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Items: 1 to 20 of 102

1.

Stage-specific insecticidal characteristics of a nucleopolyhedrovirus isolate from Chrysodeixis chalcites enhanced by optical brighteners.

Bernal A, Simón O, Williams T, Caballero P.

Pest Manag Sci. 2014 May;70(5):798-804. doi: 10.1002/ps.3617.

PMID:
23893929
2.

Efficacy of an alphabaculovirus-based biological insecticide for control of Chrysodeixis chalcites (Lepidoptera: Noctuidae) on tomato and banana crops.

Simón O, Bernal A, Williams T, Carnero A, Hernández-Suárez E, Muñoz D, Caballero P.

Pest Manag Sci. 2015 Dec;71(12):1623-30. doi: 10.1002/ps.3969.

PMID:
25534715
3.

A Chrysodeixis chalcites single-nucleocapsid nucleopolyhedrovirus population from the Canary Islands is genotypically structured to maximize survival.

Bernal A, Simón O, Williams T, Muñoz D, Caballero P.

Appl Environ Microbiol. 2013 Dec;79(24):7709-18. doi: 10.1128/AEM.02409-13.

4.

Complete Genome Sequences of Five Chrysodeixis chalcites Nucleopolyhedrovirus Genotypes from a Canary Islands Isolate.

Bernal A, Williams T, Muñoz D, Caballero P, Simón O.

Genome Announc. 2013 Oct 24;1(5). pii: e00873-13. doi: 10.1128/genomeA.00873-13.

5.

A Novel Binary Mixture of Helicoverpa armigera Single Nucleopolyhedrovirus Genotypic Variants Has Improved Insecticidal Characteristics for Control of Cotton Bollworms.

Arrizubieta M, Simón O, Williams T, Caballero P.

Appl Environ Microbiol. 2015 Jun 15;81(12):3984-93. doi: 10.1128/AEM.00339-15.

6.

Effect of tinopal LPW on the insecticidal properties and genetic stability of the nucleopolyhedrovirus of Spodoptera exigua (Lepidoptera: Noctuidae).

Murillo R, Lasa R, Goulson D, Williams T, Muñoz D, Caballero P.

J Econ Entomol. 2003 Dec;96(6):1668-74.

PMID:
14977102
8.

Microbial control of black cutworm (Lepidoptera: Noctuidae) in turfgrass using Agrotis ipsilon multiple nucleopolyhedrovirus.

Prater CA, Redmond CT, Barney W, Bonning BC, Potter DA.

J Econ Entomol. 2006 Aug;99(4):1129-37.

PMID:
16937664
9.

Establishment of a cell line from Chrysodeixis chalcites permissive for Chrysodeixis chalcites and Trichoplusia ni nucleopolyhedrovirus.

Xu F, Lynn DE, Roode EC, Muñoz D, van Lent JW, Vlak JM, van Oers MM.

J Invertebr Pathol. 2010 Sep;105(1):56-62. doi: 10.1016/j.jip.2010.05.008.

PMID:
20471390
11.

Insecticidal characteristics of two commercial Spodoptera exigua nucleopolyhedrovirus strains produced on different host colonies.

Elvira S, Ibargutxi MA, Gorria N, Muñoz D, Caballero P, Williams T.

J Econ Entomol. 2013 Feb;106(1):50-6.

PMID:
23448014
12.

Can a chitin-synthesis-inhibiting turfgrass fungicide enhance black cutworm susceptibility to a baculovirus?

Bixby-Brosi AJ, Potter DA.

Pest Manag Sci. 2012 Mar;68(3):324-9. doi: 10.1002/ps.2252.

PMID:
21815243
13.

Optical brightener Tinopal C1101 as an ultraviolet protectant for a nucleopolyhedrovirus.

Mondragón G, Pineda S, Martínez A, Martínez AM.

Commun Agric Appl Biol Sci. 2007;72(3):543-7.

PMID:
18399486
14.
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16.

Mortality of cutworm larvae is not enhanced by Agrotis segetum granulovirus and Agrotis segetum nucleopolyhedrovirus B coinfection relative to single infection by either virus.

Wennmann JT, Köhler T, Gueli Alletti G, Jehle JA.

Appl Environ Microbiol. 2015 Apr;81(8):2893-9. doi: 10.1128/AEM.03726-14.

17.

Formulation with an optical brightener does not increase probability of developing resistance to Spodoptera frugiperda nucleopolyhedrovirus in the laboratory.

Martínez AM, Caballero P, Villanueva M, Miralles N, San Martín I, López E, Williams T.

J Econ Entomol. 2004 Aug;97(4):1202-8.

PMID:
15384328
18.

Selection of a nucleopolyhedrovirus isolate from Helicoverpa armigera as the basis for a biological insecticide.

Arrizubieta M, Williams T, Caballero P, Simón O.

Pest Manag Sci. 2014 Jun;70(6):967-76. doi: 10.1002/ps.3637.

PMID:
23983128
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