Tritrophic Interactions Between Transgenic Potato Expressing Snowdrop Lectin (GNA), an Aphid Pest (Peach–Potato Aphid; Myzus Persicae (Sulz.) and a Beneficial Predator (2-Spot Ladybird; Adalia Bipunctata L.)
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J. Gatehouse | A. Gatehouse | M. Majerus | R. Down | G. Davison | L. Ford | S. Woodhouse | G. M. Davison
[1] F Bigler,et al. Immunological analysis of phloem sap of Bacillus thuringiensis corn and of the nontarget herbivore Rhopalosiphum padi (Homoptera: Aphididae) for the presence of Cry1Ab , 2001, Molecular ecology.
[2] T. Higgins,et al. Bean alpha-amylase inhibitor 1 in transgenic peas (Pisum sativum) provides complete protection from pea weevil (Bruchus pisorum) under field conditions. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[3] J. Gatehouse,et al. Snowdrop lectin (GNA) has no acute toxic effects on a beneficial insect predator, the 2-spot ladybird (Adalia bipunctata L.). , 2000, Journal of insect physiology.
[4] P. Christou,et al. Resistance to green leafhopper (Nephotettix virescens) and brown planthopper (Nilaparvata lugens) in transgenic rice expressing snowdrop lectin (Galanthus nivalis agglutinin; GNA). , 2000, Journal of insect physiology.
[5] R. Ortiz,et al. Program for the application of genetic transformation for crop improvement in the semi-arid tropics , 2000, In Vitro Cellular & Developmental Biology - Plant.
[6] J. Gatehouse,et al. The effect of snowdrop lectin (GNA) delivered via artificial diet and transgenic plants on Eulophus pennicornis (Hymenoptera: Eulophidae), a parasitoid of the tomato moth Lacanobia oleracea (Lepidoptera: Noctuidae). , 1999, Journal of insect physiology.
[7] A. Mochizuki,et al. Transgenic rice plants expressing a trypsin inhibitor are resistant against rice stem borers, Chilo suppressalis , 1999 .
[8] A. Birch,et al. Concanavalin A inhibits development of tomato moth (Lacanobia oleracea) and peach-potato aphid (Myzus persicae) when expressed in transgenic potato plants , 1999, Molecular Breeding.
[9] G. Poppy,et al. Potential side effects of insect-resistant transgenic plants on arthropod natural enemies. , 1999, Trends in biotechnology.
[10] S. Leather,et al. The potential for manipulating crop–pest–natural enemy interactions for improved insect pest management , 1998 .
[11] M. Bharathi,et al. Expression of snowdrop lectin (GNA) in transgenic rice plants confers resistance to rice brown planthopper. , 1998, The Plant journal : for cell and molecular biology.
[12] A. Hilbeck,et al. Effects of transgenic Bacillus thuringiensis corn-fed prey on mortality and development time of immature Chrysoperla cornea (Neuroptera: Chrysopidae) , 1998 .
[13] M. Pham-Delègue,et al. Impact of Proteins Used in Plant Genetic Engineering: Toxicity and Behavioral Study in the Honeybee , 1997 .
[14] J. Gatehouse,et al. Effects of snowdrop lectin (GNA) delivered via artificial diet and transgenic plants on the development of tomato moth (Lacanobia oleracea) larvae in laboratory and glasshouse trials. , 1997, Journal of insect physiology.
[15] R. McNicol,et al. The effect of the CpTi gene in strawberry against attack by vine weevil (Otiorhynchus sulcatus F. Coleoptera: Curculionidae) , 1997 .
[16] R. Gilbert,et al. Transgenic potato plants with enhanced resistance to the tomato moth, Lacanobia oleracea: growth room trials , 1997, Molecular Breeding.
[17] J. Gatehouse,et al. Snowdrop lectin inhibits development and decreases fecundity of the Glasshouse Potato Aphid (Aulacorthum solani) when administered in vitro and via transgenic plants both in laboratory and glasshouse trials , 1996 .
[18] P. Rossignol,et al. Biological Parameters of Convergent Lady Beetle (Coleoptera: Coccinellidae) Feeding on Aphids (Homoptera: Aphididae) on Transgenic Potato , 1996 .
[19] Y. Rahbé,et al. Effects of GNA and other mannose binding lectins on development and fecundity of the peach‐potato aphid Myzus persicae , 1996 .
[20] M. Ishimoto,et al. Bruchid resistance of transgenic azuki bean expressing seed α‐amylase inhibitor of common bean , 1996 .
[21] Y. Rahbé,et al. Transgenic potato plants with enhanced resistance to the peach‐potato aphid Myzus persicae , 1996 .
[22] J. Leplé,et al. Toxicity toChrysomela tremulae (Coleoptera: Chrysomelidae) of transgenic poplars expressing a cysteine proteinase inhibitor , 1995, Molecular Breeding.
[23] T. Higgins,et al. Transgenic Pea Seeds Expressing the α-Amylase Inhibitor of the Common Bean are Resistant to Bruchid Beetles , 1994, Bio/Technology.
[24] D. Sadava,et al. Plants, Genes, and Agriculture , 1994 .
[25] E. V. Van Damme,et al. Isolation and characterization of a lectin with exclusive specificity towards mannose from snowdrop (Galanthus nivalis) bulbs , 1987 .
[26] J. Kyhse-Andersen. Electroblotting of multiple gels: a simple apparatus without buffer tank for rapid transfer of proteins from polyacrylamide to nitrocellulose. , 1984, Journal of biochemical and biophysical methods.
[27] M. M. Bradford. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. , 1976, Analytical biochemistry.
[28] R. Blackman. Variation in the photoperiodic response within natural populations of Myzus persicae (Sulz.). , 1971, Bulletin of entomological research.
[29] A. Birch,et al. Tri-trophic interactions involving pest aphids, predatory 2-spot ladybirds and transgenic potatoes expressing snowdrop lectin for aphid resistance , 2004, Molecular Breeding.
[30] P. Christou,et al. Expression of the insecticidal lectin from snowdrop (Galanthus nivalis agglutinin; GNA) in transgenic wheat plants: effects on predation by the grain aphid Sitobion avenae , 2004, Molecular Breeding.
[31] J. Gatehouse,et al. Transgenic GNA Expressing Potato Plants Augment the Beneficial Biocontrol of Lacanobia Oleracea (Lepidoptera: Noctuidae) by the parasitoid Eulophus Pennicornis (Hymenoptera; Eulophidae) , 2004, Transgenic Research.
[32] J. Gatehouse,et al. Effect of dietary cowpea trypsin inhibitor (CpTI) on the growth and development of the tomato moth Lacanobia oleracea (Lepidoptera: Noctuidae) and on the success of the gregarious ectoparasitoid Eulophus pennicornis (Hymenoptera: Eulophidae). , 2001, Pest management science.
[33] D. Stefanović,et al. Effects of a Bacillus thuringiensis toxin, two Bacillus thuringiensis biopesticide formulations, and a soybean trypsin inhibitor on honey bee (Apis mellifera L.) survival and food consumption , 1999 .
[34] D. Michaud,et al. Fitness and feeding are affected in the two‐spotted stinkbug, Perillus bioculatus, by the cysteine proteinase inhibitor, oryzacystatin I , 1998 .
[35] D. Rickwood,et al. Gel electrophoresis of proteins: a practical approach , 1981 .
[36] D. Stibenz. [Introduction to polyacrylamide gel electrophoresis]. , 1975, Acta histochemica. Supplementband.