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鱼类肠道微生物群与宿主防御肽之间的相互作用

Crosstalk Between Intestinal Microbiota and Host Defense Peptides in Fish.

作者信息

Yu Xiao-Zheng, Yu Yang, Liu Zi-Yan

机构信息

Key Laboratory of Pollution Exposure and Health Intervention of Zhejiang Province, College of Biological and Environmental Engineering, Zhejiang Shuren University, Hangzhou 310015, China.

State Key Laboratory of Biocontrol, Guangdong Province Key Laboratory for Aquatic Economic Animals, Guangdong Provincial Engineering Technology Research Center for Healthy Breeding of Important Economic Fish, School of Life Sciences, Sun Yat-Sen University, Guangzhou 510275, China.

出版信息

Biology (Basel). 2025 Sep 11;14(9):1243. doi: 10.3390/biology14091243.

Abstract

The intricate crosstalk between intestinal microbiota and host defense peptides (HDPs) in aquaculture has emerged as a cornerstone for advancing sustainable disease management and reducing reliance on antibiotics. This review synthesizes current insights into the bidirectional interactions shaping aquatic animal health, where HDPs, multifunctional immune molecules, directly neutralize pathogens while selectively modulating intestinal microbial communities to favor beneficial taxa (including , , , and so on) and suppress harmful species. Conversely, intestinal microbiota regulate HDP expression through microbial-derived signals, such as lipopolysaccharides and metabolites, which activate host immune pathways like Toll-like receptors (TLRs) to amplify innate defenses. This dynamic interplay underpins critical physiological functions, including nutrient absorption, intestinal barrier integrity, and systemic immune homeostasis, offering a dual mechanism to enhance disease resistance and growth performance. Practical applications, such as HDP-enriched feeds and probiotic-HDP synergies, have demonstrated efficacy in reducing mortality and improving productivity across species like shrimp, salmon, and carp. However, challenges such as HDP instability, species-specific variability in peptide efficacy, and the complexity of microbiota-HDP networks hinder broad implementation. Future research must prioritize innovative strategies, including engineered microbial systems for scalable HDP production, multi-omics approaches to unravel interaction mechanisms, and eco-friendly combinatorial therapies integrating HDPs, probiotics, and plant-derived compounds. By bridging immunology, microbiology, and aquaculture science, this field can transition toward antibiotic-free practices, ensuring ecological sustainability and global food security in the face of rising aquatic disease threats and environmental pressures.

摘要

水产养殖中肠道微生物群与宿主防御肽(HDPs)之间复杂的相互作用已成为推进可持续疾病管理和减少对抗生素依赖的基石。本综述综合了当前对塑造水生动物健康的双向相互作用的见解,其中HDPs作为多功能免疫分子,可直接中和病原体,同时选择性地调节肠道微生物群落,以利于有益菌群(包括 、 、 等)并抑制有害物种。相反,肠道微生物群通过微生物衍生的信号(如脂多糖和代谢产物)调节HDP的表达,这些信号激活宿主免疫途径,如Toll样受体(TLRs)以增强先天防御。这种动态相互作用支撑着关键的生理功能,包括营养吸收、肠道屏障完整性和全身免疫稳态,提供了一种双重机制来增强抗病能力和生长性能。实际应用,如富含HDP的饲料和益生菌 - HDP协同作用,已证明在降低虾、鲑鱼和鲤鱼等物种的死亡率和提高生产力方面具有功效。然而,HDP不稳定性、肽功效的物种特异性差异以及微生物群 - HDP网络的复杂性等挑战阻碍了其广泛应用。未来的研究必须优先考虑创新策略,包括用于可扩展HDP生产的工程微生物系统、揭示相互作用机制的多组学方法,以及整合HDPs、益生菌和植物衍生化合物的生态友好型联合疗法。通过将免疫学、微生物学和水产养殖科学联系起来,该领域可以朝着无抗生素的实践方向发展,在面对日益增加的水生疾病威胁和环境压力时确保生态可持续性和全球粮食安全。

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