garbutt JS,
Eleftherianos I, Huvenne H, Kanginakudru
S, Albrechtsen M, An C, Aymeric JL,
Barthel A, Bebas P, Bitra K, Bravo A,
Chevalier F, Collinge DP, Crava CM, de
Maagd RA, Duvic B, Erlandson M, Faye I,
Felföldi G, Fujiwara H, Futahashi R,
Gandhe AS, Gatehouse HS, Gatehouse LN,
Giebultowicz JM, Gómez I,
Grimmelikhuijzen CJ, Groot AT, Hauser F,
Heckel DG, Hegedus DD, Hrycaj S, Huang
L, Hull JJ, Iatrou K, Iga M, Kanost MR,
Kotwica J, Li C, Li J, Liu J, Lundmark
M, Matsumoto S, Meyering-Vos M,
Millichap PJ, Monteiro A, Mrinal N,
Niimi T, Nowara D, Ohnishi A, Oostra V,
Ozaki K, Papakonstantinou M, Popadic A,
Rajam MV, Saenko S, Simpson RM, Soberón
M, Strand MR, Tomita S, Toprak U, Wang
P, Wee CW, Whyard S, Zhang W, Nagaraju
J, Ffrench-Constant RH, Herrero S,
Gordon K, Swevers L, Smagghe G. 2011.
RNA interference in Lepidoptera: an overview of
successful and unsuccessful studies and
implications for experimental design. J
Insect Physiol. 2011 Feb;57(2):231-45
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pdf]
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Hernández-Martínez P, Navarro-Cerrillo
G, Caccia S, de Maagd RA, Moar WJ, Ferré
J, Escriche B, Herrero S. 2010.
Constitutive activation of the midgut response to
Bacillus thuringiensis in
Bt-resistant Spodoptera exigua.
PlosONE.5(9):e12795.
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pdf]
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Hernández-Martínez P, Naseri B, Navarro-Cerrillo
G, Escriche B, Ferré J, Herrero S. 2010.
Increase in midgut microbiota load induces an apparent
immune priming and increases tolerance
to Bacillus thuringiensis.
Environ Microbiol. 12: 2730–2737
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pdf]
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Jakubowska AK, Caccia S, Gordon KH, Ferré J, Herrero S.
2010.
Downregulation of a chitin deacetylase-like protein in
response to baculovirus infection and its application for
improving baculovirus infectivity. J Virol.84:2547-55
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Jakubowska AK, Lynn DE, Herrero S, Vlak JM, van Oers MM.
2010. Host-range expansion of Spodoptera exigua
multiple nucleopolyhedrovirus to Agrotis segetum
larvae when the midgut is bypassed. J Gen Virol.
91:898-906
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Jakubowska A, Ferré J, and Herrero S. 2009. Enhancing the
multiplication of nucleopolyhedrovirus in vitro by
manipulation of the pH. Journal of Virological methods. 161;
254-258
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Hernández-Rodríguez CS, Ferré J, and Herrero S. 2009. Genomic structure and
promoter analysis of pathogen-induced repat genes from Spodoptera exigua. Insect
Molecular Biology. 18; 77.85
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Herrero S, Ivorra JL, García-Sogo M, Martínez-Cortina, C. 2008. Biochemistry
and molecular biology techniques for person characterization BAMBED 18; 347-353
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Herrero S, Ansems M, Van Oers MM, Vlak JM, Bakker PL, de
Maagd RA. 2007. REPAT, a new family of proteins induced
by bacterial toxins and baculovirus infection in
Spodoptera exigua.
Insect Biochem Mol Biol. 37, 1109-18.
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Herrero,S., Gechev,T., Bakker,P.L., Moar,W.J., & de
Maagd,R.A. 2005.
Bacillus
thuringiensis
Cry1Ca-resistant
Spodoptera exigua
lacks expression of one of four Aminopeptidase N genes.
BMC.Genomics 6, 96.
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Herrero,S., Combes,E., van Oers,M.M., Vlak,J.M., de
Maagd,R.A., & Beekwilder,J. 2005.
Identification and recombinant expression of a novel chymotrypsin from
Spodoptera exigua.
Insect Biochem.Mol.Biol. 35, 1073-1082.
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Herrero,S., Gonzalez-Cabrera,J., Ferre,J., Bakker,P.L., & de
Maagd,R.A. 2004.
Mutations in the
Bacillus thuringiensis Cry1Ca toxin demonstrate
the role of domains II and III in specificity towards
Spodoptera exigua
larvae. Biochem.J. 384, 507-513.
