Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Meissle, Michael
Álvarez‐Alfageme, Fernando
Malone, Louise A.
and
Romeis, Jörg
2012.
Establishing a database of bio‐ecological information on non‐target arthropod species to support the environmental risk assessment of genetically modified crops in the EU.
EFSA Supporting Publications,
Vol. 9,
Issue. 9,
García, Matías
Farinós, Gema P.
Castañera, Pedro
and
Ortego, Félix
2012.
Digestion, growth and reproductive performance of the zoophytophagous rove beetle Philonthus quisquiliarius (Coleoptera: Staphylinidae) fed on animal and plant based diets.
Journal of Insect Physiology,
Vol. 58,
Issue. 10,
p.
1334.
Romeis, Jörg
Meissle, Michael
Álvarez-Alfageme, Fernando
Bigler, Franz
Bohan, David A.
Devos, Yann
Malone, Louise A.
Pons, Xavier
and
Rauschen, Stefan
2014.
Potential use of an arthropod database to support the non-target risk assessment and monitoring of transgenic plants.
Transgenic Research,
Vol. 23,
Issue. 6,
p.
995.
Catarino, Rui
Ceddia, Graziano
Areal, Francisco J.
and
Park, Julian
2015.
The impact of secondary pests on Bacillus thuringiensis (Bt) crops.
Plant Biotechnology Journal,
Vol. 13,
Issue. 5,
p.
601.
Svobodová, Z.
Skoková Habuštová, O.
Boháč, J.
and
Sehnal, F.
2016.
Functional diversity of staphylinid beetles (Coleoptera: Staphylinidae) in maize fields: testing the possible effect of genetically modified, insect resistant maize.
Bulletin of Entomological Research,
Vol. 106,
Issue. 4,
p.
432.
Guo, Yan-Yan
Tian, Jun-Ce
Shi, Wang-Peng
Dong, Xue-Hui
Romeis, Jörg
Naranjo, Steven E.
Hellmich, Richard L.
and
Shelton, Anthony M.
2016.
The interaction of two-spotted spider mites, Tetranychus urticae Koch, with Cry protein production and predation by Amblyseius andersoni (Chant) in Cry1Ac/Cry2Ab cotton and Cry1F maize.
Transgenic Research,
Vol. 25,
Issue. 1,
p.
33.
Peterson, Julie A.
Ode, Paul J.
Oliveira-Hofman, Camila
and
Harwood, James D.
2016.
Integration of Plant Defense Traits with Biological Control of Arthropod Pests: Challenges and Opportunities.
Frontiers in Plant Science,
Vol. 7,
Issue. ,
Gurr, Geoff M.
and
You, Minsheng
2016.
Conservation Biological Control of Pests in the Molecular Era: New Opportunities to Address Old Constraints.
Frontiers in Plant Science,
Vol. 6,
Issue. ,
Arias-Martín, María
García, Matías
Luciáñez, Mª José
Ortego, Félix
Castañera, Pedro
and
Farinós, Gema P.
2016.
Effects of three-year cultivation of Cry1Ab-expressing Bt maize on soil microarthropod communities.
Agriculture, Ecosystems & Environment,
Vol. 220,
Issue. ,
p.
125.
van Frankenhuyzen, Kees
2017.
Bacillus thuringiensis and Lysinibacillus sphaericus.
p.
127.
Svobodová, Zdeňka
Skoková Habuštová, Oxana
Holec, Josef
Holec, Michal
Boháč, Jaroslav
Jursík, Miroslav
Soukup, Josef
and
Sehnal, František
2018.
Split application of glyphosate in herbicide-tolerant maize provides efficient weed control and favors beneficial epigeic arthropods.
Agriculture, Ecosystems & Environment,
Vol. 251,
Issue. ,
p.
171.
Pinheiro, Patricia Valle
and
de Faria, Josias Correa
2020.
GMOs.
Vol. 19,
Issue. ,
p.
87.
Twardowski, Jacek Piotr
Gruss, Iwona
Bereś, Paweł
Hurej, Michał
and
Klukowski, Zdzisław
2022.
An Assessment of Environmental Risk of Bt-Maize on Rove Beetle Communities.
Ecological Chemistry and Engineering S,
Vol. 29,
Issue. 2,
p.
257.
Meissle, Michael
Naranjo, Steven E.
and
Romeis, Jörg
2022.
Does the growing of Bt maize change abundance or ecological function of non-target animals compared to the growing of non-GM maize? A systematic review.
Environmental Evidence,
Vol. 11,
Issue. 1,
Sahayaraj, Kitherian
and
Hassan, Errol
2023.
Worldwide Predatory Insects in Agroecosystems.
p.
447.