State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing 100193, China.
Sci Rep. 2017 May 10;7:46555. doi: 10.1038/srep46555.
A pyramid strategy combining the Cry1A and Cry2A toxins in Bt crops has been widely used throughout the world to delay pest adaption to transgenic crops and broaden the insecticidal spectrum. Midgut membrane-bound cadherin (CAD), aminopeptidase-N (APN) and alkaline phosphatase (ALP) are important for Cry1A toxicity in some lepidopteran larvae, but the proteins that bind Cry2A in the midgut of target insects and their role in the Cry2A mechanism of action are still unclear. In this study, we found that heterologously expressed CAD, APN4 and ALP2 peptides from the midgut of Helicoverpa armigera could bind to the Cry2Aa toxin with a high affinity. Additionally, the efficiency of Cry2Aa insecticidal activity against H. armigera larvae was obviously reduced after the genes encoding these proteins were silenced with specific siRNAs: CAD- and ALP2-silenced larvae showed significantly similar reductions in mortality due to the Cry2Aa toxin (41.67% and 43.06%, respectively), whereas a larger reduction in mortality was observed in APN4-silenced larvae (61.11%) than in controls. These results suggest that CAD, APN4 and ALP2 are involved in the mechanism of action of Cry2Aa in H. armigera and may play important functional roles in the toxicity of the Cry2Aa toxin.
一种将 Cry1A 和 Cry2A 毒素结合在 Bt 作物中的金字塔策略已被广泛应用于世界各地,以延缓害虫对转基因作物的适应,并扩大杀虫谱。中肠膜结合钙粘蛋白(CAD)、氨肽酶-N(APN)和碱性磷酸酶(ALP)对某些鳞翅目幼虫中 Cry1A 的毒性很重要,但结合 Cry2A 在靶昆虫中肠内的蛋白质及其在 Cry2A 作用机制中的作用仍不清楚。在这项研究中,我们发现来自棉铃虫中肠的 CAD、APN4 和 ALP2 肽可与 Cry2Aa 毒素高亲和力结合。此外,用特定的 siRNA 沉默这些编码蛋白的基因后,Cry2Aa 杀虫活性对棉铃虫幼虫的效率明显降低:CAD 和 ALP2 沉默的幼虫因 Cry2Aa 毒素而导致的死亡率明显降低(分别为 41.67%和 43.06%),而 APN4 沉默的幼虫死亡率(61.11%)比对照降低得更多。这些结果表明 CAD、APN4 和 ALP2 参与了 Cry2Aa 在棉铃虫中的作用机制,并且可能在 Cry2Aa 毒素的毒性中发挥重要的功能作用。