Pollen from Cry1Ac/CpTI-transgenic cotton does not affect the pollinating beetle Haptoncus luteolus

文献类型: 外文期刊

第一作者: Lizhen Chen

作者: Lizhen Chen;Jinjie Cui;Weihua Ma;Changying Niu;Chaoliang Lei

作者机构:

关键词: Haptoncus luteolus;Transgenic cotton;Biodiversity;Pollinator;Environmental risk assessment;Non-target effects

期刊名称:JOURNAL OF PEST SCIENCE ( 影响因子:5.918; 五年影响因子:5.955 )

ISSN: 1612-4758

年卷期: 2011 年 84 卷 1 期

页码:

收录情况: SCI

摘要: With the widespread distribution of transgenic cotton plants, concerns over their potential effects on beneficial insects and other non-target pests have been raised. In the present study, the field and laboratory effects of Cry1Ac/CpTI transgenic cotton pollen on the pollinating beetle Haptoncus luteolus were investigated. Abundance of adult beetles was studied in cotton plots at two sites in Wuhan in 2009, and the average number of adults per flower was recorded. Life-history parameters including developmental duration, hatch rate, pupation rate, emergence rate and egg number per female, as well as the survivorship curves of H. luteolus were studied in laboratory experiments. The results showed that the adult abundance in the field did not differ significantly between non-transgenic and transgenic cotton, the exposure to Cry1Ac/CpTI pollen in laboratory had no effect on the developmental time, hatching rate, pupation rates and emergence rates of H. luteolus, no significant differences were found in the mating rates and the fecundity between treatments, and the survival curves of both treatments also resulted in no significant differences. It indicated there were no significant direct adverse effects of transgenic cotton pollen on H. luteolus both in the field and in the laboratory. Our study bridged the gap of environmental risk assessment of transgenic cotton for pollinators other than pollinating bees.

分类号:

  • 相关文献

[1]Consumption of Bt Maize Pollen Containing Cry1Ie Does Not Negatively Affect Propylea japonica (Thunberg) (Coleoptera: Coccinellidae). Yin, Xinming,Li, Yonghui,Liu, Yanmin,Romeis, Joerg,Chen, Xiuping,Geng, Lili,Peng, Yufa,Li, Yunhe,Romeis, Joerg,Song, Xinyuan. 2017

[2]A laboratory assessment of the potential effect of Cry1Ab/Cry2Aj-containing Bt maize pollen on Folsomia candida by toxicological and biochemical analyses. Zhou, Xiang,Zhang, Bing,Yang, Yan,Peng, Yufa,Li, Yunhe,Shen, Ping.

[3]Consumption of Bt rice pollen expressing Cry2Aa does not cause adverse effects on adult Chrysoperla sinica Tjeder (Neuroptera: Chrysopidae). Wang, Yuanyuan,Li, Yunhe,Chen, Xiuping,Zhang, Jie,Chen, Hongyin,Peng, Yufa,Romeis, Joerg. 2012

[4]Toxicological and Biochemical Analyses Demonstrate the Absence of Lethal or Sublethal Effects of cry1C- or cry2A-Expressing Bt Rice on the Collembolan Folsomia candida. Zhang, Bing,Romeis, Jorg,Peng, Yufa,Li, Yunhe,Yang, Yan,Romeis, Jorg,Zhang, Bing,Zhou, Xiang. 2018

[5]Safety of Bacillus thuringiensis Cry1C protein for Daphnia magna based on different functional traits. Yang, Yan,Zhu, Haojun,Romeis, Jorg,Li, Yunhe,Peng, Yufa,Chen, Xiuping,Zhu, Haojun,Romeis, Jorg. 2018

[6]Does Bt maize expressing Cry1Ac protein have adverse effects on the parasitoid Macrocentrus cingulum (Hymenoptera: Braconidae)?. Li, Yun-He,He, Kang-Lai,Bai, Shu-Xiong,Zhang, Tian-Tao,Wang, Zhen-Ying,Wang, Zeng-Xia,Cai, Wan-Zhi. 2017

[7]Bt RICE PRODUCING Cry1C PROTEIN DOES NOT HAVE DIRECT DETRIMENTAL EFFECTS ON THE GREEN LACEWING CHRYSOPERLA SINICA ( TJEDER). Chen, Xiuping,Hu, Long,Romeis, Joerg,Peng, Yufa,Romeis, Joerg. 2014

[8]Genetic diversity within Oryza rufipogon germplasms preserved in Chinese field gene banks of wild rice as revealed by microsatellite markers. Zhang, Chi-Hong,Li, Dao-Yuan,Pan, Da-Jian,Jia, Ji-Zeng,Dong, Yu-Shen.

