College of Plant Protection, Shenyang Agricultural University, Shenyang, 110866, China.
Department of Agriculture, Pest Warning & Quality Control of Pesticides, Gujrat, 50700, Pakistan.
Sci Rep. 2021 Jun 8;11(1):12020. doi: 10.1038/s41598-021-91574-9.
Bemisia tabaci is one of the most notorious agricultural pests in the world. A vicious circle among insect resistance, dose increased, environment and human body impaired as the overuse of synthetic pesticides are becoming increasingly evident. Entomopathogenic Beauveria sp. is known as an effective natural enemy to control B. tabaci. Therefore, this study aimed to purify and identify the biological compounds from Beauveria sp. LY2 via extensive chromatographic techniques, NMR and MS and evaluated for their insecticidal activities against B. tabaci via contact and feeding assay. The outcome identified that one new cerebroside, cerebroside F (1), nine known compounds, cerebroside B (2), bassiatin (3), methyl 1,4-dihydro-4-oxo-2-quinolinecarboxylate (4), cerevisterol (5), 9-hydroxycerevisterol (6), 6-dehydrocerevisterol (7), (22E,24R)-ergosta-8(14),22-diene-3β,5α,6β,7α-tetrol (8), melithasterol B (9) and ergosterol peroxide (10) were isolated. Among the known compounds, methyl 1,4-dihydro-4-oxo- 2-quinolinecarboxylate (4) was isolated from natural origin for the first time. It is demonstrable from the results that compounds 3, 4 and 7 strongly featured insecticidal activities against B. tabaci, being the LC value as 10.59, 19.05, 26.59 μg/mL respectively in contact as well as 11.42, 5.66, 5.65 μg/mL respectively in feeding experiment. Moreover, no adverse effect on plant growth/height or phytotoxicity was observed on pepper, cucumber, tomato and cotton. The data from the current study has provided the foundation for the use of newly purified compounds against Bemisia tabaci as an alternative to synthetic chemical compounds.
烟粉虱是世界上最臭名昭著的农业害虫之一。由于合成农药的过度使用,昆虫抗药性、剂量增加、环境和人体受损之间的恶性循环日益明显。球孢白僵菌被认为是一种有效的生物防治烟粉虱的天然天敌。因此,本研究旨在通过广泛的色谱技术、NMR 和 MS 从球孢白僵菌 LY2 中分离和鉴定生物化合物,并通过接触和摄食试验评估其对烟粉虱的杀虫活性。结果表明,一种新的脑苷脂,脑苷脂 F(1),九种已知化合物,脑苷脂 B(2),巴昔汀(3),甲基 1,4-二氢-4-氧代-2-喹啉羧酸酯(4),麦角甾醇(5),9-羟基麦角甾醇(6),6-去氢麦角甾醇(7),(22E,24R)-麦角甾-8(14),22-二烯-3β,5α,6β,7α-四醇(8),麦角固醇 B(9)和麦角甾醇过氧化物(10)被分离出来。在所鉴定的化合物中,甲基 1,4-二氢-4-氧代-2-喹啉羧酸酯(4)是首次从天然产物中分离出来的。结果表明,化合物 3、4 和 7 对烟粉虱具有强烈的杀虫活性,在接触试验中 LC 值分别为 10.59、19.05 和 26.59μg/mL,在摄食试验中 LC 值分别为 11.42、5.66 和 5.65μg/mL。此外,在辣椒、黄瓜、番茄和棉花上,这些化合物对植物生长/高度或植物毒性没有不良影响。本研究为新分离的化合物替代合成化学物质防治烟粉虱提供了依据。