Fu Qian, Cao Dengtian, Sun Jing, Liu Xinbo, Li Haitao, Shu Changlong, Liu Rongmei
College of Life Sciences, Northeast Agricultural University, Harbin, China.
State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, China.
Front Microbiol. 2023 Mar 16;14:1124672. doi: 10.3389/fmicb.2023.1124672. eCollection 2023.
Antimicrobial peptides (AMPs) are widely recognized as promising natural antimicrobial agents. Insects, as the group of animals with the largest population, have great potential as a source of AMPs. Thus, it is worthwhile to investigate potential novel AMPs from Lewis larvae, which is a saprophagous pest prevalent in China. In this study, comparing the whole-genome sequence of Lewis larvae with the Antimicrobial Peptide Database (APD3) led to the identification of nine peptide templates that were potentially AMPs. Next, based on the peptide templates, 16 truncated sequences were predicted to the AMPs by bioinformatics software and then underwent structural and physicochemical property analysis. Thereafter, candidate small-molecule AMPs were artificially synthesized and their minimal inhibitory concentration (MIC) values were assessed. A candidate peptide, designated FD10, exhibited strong antimicrobial activity against both bacteria and fungi comprising (MIC: 8 μg/mL), (MIC: 8 μg/mL), (MIC: 8 μg/mL), (MIC: 16 μg/mL), and (MIC: 16 μg/mL). Additionally, two other candidate peptides, designated FD12 and FD15, exhibited antimicrobial activity against both (MIC: both 32 μg/mL) and (MIC: both 16 μg/mL). Moreover, FD10, FD12, and FD15 killed almost all and cells within 1 h, and the hemolytic effect of FD10 (0.31%) and FD12 (0.40%) was lower than that of ampicillin (0.52%). These findings indicate that FD12, FD15, and especially FD10 are promising AMPs for therapeutic application. This study promoted the development of antibacterial drugs and provided a theoretical basis for promoting the practical application of antimicrobial peptides in the Lewis larvae.
抗菌肽(AMPs)被广泛认为是有前景的天然抗菌剂。昆虫作为种群数量最大的动物类群,具有作为抗菌肽来源的巨大潜力。因此,研究来自在中国普遍存在的腐食性害虫丽蝇蛹集金小蜂幼虫的潜在新型抗菌肽是值得的。在本研究中,将丽蝇蛹集金小蜂幼虫的全基因组序列与抗菌肽数据库(APD3)进行比较,鉴定出9个可能为抗菌肽的肽模板。接下来,基于这些肽模板,通过生物信息学软件预测了16个截短序列作为抗菌肽,然后进行了结构和理化性质分析。此后,人工合成了候选小分子抗菌肽并评估了它们的最低抑菌浓度(MIC)值。一种名为FD10的候选肽对包括金黄色葡萄球菌(MIC:8μg/mL)、大肠杆菌(MIC:8μg/mL)、白色念珠菌(MIC:8μg/mL)、热带念珠菌(MIC:16μg/mL)和近平滑念珠菌(MIC:16μg/mL)在内的细菌和真菌均表现出强大的抗菌活性。此外,另外两种候选肽,名为FD12和FD15,对金黄色葡萄球菌(MIC:均为32μg/mL)和大肠杆菌(MIC:均为16μg/mL)均表现出抗菌活性。此外,FD10、FD12和FD15在1小时内杀死了几乎所有的金黄色葡萄球菌和大肠杆菌细胞,并且FD10(0.31%)和FD12(0.40%)的溶血作用低于氨苄青霉素(0.52%)。这些发现表明FD12、FD15,尤其是FD10是有前景的用于治疗应用的抗菌肽。本研究促进了抗菌药物的开发,并为推动抗菌肽在丽蝇蛹集金小蜂幼虫中的实际应用提供了理论依据。