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Alonso, M.; Borja, M.; Herrero, S.; Ferré, J.; Ellul, P. &
Moreno, V. 2004.
651,
165- 172.
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Herrero,S., Borja,M., & Ferre,J. 2002. Extent of
Variation of the
Bacillus thuringiensis Toxin Reservoir: the Case of the
Geranium Bronze,
Cacyreus marshalli
Butler (Lepidoptera: Lycaenidae). Appl.Environ.Microbiol.
68, 4090-4094.
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Gonzalez-Cabrera,J., Herrero,S., & Ferre,J. 2001.
High
Genetic Variability for Resistance to
Bacillus thuringiensis Toxins in a Single Population of
Diamondback Moth. Appl.Environ.Microbiol. 67, 5043-5048.
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Gonzalez-Cabrera,J., Herrero,S., Sayyed,A.H., Escriche,B.,
Liu,Y.B., Meyer,S.K., Wright,D.J., Tabashnik,B.E., & Ferre,J.
2001. Variation in Susceptibility to
Bacillus thuringiensis
Toxins among Unselected Strains of
Plutella xylostella. Appl.Environ.Microbiol. 67,
4610-4613.
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Herrero,S. & Ferre,J. 2001. Comparison of Different
Methodologies for Binding Assays of
Bacillus thuringiensis Toxins to Membrane Vesicles from
Insect Midguts.
J.Invertebr.Pathol. 78, 275-277.
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Herrero,S., Ferre,J., & Escriche,B. 2001.
Mannose Phosphate Isomerase Isoenzymes in
Plutella xylostella Support Common Genetic Bases of
Resistance to
Bacillus
thuringiensis Toxins in Lepidopteran Species.
Appl.Environ.Microbiol. 67, 979-981.
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Herrero,S., Gonzalez-Cabrera,J., Tabashnik,B.E., & Ferre,J.
2001.
Shared Binding Sites in Lepidoptera for
Bacillus thuringiensis
Cry1Ja and Cry1A Toxins. Appl.Environ.Microbiol. 67,
5729-5734.
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Herrero,S., Oppert,B., & Ferre,J. 2001. Different
Mechanisms of Resistance to
Bacillus thuringiensis
Toxins in the Indianmeal Moth. Appl.Environ.Microbiol. 67,
1085-1089.
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Sayyed,A.H., Haward,R., Herrero,S., Ferre,J., & Wright,D.J.
2000. Genetic and biochemical approach for
characterization of resistance to
Bacillus thuringiensis
toxin Cry1Ac in a field population of the diamondback moth,
Plutella xylostella. Appl.Environ.Microbiol. 66, 1509-1516.
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Zhao,J.Z., Collins,H.L., Tang,J.D., Cao,J., Earle,E.D.,
Roush,R.T., Herrero,S., Escriche,B., Ferre,J., & Shelton,A.M.
2000. Development and characterization of diamondback
moth resistance to transgenic broccoli expressing high
levels of Cry1C.
Appl.Environ.Microbiol. 66, 3784-3789.
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Ferré, J., Escriche, B.,
González-Cabrera, J. y Herrero, S. Estrategias de manejo de la resistencia
para preservar la utilidad de las plantas Bt. 2005. Boletín electrónico de la
Sociedad Española de Genética: 20:13-17
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Ferré, J.,
González-Cabrera, J., Escriche, B. y Herrero, S. Manejo de la resistencia a
las proteínas insecticidas de Bacillus thuringiensis. 2005. Phytoma.
173:85-88
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Herrero, S.;
Ferré, J.; Hernández, C.S.; Escriche, B.; Borja, M. 2002. Uso de Bacillus
thuringiensis en el control del taladro del geranio (Cacyreus
marshalli Butler). Phytoma: 141:36-44
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Escriche, B.;
González-Cabrera, J.; Herrero, S.; Ferré, J. 2001. La utilización de Bacillus
thuringiensis como bioinsecticida. Phytoma. 129:40-44
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Escriche B.,
Ferrandis C.S., Hernández C.S., Herrero S., Martínez C.,
Porcar M. 2001. Técnicas básicas en el trabajo con
Bacillus thuringiensis. in: Ferré, J & Caballero, P.
Bioinsecticidas: fundamentos y aplicaciones de Bacillus
thuringiensis en el control integrado de plagas.
Editorial Phytoma ISBN: 84-932056-1-3
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