He Limei, Zhou Yatao, Wu Wenxian, Wang Ling, Yang Qichang, Liang Gemei, Wu Kongming
Institute of Urban Agriculture, Chinese Academy of Agricultural Sciences, Chengdu Agricultural Science and Technology Center, Chengdu, China.
State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, China.
Pest Manag Sci. 2025 Mar;81(3):1218-1228. doi: 10.1002/ps.8520. Epub 2024 Nov 5.
The Asian corn borer (ACB), Ostrinia furnacalis (Guenée), is a major pest restricting maize production in Asia. The Chinese government has approved the commercial planting of Bt-Cry1Ab maize (event DBN9936), but its control potential against the ACB in southern regions remains unclear. This study evaluated the sensitivity of ACB to Cry1Ab protein expressed in Bt-Cry1Ab maize and determined the control efficacy of Bt-Cry1Ab maize against the ACB in Sichuan Province, a major maize-producing region in southern China, based on pilot planting in the field, and larval feeding bioassays in the field and laboratory.
The Cry1Ab protein contents in different tissues of Bt-Cry1Ab maize ranged from 31.20-88.27 μg g. The range of median lethal concentrations (LC) and median growth inhibitory concentration (GIC) values of Cry1Ab protein expressed in Bt-Cry1Ab maize against ACB larvae were 0.036-0.109 μg mL and 0.002-0.018 μg mL, respectively. The first and fourth instar ACB larvae were unable survive feeding on different tissues of Bt-Cry1Ab maize plants. Field experiments conducted from 2023 to 2024 indicated that the number of ACB larvae per 100 plants, plant damage rate, leaf damage rate, male ear damage rate, female ear damage rate, and stalk damage rate in the Bt-Cry1Ab maize fields were reduced by 95.36% ± 2.17%, 83.98% ± 1.73%, 89.45% ± 1.50%, 100.00% ± 0.00%, 69.79% ± 4.88% and 100.00% ± 0.00%, respectively, compared to conventional maize fields.
The ACB population in Sichuan Province, China is sensitive to Cry1Ab expressed in Bt-Cry1Ab maize (event DBN993). Planting Bt-Cry1Ab maize efficiently reduces the population of ACB larvae and the percentage of damaged maize plants, and has great application potential in the integrated pest management of the ACB in Sichuan Province, China. © 2024 Society of Chemical Industry.
亚洲玉米螟(Ostrinia furnacalis (Guenée))是限制亚洲玉米生产的主要害虫。中国政府已批准种植转Bt-Cry1Ab基因玉米(事件DBN9936),但其对中国南方地区亚洲玉米螟的防治潜力尚不清楚。本研究通过田间试种以及田间和实验室幼虫饲养生物测定,评估了亚洲玉米螟对转Bt-Cry1Ab基因玉米中表达的Cry1Ab蛋白的敏感性,并确定了转Bt-Cry1Ab基因玉米对中国南方主要玉米产区四川省亚洲玉米螟的防治效果。
转Bt-Cry1Ab基因玉米不同组织中的Cry1Ab蛋白含量在31.20 - 88.27 μg g之间。转Bt-Cry1Ab基因玉米中表达的Cry1Ab蛋白对亚洲玉米螟幼虫的半数致死浓度(LC)和半数生长抑制浓度(GIC)值范围分别为0.036 - 0.109 μg mL和0.002 - 0.018 μg mL。一龄和四龄亚洲玉米螟幼虫取食转Bt-Cry1Ab基因玉米植株的不同组织后无法存活。2023年至2024年进行的田间试验表明,与常规玉米田相比,转Bt-Cry1Ab基因玉米田每100株亚洲玉米螟幼虫数量、植株受害率、叶片受害率、雄穗受害率、雌穗受害率和茎秆受害率分别降低了95.36% ± 2.17%、83.98% ± 1.73%、89.45% ± 1.50%、100.00% ± 0.00%、69.79% ± 4.88%和100.00% ± 0.00%。
中国四川省的亚洲玉米螟种群对转Bt-Cry1Ab基因玉米(事件DBN993)中表达的Cry1Ab敏感。种植转Bt-Cry1Ab基因玉米可有效降低亚洲玉米螟幼虫数量和玉米植株受害率,在中国四川省亚洲玉米螟的综合防治中具有巨大的应用潜力。© 2024化学工业协会。