数字农科院2.0

Transgenic cry1Ab/vip3H+epsps Rice with Insect and Herbicide Resistance Acted No Adverse Impacts on the Population Growth of a Non-Target Herbivore, the White-Backed Planthopper, Under Laboratory and Field Conditions

文献类型: 外文期刊

作者: Han Nai-shun;Tian Jun-ce;Hu Cui;Shen Zhi-cheng;Ye Gong-yin;Tian Jun-ce;Peng Yu-fa;Guo Yu-yuan

作者机构:

关键词: transgenic rice;Bacillus thuringiensis;cty1Ab;vip3H;Sogatella furcifera;biological parameters;population dynamics

期刊名称: JOURNAL OF INTEGRATIVE AGRICULTURE

ISSN: 2095-3119

年卷期: 2014 年 13 卷 12 期

页码:

收录情况: SCI

摘要: Numerous Bt rice lines expressing Cry protein derived from Bacillus thuringiensis Berliner (Bt) have been developed since 1989. However, the potential risks posed by Bt rice on non-target organisms still remain debate. The white-backed planthopper (WBPH), Sogatella furcifera (Horvath), is one of the most economically important insect pests of rice in Asian countries and also one of the main non-target herbivores of transgenic rice. In the current study, impacts of transgenic crylAblvip3H+epsps rice (G6H1) with both insect and herbicide resistance on WBPH were evaluated to ascertain whether this transgenic rice line had potential risks for this sap-sucking pest under laboratory and field conditions. The laboratory results showed that no significant difference in egg developmental duration, nymphal survival rate and female fecundity was found for WBPH between G6H1 and its non-transgenic isoline (XS110). However, the development duration of nymphs was significantly shorter and female longevity significantly longer when WBPH fed on G6H1 by comparison with those on its control. To verify the results found in laboratory, a 3-yr field trial was conducted to monitor WBPH population using both the vacuum-suction machine and beat plate methods. Although the seasonal density of WBPH nymphs and total density of nymphs and adults were not significantly affected by transgenic rice regardless of the sampling methods, the seasonal density of WBPH adults in transgenic rice plots was slightly lower than that in the control when using the vacuum-suction machine. Based on these results both from laboratory and field, it is clear that our tested transgenic rice line will not lead higher population of WBPH. However, long-term field experiments to monitor the population dynamics of WPBH at large scale need to be conducted to confirm the present conclusions in future.

分类号:

  • 相关文献

[1]The New Transgenic cry1Ab/vip3H Rice Poses No Unexpected Ecological Risks to Arthropod Communities in Rice Agroecosystems. Lu, Zengbin,Dang, Cong,Han, Naishun,Shen, Zhicheng,Ye, Gongyin,Lu, Zengbin,Dang, Cong,Han, Naishun,Shen, Zhicheng,Ye, Gongyin,Peng, Yufa,Stanley, David.

[2]Efficacy of transgenic rice expressing Cry1Ac and CpTI against the rice leaffolder, Cnaphalocrocis medinalis (Guenee). Wu, Kongming,Peng, Yufa,Wang, Feng,Guo, Yuyuan. 2007

[3]Comparative demography of Nilaparvata lugens (Stål) reared on Bt rice and non-Bt rice. Lin, Sheng,Miao, Xin,Dong, Ya-Qiang,Vasseur, Liette,You, Shi-Jun,Zhao, Xiao-Yan,Zhu, Xiang-Zhen. 2025

[4]Impacts of transgenic cry1Ab rice on non-target planthoppers and their main predator Cyrtorhinus lividipennis (Hemiptera : Miridae) - A case study of the compatibility of Bt rice with biological control. Liu, Zhi-Cheng,Ye, Gong-yin,Shen, Zhi-cheng,Hu, Cui,Peng, Yu-fa,Altosaar, Illimar,Shelton, Anthony M.. 2007

[5]Baseline susceptibility of Cnaphalocrocis medinalis (Lepidoptera : Pyralidae) to Bacillus thuringiensis toxins in China. Hou, M. L.,Peng, Y. F.,Liu, P. L..

