The modulation of intestinal commensal bacteria possibly contributes to the growth and immunity promotion in Epinephelus akaara after feeding the antimicrobial peptide Scy-hepc.

IF 4.9 Q1 MICROBIOLOGY Animal microbiome Pub Date : 2024-10-08 DOI:10.1186/s42523-024-00342-3
Hang Sun, Luxi Wang, Fangyi Chen, Xiangyu Meng, Wenbin Zheng, Hui Peng, Hua Hao, Huiyun Chen, Ke-Jian Wang
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Abstract

Background: Our previous study revealed that feeding the antimicrobial peptide (AMP) product Scy-hepc significantly enhances the growth of mariculture fish through the activation of the GH-Jak2-STAT5-IGF1 axis. However, the contribution of gut microbiota to this growth enhancement remains unclear. This study aimed to elucidate the potential mechanism involved in intestinal absorption and modulation of gut microbiota in Epinephelus akaara following Scy-hepc feeding.

Results: The results showed that a 35 day regimen of Scy-hpec markedly promoted the growth of E. akaara compared to groups supplemented with either florfenicol, B. subtilis, or a vector. The growth enhancement is likely attributed to alterations in microbiota colonization in the foregut and midgut, characterized by an increasing abundance of potential probiotics (Rhizobiaceae and Lysobacter) and a decreased abundance of opportunistic pathogens (Psychrobacter and Brevundimonas) as determined by 16S rRNA analysis. Additionally, similar to the effect of florfenicol feeding, Scy-hepc significantly improved host survival rate by over 20% in response to a lethal dose challenge with Edwardsiella tarda. Further investigations demonstrated that Scy-hepc is absorbed by the fish foregut (20-40 min) and midgut (20-30 min) as confirmed by Western blot, ELISA, and Immunofluorescence. The absorption of Scy-hepc affected the swimming, swarming and surfing motility of Vibrio harveyi and Bacillus thuringiensis isolated from E. akaara's gut. Moreover, Scy-hepc induced the downregulation of 40 assembly genes and the upregulation expression of 5, with the most significant divergence in gene expression between opportunistic pathogens and probiotics concentrated in their motility genes (PomA/B, MotA/B).

Conclusions: In summary, this study shows that feeding AMP Scy-hepc can promote growth and bolster immunity in E. akaara. These beneficial effects are likely due to the absorption of Scy-hepc in the fish's foregut and midgut, which modulates the colonization and motility of commensal bacteria, leading to favorable changes in the composition of the foregut and midgut microbiota. Therefore, a profound understanding of the mechanisms by which antimicrobial peptides affect host gut microbiota will contribute to a comprehensive assessment of their advantages and potential application prospects as substitutes for antibiotics in fish health and improving aquaculture practices.

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肠道共生菌的调节可能是鮨科鱼类摄食抗菌肽 Scy-hepc 后促进生长和提高免疫力的原因。
背景:我们之前的研究发现,投喂抗菌肽(AMP)产品Scy-hepc可通过激活GH-Jak2-STAT5-IGF1轴显著促进海水养殖鱼类的生长。然而,肠道微生物群对这种生长促进作用的贡献仍不清楚。本研究旨在阐明投喂 Scy-hepc 后 Epinephelus akaara 肠道吸收和肠道微生物群调节的潜在机制:结果表明,与补充氟苯尼考、枯草芽孢杆菌或载体的组别相比,摄食Scy-hpec 35天可明显促进鮨科鱼类的生长。生长增强可能是由于前肠和中肠的微生物群定植发生了变化,其特点是潜在益生菌(根瘤菌属和溶菌酶)的数量增加,而机会性病原体(精神杆菌和布氏乳杆菌)的数量减少,这是由 16S rRNA 分析确定的。此外,与饲喂氟苯尼考的效果类似,Scy-hepc在应对致命剂量的Edwardsiella tarda挑战时也能显著提高宿主存活率,提高幅度超过20%。进一步的研究表明,Scy-hepc 可被鱼类前肠(20-40 分钟)和中肠(20-30 分钟)吸收,这一点已通过 Western 印迹、ELISA 和免疫荧光法得到证实。Scy-hepc 的吸收影响了从 E. akaara 肠道中分离出的 Harveyi 弧菌和苏云金芽孢杆菌的游动、成群和冲浪运动。此外,Scy-hepc诱导了40个组装基因的下调和5个基因的上调表达,机会性病原体和益生菌之间基因表达的最显著差异集中在它们的运动基因(PomA/B、MotA/B):总之,这项研究表明,饲喂 AMP Scy-hepc 可促进赤潮鳗的生长并增强其免疫力。这些有利影响可能是由于鱼的前肠和中肠吸收了 Scy-hepc,从而调节了共生菌的定植和运动,导致前肠和中肠微生物群的组成发生了有利的变化。因此,深入了解抗菌肽影响宿主肠道微生物群的机制将有助于全面评估其作为抗生素替代品在鱼类健康和改善水产养殖实践方面的优势和潜在应用前景。
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审稿时长
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