Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
2011.
Scientific Opinion on application (EFSA‐GMO‐CZ‐2008‐54) for placing on the market of genetically modified insect resistant and herbicide tolerant maize MON 88017 for cultivation under Regulation (EC) No 1829/2003 from Monsanto.
EFSA Journal,
Vol. 9,
Issue. 11,
Devos, Yann
De Schrijver, Adinda
De Clercq, Patrick
Kiss, József
and
Romeis, Jörg
2012.
Bt-maize event MON 88017 expressing Cry3Bb1 does not cause harm to non-target organisms.
Transgenic Research,
Vol. 21,
Issue. 6,
p.
1191.
2013.
International scientific Workshop “Non‐Target Organisms and Genetically Modified Crops: Assessing the effects of Bt proteins” (29–30 November 2012, Amsterdam, the Netherlands).
EFSA Supporting Publications,
Vol. 10,
Issue. 9,
Guo, Yanyan
Feng, Yanjie
Ge, Yang
Tetreau, Guillaume
Chen, Xiaowen
Dong, Xuehui
Shi, Wangpeng
and
Desneux, Nicolas
2014.
The Cultivation of Bt Corn Producing Cry1Ac Toxins Does Not Adversely Affect Non-Target Arthropods.
PLoS ONE,
Vol. 9,
Issue. 12,
p.
e114228.
Meissle, Michael
Zünd, Jan
Waldburger, Mario
and
Romeis, Jörg
2014.
Development of Chrysoperla carnea (Stephens) (Neuroptera: Chrysopidae) on pollen from Bt-transgenic and conventional maize.
Scientific Reports,
Vol. 4,
Issue. 1,
Skoková Habuštová, O.
Svobodová, Z.
Spitzer, L.
Doležal, P.
Hussein, H. M.
and
Sehnal, F.
2015.
Communities of ground‐dwelling arthropods in conventional and transgenic maize: background data for the post‐market environmental monitoring.
Journal of Applied Entomology,
Vol. 139,
Issue. 1-2,
p.
31.
Ahmad, Aqeel
Negri, Ignacio
Oliveira, Wladecir
Brown, Christopher
Asiimwe, Peter
Sammons, Bernard
Horak, Michael
Jiang, Changjian
and
Carson, David
2016.
Transportable data from non-target arthropod field studies for the environmental risk assessment of genetically modified maize expressing an insecticidal double-stranded RNA.
Transgenic Research,
Vol. 25,
Issue. 1,
p.
1.
Guo, Jingfei
He, Kanglai
Bai, Shuxiong
Zhang, Tiantao
Liu, Yunjun
Wang, Fuxin
and
Wang, Zhenying
2016.
Effects of transgenic cry1Ie maize on non-lepidopteran pest abundance, diversity and community composition.
Transgenic Research,
Vol. 25,
Issue. 6,
p.
761.
Arias‐Martín, María
García, Matías
Castañera, Pedro
Ortego, Félix
and
Farinós, Gema P.
2018.
Farm‐scale evaluation of the impact of Cry1Ab Bt maize on canopy nontarget arthropods: a 3‐year study.
Insect Science,
Vol. 25,
Issue. 1,
p.
87.
Corrales Madrid, J. L.
Martínez Carrillo, J. L.
Osuna Martínez, M. B.
Durán Pompa, H. A.
Alonso Escobedo, J.
Javier Quiñones, F.
Garzón Tiznado, J. A.
Castro Espinoza, L.
Zavala García, F.
Espinoza Banda, A.
González García, J.
Jiang, C.
Brown, C. R.
de la F. Martínez, J. M.
Heredia Díaz, O.
Whitsel, J. E.
Asiimwe, P.
Baltazar, B. M.
and
Ahmad, A.
2018.
Transportability of non‐target arthropod field data for the use in environmental risk assessment of genetically modified maize in Northern Mexico.
Journal of Applied Entomology,
Vol. 142,
Issue. 5,
p.
525.
Yin, Jun-Qi
Wang, Da-Ming
Liang, Jin-Gang
and
Song, Xin-Yuan
2022.
Negligible Impact of Drought-Resistant Genetically Modified Maize on Arthropod Community Structure Observed in a 2-Year Field Investigation.
Plants,
Vol. 11,
Issue. 8,
p.
1092.
Svobodová, Zdeňka
Zemek, Rostislav
and
Skoková Habuštová, Oxana
2023.
Different maize varieties have greater impact on Tetranychus urticae (Acari: Tetranychidae) than GE maize expressing Cry3Bb1 insecticidal protein.
Journal of Insect Physiology,
Vol. 146,
Issue. ,
p.
104502.