[6]Transgenic rice plants expressing a fused protein of Cry1Ab/Vip3H has resistance to rice stem borers under laboratory and field conditions. Tian, Jun-Ce,Shen, Zhi-Chen,Hu, Cui,Ye, Gong-Yin,Chen, Yang,Tian, Jun-Ce,Shen, Zhi-Chen,Hu, Cui,Ye, Gong-Yin,Peng, Yu-Fa,Guo, Yu-Yuan.

[7]Transgenic cry1C or cry2A rice has no adverse impacts on the life-table parameters and population dynamics of the brown planthopper, Nilaparvata lugens (Hemiptera: Delphacidae). Liu, Yu-E,Han, Nai-Shun,Hu, Cui,Ye, Gong-Yin,Lu, Zeng-Bin,Liu, Yu-E,Han, Nai-Shun,Hu, Cui,Ye, Gong-Yin,Tian, Jun-Ce,Peng, Yu-Fa,Guo, Yu-Yuan.

[8]转cry1C和cry2A不同抗虫基因水稻品种强非靶标害虫灰飞虱生物学特性的影响. 林克剑,李飞,侯茂林. 2011

[9]转crylA基因水稻和两种杀虫剂对非靶标天敌拟环纹豹蛛免疫影响的评价. 陈洋,李兆亮,彭于发,叶恭银. 2011

[10]Resistance alleviation in the larval cotton bollworm to fenvalerate after pretreatment with bacillus thuringiensis. 谭维嘉,梁革梅,郭予元. 1999

[11]利用ubi1内含子增强Bt cry1Ah基因在转基因玉米中的表达. 郎志宏,张杰,何康来,宋福平,黄大昉. 2008

[12]棉铃虫中肠氨肽酶APN4与Cry1Ac、Cry2Aa结合能力的比较. 葛朝虹,肖玉涛,梁革梅. 2015

[13]产Zwittermicin A的苏云金芽孢杆菌菌株的筛选及抗性基因zmaR的克隆与表达. 宋福平,李卓夫,张杰,姜声华,刘大群,黄大昉. 2005

[14]Sublethal effects of spinosad on Plutella xylostella (Lepidoptera : Yponomeutidae). Yin, Xian-Hui,Wu, Qing-Jun,Zhang, You-Jun,Xu, Bao-Yun,Yin, Xian-Hui,Li, Xue-Feng,Yin, Xian-Hui. 2008

[15]Molecular and biological characterization of Neoseiulus species from China. Wu, Chunyan,Zhang, Jin,Wang, Guirong,Wang, Endong,Xu, Xuenong,Li, Fengqi.

[16]An improved vermicomposting system provides more efficient wastewater use of dairy farms using eisenia fetida. Liu Xue,Geng Bing,Zhu Changxiong,Li Lianfang,Francis Frédéric. 2021

[17]Diversity, Tissue Localization, And Infection Pattern Of Bacterial Symbionts Of The White-Backed Planthopper, Sogatella Furcifera (Hemiptera: Delphacidae). Hua, Hongxia,Li, Pei,Li, Fei,Li, Fei,Hou, Maolin,Hou, Maolin,Hou, Maolin,Wang, Fulian. 2020

[18]Characterization Of A Bacterial Symbiont A.saia Sp. In The W hite-Backed Planthopper, Sogatella Furcifera, And Its Effects On Host Fitness. Ali, Asad,Li, Fei,Hou, Maolin,Ali, Asad,Hou, Maolin,Hou, Maolin,Li, Fei,Hua, Hongxia. 2019

[19]Thirteen microsatellite loci for Laodelphax striatellus and cross amplification in related taxa. Liu, Yudi,Hou, Maolin,Zhang, Baoqin. 2014

[20]Reference Gene Selection and Evaluation for Gene Expression Studies Using qRT-PCR in the White-Backed Planthopper, Sogatella furcifera (Hemiptera: Delphacidae). Hou, Mao-lin,Liu, Yu-di.

作者其他论文 更多>>