influence of Bt-transgenic maize pollen on the bacterial diversity in the midgut of Apis mellifera ligustica

Honeybees are subjected to direct contact with transgenic maize pollen due to their feeding activities on pollen. The potential side effects of transgenic cry1Ah-maize pollen on the midgut bacteria of the larvae and worker bees of Apis mellifera ligustica were investigated through denaturing gradien...

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Published inApidologie Vol. 44; no. 2; pp. 198 - 208
Main Authors Geng, Li-Li, Cui, Hong-Juan, Dai, Ping-Li, Lang, Zhi-Hong, Shu, Chang-Long, Zhou, Ting, Song, Fu-Ping, Zhang, Jie
Format Journal Article
LanguageEnglish
Published Paris Springer-Verlag 01.03.2013
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Abstract Honeybees are subjected to direct contact with transgenic maize pollen due to their feeding activities on pollen. The potential side effects of transgenic cry1Ah-maize pollen on the midgut bacteria of the larvae and worker bees of Apis mellifera ligustica were investigated through denaturing gradient gel electrophoresis under both laboratory and field conditions. Newly emerged bees were fed transgenic cry1Ah-maize pollen, normal maize pollen, linear cry1Ah gene DNA, supercoiled plasmid DNA, and sugar syrup under the laboratory conditions. The results showed that there were no significant differences in the midgut bacterial community composition among the five treatments. No significant effects were observed in the midgut communities between larvae and adult honeybees fed transgenic cry1Ah-maize pollen and non-transgenic maize pollen in the field trials.
AbstractList Honeybees are subjected to direct contact with transgenic maize pollen due to their feeding activities on pollen. The potential side effects of transgenic cry1Ah-maize pollen on the midgut bacteria of the larvae and worker bees of Apis mellifera ligustica were investigated through denaturing gradient gel electrophoresis under both laboratory and field conditions. Newly emerged bees were fed transgenic cry1Ah-maize pollen, normal maize pollen, linear cry1Ah gene DNA, supercoiled plasmid DNA, and sugar syrup under the laboratory conditions. The results showed that there were no significant differences in the midgut bacterial community composition among the five treatments. No significant effects were observed in the midgut communities between larvae and adult honeybees fed transgenic cry1Ah-maize pollen and non-transgenic maize pollen in the field trials.
Honeybees are subjected to direct contact with transgenic maize pollen due to their feeding activities on pollen. The potential side effects of transgenic cry1Ah -maize pollen on the midgut bacteria of the larvae and worker bees of Apis mellifera ligustica were investigated through denaturing gradient gel electrophoresis under both laboratory and field conditions. Newly emerged bees were fed transgenic cry1Ah -maize pollen, normal maize pollen, linear cry1Ah gene DNA, supercoiled plasmid DNA, and sugar syrup under the laboratory conditions. The results showed that there were no significant differences in the midgut bacterial community composition among the five treatments. No significant effects were observed in the midgut communities between larvae and adult honeybees fed transgenic cry1Ah -maize pollen and non-transgenic maize pollen in the field trials.
Author Song, Fu-Ping
Dai, Ping-Li
Geng, Li-Li
Lang, Zhi-Hong
Zhang, Jie
Shu, Chang-Long
Zhou, Ting
Cui, Hong-Juan
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Issue 2
Keywords denaturing gradient gel electrophoresis
transgenic maize
intestinal community
Entomopathogen
Monocotyledones
Midgut
Insecta
Bacillus thuringiensis
Apidae
Bacillaceae
Apis mellifera ligustica
Cereal crop
Apis mellifera
Species diversity
Bacillales
Gramineae
Apoidea
Angiospermae
Bacteria
Associated microflora
Transgenic plant
Pollen
Biopesticide
Aculeata
Zea mays
Social insect
Pollinator
Arthropoda
Spermatophyta
Hymenoptera
Invertebrata
Genetically modified organism
Microbial insecticide
Language English
License CC BY 4.0
Distributed under a Creative Commons Attribution 4.0 International License: http://creativecommons.org/licenses/by/4.0
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Notes http://dx.doi.org/10.1007/s13592-012-0171-8
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PublicationSubtitle Official journal of the Institut National de la Recherche Agronomique (INRA) and Deutschen Imkerbundes e.V. (D.I.B.)
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Snippet Honeybees are subjected to direct contact with transgenic maize pollen due to their feeding activities on pollen. The potential side effects of transgenic...
SourceID hal
crossref
pascalfrancis
springer
fao
SourceType Open Access Repository
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SubjectTerms adults
adverse effects
Agricultural sciences
Animal biology
Animal production studies
Animal productions
Apiculture
Apis mellifera ligustica
bacteria
bacterial communities
Biodiversity
Biological and medical sciences
Biomedical and Life Sciences
community structure
corn
denaturing gradient gel electrophoresis
direct contact
Ecology, environment
Entomology
field experimentation
Fundamental and applied biological sciences. Psychology
genes
honey bees
Insecta
Invertebrate Zoology
Invertebrates
larvae
Life Sciences
midgut
Original Article
plasmids
pollen
sugars
syrups
Terrestrial animal productions
worker bees
Title influence of Bt-transgenic maize pollen on the bacterial diversity in the midgut of Apis mellifera ligustica
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https://hal.science/hal-01201287
Volume 44
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