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Snowdrop lectin (Galanthus nivalis agglutinin) in aphid honeydew negatively affects survival of a honeydew consuming parasitoid.

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Snowdrop lectin (Galanthus nivalis agglutinin) in aphid honeydew negatively affects survival of a honeydew consuming parasitoid. / Hogervorst, Petra A. M.; Wäckers, Felix L.; Woodring, Joseph et al.
In: Agricultural and Forest Entomology, Vol. 11, No. 2, 05.2009, p. 161-173.

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Hogervorst PAM, Wäckers FL, Woodring J, Romeis J. Snowdrop lectin (Galanthus nivalis agglutinin) in aphid honeydew negatively affects survival of a honeydew consuming parasitoid. Agricultural and Forest Entomology. 2009 May;11(2):161-173. doi: 10.1111/j.1461-9563.2008.00412.x

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Hogervorst, Petra A. M. ; Wäckers, Felix L. ; Woodring, Joseph et al. / Snowdrop lectin (Galanthus nivalis agglutinin) in aphid honeydew negatively affects survival of a honeydew consuming parasitoid. In: Agricultural and Forest Entomology. 2009 ; Vol. 11, No. 2. pp. 161-173.

Bibtex

@article{b018a89b17984c9e92e723776ffb8edd,
title = "Snowdrop lectin (Galanthus nivalis agglutinin) in aphid honeydew negatively affects survival of a honeydew consuming parasitoid.",
abstract = "1 Insecticidal proteins can be excreted in the honeydew when sap-sucking insects feed on insect-resistant transgenic plants. Honeydew can be an important source of carbohydrates, thus potentially exposing a broad range of honeydew-feeding insects to transgene products. 2 Snowdrop lectin (Galanthus nivalis agglutinin; GNA) dissolved in a 2 m sucrose solution had no antifeedant effect on female aphid parasitoids (Aphidius ervi) but had a direct negative effect on their longevity. 3 When feeding on honeydew from Rhopalosiphum padi feeding on a GNA-containing artificial diet, Aphidius ervi suffered a longevity reduction that was more pronounced than was to be expected based on the detected GNA concentration in the honeydew. 4 Analysis of carbohydrate and amino acid composition revealed that a change in honeydew composition caused by a GNA-effect on the aphids could be a possible explanation for the additional reduction in parasitoid longevity. 5 When comparing the effect of honeydew from Sitobion avenae and R. padi feeding on GNA-expressing or nontransformed wheat plants on A. ervi longevity, aphid species was found to have a significant effect, whereas the wheat variety had no effect. The latter result was probably due to low GNA expression levels in the plants. Differences in nutritional suitability between honeydew from R. padi and S. avenae could be explained by differences in carbohydrate and amino acid composition. 6 This is the first study to demonstrate that GNA ingested by aphids and transported into the honeydew can negatively affect the parasitoids consuming this honeydew. 7 We recommend that honeydew should be considered as a route of exposure to transgene products in future risk assessment studies.",
keywords = "Amino acid composition • Aphidius ervi • biological control • GNA • nontarget effects • Rhopalosiphum padi • risk-assessment • Sitobion avenae • sugar composition • transgenic plants",
author = "Hogervorst, {Petra A. M.} and W{\"a}ckers, {Felix L.} and Joseph Woodring and J{\"o}rg Romeis",
year = "2009",
month = may,
doi = "10.1111/j.1461-9563.2008.00412.x",
language = "English",
volume = "11",
pages = "161--173",
journal = "Agricultural and Forest Entomology",
issn = "1461-9555",
publisher = "Wiley-Blackwell",
number = "2",

}

RIS

TY - JOUR

T1 - Snowdrop lectin (Galanthus nivalis agglutinin) in aphid honeydew negatively affects survival of a honeydew consuming parasitoid.

AU - Hogervorst, Petra A. M.

AU - Wäckers, Felix L.

AU - Woodring, Joseph

AU - Romeis, Jörg

PY - 2009/5

Y1 - 2009/5

N2 - 1 Insecticidal proteins can be excreted in the honeydew when sap-sucking insects feed on insect-resistant transgenic plants. Honeydew can be an important source of carbohydrates, thus potentially exposing a broad range of honeydew-feeding insects to transgene products. 2 Snowdrop lectin (Galanthus nivalis agglutinin; GNA) dissolved in a 2 m sucrose solution had no antifeedant effect on female aphid parasitoids (Aphidius ervi) but had a direct negative effect on their longevity. 3 When feeding on honeydew from Rhopalosiphum padi feeding on a GNA-containing artificial diet, Aphidius ervi suffered a longevity reduction that was more pronounced than was to be expected based on the detected GNA concentration in the honeydew. 4 Analysis of carbohydrate and amino acid composition revealed that a change in honeydew composition caused by a GNA-effect on the aphids could be a possible explanation for the additional reduction in parasitoid longevity. 5 When comparing the effect of honeydew from Sitobion avenae and R. padi feeding on GNA-expressing or nontransformed wheat plants on A. ervi longevity, aphid species was found to have a significant effect, whereas the wheat variety had no effect. The latter result was probably due to low GNA expression levels in the plants. Differences in nutritional suitability between honeydew from R. padi and S. avenae could be explained by differences in carbohydrate and amino acid composition. 6 This is the first study to demonstrate that GNA ingested by aphids and transported into the honeydew can negatively affect the parasitoids consuming this honeydew. 7 We recommend that honeydew should be considered as a route of exposure to transgene products in future risk assessment studies.

AB - 1 Insecticidal proteins can be excreted in the honeydew when sap-sucking insects feed on insect-resistant transgenic plants. Honeydew can be an important source of carbohydrates, thus potentially exposing a broad range of honeydew-feeding insects to transgene products. 2 Snowdrop lectin (Galanthus nivalis agglutinin; GNA) dissolved in a 2 m sucrose solution had no antifeedant effect on female aphid parasitoids (Aphidius ervi) but had a direct negative effect on their longevity. 3 When feeding on honeydew from Rhopalosiphum padi feeding on a GNA-containing artificial diet, Aphidius ervi suffered a longevity reduction that was more pronounced than was to be expected based on the detected GNA concentration in the honeydew. 4 Analysis of carbohydrate and amino acid composition revealed that a change in honeydew composition caused by a GNA-effect on the aphids could be a possible explanation for the additional reduction in parasitoid longevity. 5 When comparing the effect of honeydew from Sitobion avenae and R. padi feeding on GNA-expressing or nontransformed wheat plants on A. ervi longevity, aphid species was found to have a significant effect, whereas the wheat variety had no effect. The latter result was probably due to low GNA expression levels in the plants. Differences in nutritional suitability between honeydew from R. padi and S. avenae could be explained by differences in carbohydrate and amino acid composition. 6 This is the first study to demonstrate that GNA ingested by aphids and transported into the honeydew can negatively affect the parasitoids consuming this honeydew. 7 We recommend that honeydew should be considered as a route of exposure to transgene products in future risk assessment studies.

KW - Amino acid composition • Aphidius ervi • biological control • GNA • nontarget effects • Rhopalosiphum padi • risk-assessment • Sitobion avenae • sugar composition • transgenic plants

U2 - 10.1111/j.1461-9563.2008.00412.x

DO - 10.1111/j.1461-9563.2008.00412.x

M3 - Journal article

VL - 11

SP - 161

EP - 173

JO - Agricultural and Forest Entomology

JF - Agricultural and Forest Entomology

SN - 1461-9555

IS - 2

ER -