[9]A horizon scan of future threats and opportunities for pollinators and pollination. Brown, Mark J. F.,Dicks, Lynn V.,Paxton, Robert J.,Paxton, Robert J.,Baldock, Katherine C. R.,Baldock, Katherine C. R.,Barron, Andrew B.,Chauzat, Marie-Pierre,Chauzat, Marie-Pierre,Freitas, Breno M.,Goulson, Dave,Jepsen, Sarina,Kremen, Claire,Li, Jilian,Neumann, Peter,Pattemore, David E.,Potts, Simon G.,Schweiger, Oliver,Seymour, Colleen L.,Seymour, Colleen L.,Stout, Jane C.. 2016

[10]The bumblebees of North China (Apidae, Bombus Latreille). An, Jiandong,Huang, Jiaxing,Wu, Jie,Williams, Paul H.,Shao, Youquan,Zhang, Shiwen,Wang, Biao,Liu, Xinyu,Williams, Paul H..

[11]The bumblebees of Gansu, Northwest China (Hymenoptera, Apidae). An, Jiandong,Zhou, Bingfeng,An, Jiandong,Williams, Paul H.,Miao, Zhengying,Qi, Wenzhong.

[12]Acute and sublethal effects of neonicotinoids and pymetrozine on an important egg parasitoid, Trichogramma ostriniae (Hymenoptera: Trichogrammatidae). Zhang, Pengjun,Zhang, Jingming,Lin, Wencai,Lu, Yaobin,Gao, Yulin.

[13]Review: biosafety assessment of Bt rice and other Bt crops using spiders as example for non-target arthropods in China. Yang, Huilin,Wang, Juan,Hu, Jilin,Wang, Zhi,Yang, Huilin,Peng, Yuande,Tian, Jianxiang,Song, Qisheng.

[14]Thrips-mediated impacts from transgenic rice expressing Cry1Ab on ecological fitness of non-target predator Orius tantilus (Hemiptera: Anthocoridae). Dang Cong,Wang Fang,Ye Gong-yin,Raen, Akhtar Zunnu,Raen, Akhtar Zunnu,Peng Yu-fa. 2016

[15]Bt rice expressing Cry2Aa does not cause direct detrimental effects on larvae of Chrysoperla sinica. Wang, Yuanyuan,Romeis, Joerg,Liu, Qingsong,Lin, Kejian,Chen, Xiuping,Peng, Yufa,Romeis, Joerg. 2013

[16]Impact Assessments of Transgenic cry1Ab Rice on the Population Dynamics of Five Non-Target Thrips Species and Their General Predatory Flower Bug in Bt and Non-Bt Rice Fields Using Color Sticky Card Traps. Ye Gong-yin,Lu Zeng-bin,Chang Xue,Shen Xiao-jing,Hu Cui,Peng Yu-fa. 2013

[17]No effect of Bt-transgenic rice litter on the meiobenthos community in field ditches. Liu, Yongbo,Zhao, Caiyun,Li, Junsheng,Jiang, Wanxiang,Liang, Yuyong.

[18]Eliminating host-mediated effects demonstrates Bt maize producing Cry1F has no adverse effects on the parasitoid Cotesia marginiventris. Wang, Xiang-Ping,Long, Li-Ping,Shelton, Anthony M.,Tian, Jun-Ce,Wang, Xiang-Ping,Long, Li-Ping,Romeis, Joerg,Naranjo, Steven E.,Hellmich, Richard L..

[19]Fabrication of nano-mosquitocides using chitosan from crab shells: Impact on non-target organisms in the aquatic environment. Murugan, Kadarkarai,Anitha, Jaganathan,Dinesh, Devakumar,Suresh, Udaiyan,Rajaganesh, Rajapandian,Chandramohan, Balamurugan,Subramaniam, Jayapal,Paulpandi, Manickam,Vadivalagan, Chitravel,Amuthavalli, Pandiyan,Murugan, Kadarkarai,Wang, Lan,Hwang, Jiang-Shiou,Wei, Hui,Alsalhi, Mohamad Saleh,Devanesan, Sandhanasamy,Kumar, Suresh,Pugazhendy, Kannaiyan,Higuchi, Akon,Nicoletti, Marcello,Benelli, Giovanni,Benelli, Giovanni.

[20]Bio-safety evaluation of Cry1Ac, Cry2Ab, Cry1Ca, Cry1F and Vip3Aa on Harmonia axyridis larvae. Ali, I.,Cui, J. -J.,Zhang, S.,Cui, J. -J.,Ali, I..

作者其他论文 更多>>