实验动物与比较医学 ›› 2025, Vol. 45 ›› Issue (6): 803-809.DOI: 10.12300/j.issn.1674-5817.2025.141

• 无脊椎实验动物:水虻 • 上一篇    下一篇

黑水虻的主要生物学特性及其作为模式生物的开发应用前景

刘松1, 莫倩茹1, 王瑾1, 崔颖1, 田铃1,2()()   

  1. 1.华南农业大学动物科学学院, 广州 510640
    2.广西蚕桑生态学与智能化技术应用重点实验室, 河池学院, 河池 546300
  • 收稿日期:2025-08-25 修回日期:2025-12-03 出版日期:2025-12-25 发布日期:2025-12-19
  • 通讯作者: 田铃(1980—),女,博士,教授,研究方向:资源昆虫开发与利用。E-mail: tianling@scau.edu.cn。ORCID: 0000-0002-6670-3062
  • 作者简介:刘松(2002—),女,硕士研究生,研究方向:可食用蛋白昆虫。E-mail: 20243139061@stu.scau.edu.cn
  • 基金资助:
    广西现代蚕桑丝绸协同创新中心开放课题“家蚕核型多角体病毒BmNPV对宿主转录调控机制研究”(2023GXCSSC13);广西蚕桑生态学与智能化技术应用重点实验室开放课题“黑水虻在蚕桑废弃物资源化利用中的应用研究”(2024GXKLSEAIT02)

Main Biological Characteristics of Hermetia illucens L. and Its Potential Applications as a Model Organism

LIU Song1, MO Qianru1, WANG Jin1, CUI Ying1, TIAN Ling1,2()()   

  1. 1.College of Animal Science, South China Agricultural University, Guangzhou 510640, China
    2.Guangxi Key Laboratory of Sericulture Ecology and Applied Intelligent Technology, Hechi University, Hechi 546300, China
  • Received:2025-08-25 Revised:2025-12-03 Published:2025-12-25 Online:2025-12-19
  • Contact: TIAN Ling (ORCID: 0000-0002-6670-3062), E-mail: tianling@scau.edu.cn

摘要:

黑水虻(Hermetia illucens L.)作为一种全球广泛分布的资源昆虫,原生于美洲热带区域,现经自然扩散与人为传播,已在中国广东省、海南省等多地稳定分布。近年来,因为黑水虻环境适应性强、资源转化效率高,在生态与生物资源领域价值突出,同时在有机废弃物转化和高价值生物产品开发中也展现出显著优势,使其成为生物资源领域的研究热点。本文首先概述黑水虻的生物学特性与地理分布,明确其研究基础与资源潜力;其次介绍其高效稳定的繁殖体系与饲养基质优化技术,为标准化繁育和生长性能提升提供技术支撑。随后,进一步系统性综述黑水虻源性生物活性成分的医学与健康应用潜力,重点聚焦于其幼虫与蛹中提取的抗菌肽、功能性脂肪酸、壳聚糖、蛋白水解肽等活性物质具有广谱抗菌、抗氧化、抗炎,以及良好的生物相容性等特性。本文综合阐述了黑水虻的生物活性成分在多重耐药菌感染防治、抗炎抗氧化、癌症化学预防、组织修复和痤疮护理的药妆品等领域的应用研究进展。同时,阐释了黑水虻作为一种新型的无脊椎实验动物模型的优势,也阐述了其具有高效、可控且富有深度的特点,探讨了黑水虻在宿主-微生物相互作用、内源病毒进化等基础医学研究中的独特价值,为连接进化生物学、微生物生态学、免疫学及预防医学等多个学科提供了交叉研究平台。最后,本文分析了目前黑水虻研究与产业化进程中所面临的技术瓶颈,并且对未来产品开发策略、未来多学科交叉与临床转化方向进行了评述与展望,以期为该资源的深度开发和高效利用提供系统性参考。

关键词: 黑水虻, 抗菌肽, 抗炎抗氧化, 实验动物模型

Abstract:

The black soldier fly (Hermetia illucens L.), a globally distributed resource insect native to the tropical regions of the Americas, has become stably established in several regions of China, such as Guangdong and Hainan Provinces, through both natural dispersal and human-mediated introduction. In recent years, owing to its strong environmental adaptability, high resource conversion efficiency, and prominent value in ecology and biological resources, as well as its remarkable advantages in organic waste conversion and high-value bioproduct development, it has emerged as a research hotspot in the field of biological resources. This paper first outlines the biological characteristics and geographical distribution of Hermetia illucens L., clarifying its research basis and resource potential. Subsequently, its efficient and stable breeding system and rearing substrate optimization techniques are introduced, which provide technical support for standardized breeding and growth performance improvement. Further, this paper systematically reviews the medical and health application potential of bioactive components derived from Hermetia illucens L., with a focus on active substances extracted from its larvae and pupae, such as antimicrobial peptides, functional fatty acids, chitosan, and protein hydrolysates, which exhibit broad-spectrum antibacterial, antioxidant, anti-inflammatory, and good biocompatibility. It comprehensively elaborates on the application research progress on the application of these bioactive components of Hermetia illucens L. in fields such as prevention and treatment of multidrug-resistant bacterial infections, anti-inflammatory and antioxidant effects, cancer chemoprevention, tissue repair, and cosmeceuticals for acne care. Moreover, this paper elucidates the advantages of Hermetia illucens L. as a novel invertebrate laboratory animal model, highlighting its high productivity, controllable growth patterns, and suitability for in-depth individual research. It also explores its unique value in fundamental medical research, such as host-microbe interactions and endogenous virus evolution, providing an interdisciplinary research platform that bridges evolutionary biology, microbial ecology, immunology, and preventive medicine. Finally, the paper analyzes the technical bottlenecks faced in the current research and industrialization process of Hermetia illucens L., and reviews and prospects product development strategies, interdisciplinary integration, and clinical translation directions, aiming to offer a systematic reference for the in-depth development and efficient utilization of this resource.

Key words: Hermetia illucens L., Antimicrobial peptides, Anti-inflammatory and antioxidant, Laboratory animal model

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