Song Yuxin, Liu Xiaoli, Feng Shirong, Zhao Kangbo, Qi Zhijun, Wu Wenjun, Xiao Jie, Xu Hong, Ran Mingwei, Qin Baofu
College of Life Sciences, Northwest A&F University, Xianyang 712100, China.
College of Plant Protection, Northwest A&F University, Xianyang 712100, China.
Microorganisms. 2023 Nov 16;11(11):2788. doi: 10.3390/microorganisms11112788.
Aphids are one of the most destructive pests in agricultural production. In addition, aphids are able to easily develop resistance to chemical insecticides due to their rapid reproduction and short generation periods. To explore an effective and environmentally friendly aphid control strategy, we isolated and examined a fungus with aphid-parasitizing activity. The strain (YJNfs21.11) was identified as by ITS, 28S, and gene sequence analysis. Scanning electron microscopy and transmission electron microscopy revealed that the infection hyphae of 'YJNfs21.11' colonized and penetrated the aphid epidermal layer and subsequently colonized the body cavity. Field experiments showed that 'YJNfs21.11' and its fermentation products exerted considerable control on aphids, with a corrected efficacy of 96.87%. The lipase, protease, and chitinase secreted by fungi help aphid cuticle degradation, thus assisting spores in completing the infection process. Additionally, changes were observed in the mobility and physical signs of aphids, with death occurring within 60 h of infection. Our results demonstrate that 'YJNfs21.11' exhibits considerable control on Glover and Fabricius, making it a suitable biological control agent.
蚜虫是农业生产中最具破坏力的害虫之一。此外,由于蚜虫繁殖迅速且世代周期短,它们很容易对化学杀虫剂产生抗性。为了探索一种有效且环保的蚜虫防治策略,我们分离并检测了一种具有寄生蚜虫活性的真菌。通过ITS、28S和基因序列分析,该菌株(YJNfs21.11)被鉴定为 。扫描电子显微镜和透射电子显微镜显示,“YJNfs21.11”的侵染菌丝定殖并穿透蚜虫表皮层,随后在体腔内定殖。田间试验表明,“YJNfs21.11”及其发酵产物对蚜虫有显著的防治效果,校正防效为96.87%。真菌分泌的脂肪酶、蛋白酶和几丁质酶有助于蚜虫表皮降解,从而协助孢子完成感染过程。此外,观察到蚜虫的活动能力和体征发生了变化,感染后60小时内死亡。我们的结果表明,“YJNfs21.11”对 格洛弗和 法布里修斯有显著的防治效果,使其成为一种合适的生物防治剂。 (注:原文中部分基因相关表述未完整给出具体内容,翻译时保留原文形式)