Regulatory Science, Bayer Crop Science, Santa Cruz das Palmeiras, Brazil.
Regulatory Science, Bayer Crop Science, Pergamino, Argentina.
Pest Manag Sci. 2022 Aug;78(8):3456-3466. doi: 10.1002/ps.6986. Epub 2022 Jun 3.
The sugarcane borer (SCB), Diatraea saccharalis (Lepidoptera: Crambidae), is a key pest of maize in Argentina, and genetically modified maize, producing Bacillus thuringiensis (Bt) proteins, has revolutionized the management of this insect in South America. However, field-evolved resistance to some Bt technologies has been observed in SCB in Argentina. Here we assessed a new Bt technology, MON 95379, in the laboratory, greenhouse and field for efficacy against SCB.
In a laboratory leaf disc bioassay, both MON 95379 (producing Cry1B.868 and Cry1Da_7) and Cry1B.868_single maize (producing only Cry1B.868) resulted in 100% mortality of SCB. The level of Cry1B.868 in the Cry1B.868_single maize is comparable to that in MON 95379 maize. However, the Cry1Da_7 protein does not have high efficacy against SCB, as evidenced by < 20% mortality on Cry1Da_7_single leaf tissue. Total (100%) mortality of SCB in a Cry1B.868_single tissue dilution bioassay indicated that Cry1B.868_single maize meets the criteria to be classified as a high dose. Similar median lethal concentration (LC ) values were observed for MON 89034-R and susceptible SCB strains exposed to Cry1B.868 protein. MON 95379 also controlled SCB strains resistant to MON 89034 (Cry1A.105/Cry2Ab2) and Cry1Ab. Under field conditions in Brazil and Argentina, MON 95379 maize plants were consistently protected from SCB damage.
MON 95379 maize will bring value to maize growers in South America by effectively managing SCB even in locations where resistance to other Bt-containing maize technologies has been reported. © 2022 The Authors. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.
甘蔗夜蛾(SCB),也称玉米穗螟,是阿根廷玉米的主要害虫,转 Bt 基因玉米的出现极大地改变了南美地区对该昆虫的管理。然而,在阿根廷已经观察到 SCB 对某些 Bt 技术产生了田间进化抗性。在这里,我们在实验室、温室和田间评估了一种新的 Bt 技术 MON 95379 对 SCB 的效果。
在实验室叶片圆盘生物测定中,MON 95379(产生 Cry1B.868 和 Cry1Da_7)和 Cry1B.868 单基因玉米(仅产生 Cry1B.868)都导致 SCB 死亡率达到 100%。Cry1B.868 单基因玉米中的 Cry1B.868 水平与 MON 95379 玉米相当。然而,Cry1Da_7 蛋白对 SCB 的杀虫效果不高,在 Cry1Da_7 单基因叶片组织上的死亡率<20%。Cry1B.868 单基因组织稀释生物测定中 SCB 的总(100%)死亡率表明 Cry1B.868 单基因玉米符合高剂量分类标准。暴露于 Cry1B.868 蛋白的 MON 89034-R 和敏感 SCB 菌株的中位致死浓度(LC )值相似。MON 95379 还控制了对 MON 89034(Cry1A.105/Cry2Ab2)和 Cry1Ab 具有抗性的 SCB 品系。在巴西和阿根廷的田间条件下,MON 95379 玉米植株始终免受 SCB 的损害。
MON 95379 玉米将为南美玉米种植者带来价值,即使在已经报告对其他含 Bt 玉米技术产生抗性的地区,也能有效地防治 SCB。