Zhao Chenchen, Wu Linke, Luo Junyu, Niu Lin, Wang Chuanpeng, Zhu Xiangzhen, Wang Li, Zhao Peng, Zhang Shuai, Cui Jinjie
State Key Laboratory of Cotton Biology, Institute of Cotton Research, Chinese Academy of Agricultural Sciences, Anyang, China.
Hubei Insect Resources Utilization and Sustainable Pest Management Key Laboratory, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, China.
Front Physiol. 2020 Aug 13;11:758. doi: 10.3389/fphys.2020.00758. eCollection 2020.
Given the ever-increasing commercial planting of transgenic plants across the world, an evaluation of their impacts on non-target organisms is as an important part of the risk assessment process. is a dominant non-target predator and pollen feeder insect that is prevalent in Bt cotton fields, and it is thus in direct contact with Bt proteins. However, the effect of Bt proteins on has not received much attention. In this study, the effects of Cry1Ac and/or Cry2Ab proteins on were investigated from three aspects. First, no significant differences in the diversity of the microbiota nor change in species composition and community structure were observed among Cry protein treatments. Firmicutes are the most abundant bacterial phylum present in , followed by Proteobacteria and Actinobacteria. The most abundant genus was . Second, the expression levels of the detoxification and digestion-related genes did not change significantly in any Cry protein treatment. Third, none of the Cry proteins affected the population fitness of . These results indicated that was not sensitive to Bt proteins, suggesting that growing Bt cotton expressing Cry1Ac and/or Cry2Ab will pose negligible risks to .
鉴于全球转基因植物商业化种植面积不断增加,评估其对非靶标生物的影响是风险评估过程的重要组成部分。[昆虫名称]是一种主要的非靶标捕食性和花粉取食性昆虫,在转Bt基因棉花田中普遍存在,因此与Bt蛋白直接接触。然而,Bt蛋白对[昆虫名称]的影响尚未得到太多关注。在本研究中,从三个方面研究了Cry1Ac和/或Cry2Ab蛋白对[昆虫名称]的影响。首先,在Cry蛋白处理组中,未观察到微生物群多样性、物种组成和群落结构的显著差异。厚壁菌门是[昆虫名称]中最丰富的细菌门,其次是变形菌门和放线菌门。最丰富的属是[属名]。其次,在任何Cry蛋白处理中,解毒和消化相关基因的表达水平均未发生显著变化。第三,Cry蛋白均未影响[昆虫名称]的种群适合度。这些结果表明,[昆虫名称]对Bt蛋白不敏感,这表明种植表达Cry1Ac和/或Cry2Ab的转Bt基因棉花对[昆虫名称]造成的风险可忽略不计。