Department of Biological Sciences, Florida International University, Miami, FL, 33199, USA.
Institute of Microbiology, Jiangxi Academy of Sciences, Nanchang, Jiangxi, China.
Parasit Vectors. 2021 Dec 4;14(1):595. doi: 10.1186/s13071-021-05089-3.
Mosquitoes transmit a variety of diseases. Due to widespread insecticide resistance, new effective pesticides are urgently needed. Entomopathogenic fungi are widely utilized to control pest insects in agriculture. We hypothesized that certain fungal metabolites may be effective insecticides against mosquitoes.
A high-throughput cytotoxicity-based screening approach was developed to search for insecticidal compounds in our newly established global fungal extract library. We first determined cell survival rates after adding various fungal extracts. Candidate insecticides were further analyzed using traditional larval and adult survival bioassays.
Twelve ethyl acetate extracts from a total of 192 fungal extracts displayed > 85% inhibition of cabbage looper ovary cell proliferation. Ten of these 12 candidates were confirmed to be toxic to Anopheles gambiae Sua5B cell line, and six showed > 85% inhibition of Anopheles mosquito cell growth. Further bioassays determined a LC, the lethal concentration that kills 50% of larval or adult mosquitoes, of 122 µg/mL and 1.7 µg/mosquito, respectively, after 24 h for extract 76F6 from Penicillium toxicarium.
We established a high-throughput MTT-based cytotoxicity screening approach for the discovery of new mosquitocides from fungal extracts. We discovered a candidate extract from P. toxicarium that exhibited high toxicity to mosquito larvae and adults, and thus were able to demonstrate the value of our recently developed approach. The active fungal extracts discovered here are ideal candidates for further development as mosquitocides.
蚊子传播多种疾病。由于昆虫对杀虫剂的广泛抗性,急需新型有效杀虫剂。昆虫病原真菌在农业中被广泛用于防治害虫。我们假设某些真菌代谢物可能对蚊子具有有效的杀虫作用。
我们开发了一种基于高通量细胞毒性的筛选方法,用于在我们新建立的全球真菌提取物库中寻找杀虫化合物。我们首先确定添加各种真菌提取物后细胞的存活率。候选杀虫剂进一步通过传统的幼虫和成虫存活生物测定进行分析。
从总共 192 种真菌提取物中得到的 12 种乙酸乙酯提取物显示出 >85%抑制甘蓝夜蛾卵巢细胞增殖的作用。这 12 种候选物中有 10 种被证实对疟蚊 Sua5B 细胞系有毒,其中 6 种对疟蚊细胞生长的抑制率 >85%。进一步的生物测定确定了 12F6 提取物的致死浓度(LC),即在 24 小时后杀死 50%幼虫或成虫的浓度,分别为 122 µg/mL 和 1.7 µg/只蚊子。
我们建立了一种基于 MTT 的高通量细胞毒性筛选方法,用于从真菌提取物中发现新的杀蚊剂。我们从毒青霉中发现了一种候选提取物,该提取物对蚊幼虫和成虫具有高毒性,从而证明了我们最近开发的方法的价值。这里发现的活性真菌提取物是进一步开发为杀蚊剂的理想候选物。