Colombian Sugarcane Research Center (Cenicaña), Florida, Colombia.
Alliance Bioversity-CIAT (The International Center for Tropical Agriculture), Palmira, Colombia.
PLoS One. 2023 Oct 18;18(10):e0292992. doi: 10.1371/journal.pone.0292992. eCollection 2023.
The genus Diatraea (Lepidoptera: Crambidae) includes stem borers representing the most critical sugarcane pests in the Americas. Colombia's most widely distributed and damaging Diatraea species include Diatraea saccharalis, D. indigenella, D. busckella, and D. tabernella. The reduced efficacy of biological tools commonly used in controlling several species highlights the importance of evaluating alternative management strategies, such as transgenic plants expressing insecticidal proteins from the bacterium Bacillus thuringiensis (Bt). The selection of optimal Bt insecticidal proteins for Diatraea control depends on bioassays with purified Bt proteins. Because there is no described artificial diet for borer species other than D. saccharalis and availability of most purified Bt toxins is restricted, this study aimed at developing a bioassay method using fresh corn tissue and providing proof of concept by testing susceptibility to the Cry1Ac insecticidal protein from Bt. Toxicity was evaluated with a single Cry1Ac dose applied directly to corn discs. Stem borer mortality after seven days was higher than 90% for all four tested Diatraea species, while control mortality was below 8%. In addition, we observed that Cry1Ac caused more than 90% weight inhibition in all survivors and delayed development. These results validate the use of this method to determine mortality and growth inhibition due to the consumption of the Cry1Ac protein in each of the Diatraea species. Furthermore, this method could be used to assess other entomopathogenic substances to control these insect pests.
夜蛾属(鳞翅目:夜蛾科)包括蛀茎虫,是美洲最重要的甘蔗害虫。哥伦比亚分布最广、危害最大的夜蛾属物种包括玉米穗螟、棉铃虫、亚洲玉米螟和甘蔗螟。由于生物防治工具对几种物种的效果降低,因此评估替代管理策略(如表达苏云金芽孢杆菌杀虫蛋白的转基因植物)变得尤为重要。选择用于控制夜蛾的最佳苏云金杆菌杀虫蛋白取决于用纯化的苏云金杆菌蛋白进行的生物测定。由于除了玉米穗螟之外,没有描述其他蛀茎虫物种的人工饲料,并且大多数纯化的苏云金杆菌毒素的供应有限,因此本研究旨在开发一种使用新鲜玉米组织的生物测定方法,并通过测试对来自苏云金芽孢杆菌的 Cry1Ac 杀虫蛋白的敏感性来提供概念验证。用单一 Cry1Ac 剂量直接施用于玉米圆盘来评估毒性。七天后,所有四种测试的夜蛾属物种的死亡率均高于 90%,而对照死亡率低于 8%。此外,我们观察到 Cry1Ac 导致所有幸存者的体重抑制超过 90%,并延迟发育。这些结果验证了该方法可用于确定由于每种夜蛾属物种消耗 Cry1Ac 蛋白而导致的死亡率和生长抑制。此外,该方法可用于评估其他昆虫病原物质来控制这些害虫。