Hubei Insect Resources Utilization and Sustainable Pest Management Key Laboratory, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, 430070, Hubei, China.
Department of Agricultural Biology, Faculty of Agriculture, University of Ruhuna, Kamburupitiya, 81100, Sri Lanka.
Sci Rep. 2017 May 16;7(1):1940. doi: 10.1038/s41598-017-02207-z.
Transgenic rice expressing cry genes from the bacterium Bacillus thuringiensis (Bt rice) is highly resistant to lepidopteran pests. The brown planthopper (BPH, Nilaparvata lugens) is the main non-target sap-sucking insect pest of Bt transgenic rice. The pond wolf spider (PWS, Pardosa pseudoannulata) is one of the most dominant predators of BPH in rice fields. Consequently, the safety evaluation of Bt rice on BPH and PWS should be conducted before commercialization. In the current study, two experiments were performed to assess the potential ecological effects of Bt rice on BPH and PWS: (1) a tritrophic experiment to evaluate the transmission of Cry1Ac, Cry2Aa and Cry1Ca protein in the food chain; and (2) binding assays of Cry1Ac, Cry2Aa and Cry1Ca to midgut brush border membrane proteins from BPH and PWS. Trace amounts of the three Cry proteins were detected in BPH feeding on Bt rice cultivars, but only Cry1Ac and Cry2Aa proteins could be transferred to PWS through feeding on BPH. In vitro binding of biotinylated Cry proteins and competition assays in midgut protein vesicles showed weak binding, and ligand blot analysis confirmed the binding specificity. Thus, we inferred that the tested Bt rice varieties have negligible effects on BPH and PWS.
转 Cry 基因抗鳞翅目害虫的水稻(Bt 水稻)对鳞翅目害虫具有高度抗性。褐飞虱(BPH,Nilaparvata lugens)是 Bt 转基因水稻的主要非靶标刺吸式害虫。稻田狼蛛(PWS, Pardosa pseudoannulata)是水稻田中 BPH 的最主要捕食性天敌之一。因此,Bt 水稻商业化之前,应对其对 BPH 和 PWS 的潜在生态影响进行评估。在本研究中,进行了两项实验来评估 Bt 水稻对 BPH 和 PWS 的潜在生态影响:(1)三营养级实验,以评估 Cry1Ac、Cry2Aa 和 Cry1Ca 蛋白在食物链中的传递;(2)Cry1Ac、Cry2Aa 和 Cry1Ca 与 BPH 和 PWS 中肠刷状缘膜蛋白的结合测定。Bt 水稻品种上取食的 BPH 中检测到痕量的三种 Cry 蛋白,但只有 Cry1Ac 和 Cry2Aa 蛋白可以通过取食 BPH 传递给 PWS。生物素化 Cry 蛋白的体外结合和中肠蛋白囊泡中的竞争测定显示结合较弱,配体印迹分析证实了结合的特异性。因此,我们推断测试的 Bt 水稻品种对 BPH 和 PWS 没有明显影响。