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微藻和蓝藻作为微生物基质及其对细菌益生菌潜在后生元能力的影响。

Microalgae and cyanobacteria as microbial substrate and their influence on the potential postbiotic capability of a bacterial probiotic.

机构信息

Departamento de Microbiología, Facultad de Ciencias, Instituto Andaluz de Biotecnología y Desarrollo Azul (IBYDA), Universidad de Málaga, Ceimar-Universidad de Málaga, Málaga, Spain.

Departamento de Biología Celular e Histología, Facultad de Biología, Universidad de Murcia, Murcia, Spain.

出版信息

Microb Biotechnol. 2024 Nov;17(11):e70046. doi: 10.1111/1751-7915.70046.

Abstract

Postbiotics are metabolic by-products from microorganisms that provide health benefits to the host. Their secretion can be influenced by various conditions affecting bacterial metabolism. This study presents a novel approach for producing potential postbiotics, specifically extracellular products (ECPs), from the probiotic strain Shewanella putrefaciens SpPdp11, grown under different culture conditions. These conditions include aquafeed media, with partial or total microalgae/cyanobacteria replacement as the microbial substrate, as well as variations in temperature and growth phase. The use of microalgae/cyanobacteria as substrates may represent a valuable strategy for generating novel postbiotics with unique properties. The ECPs assessed were evaluated for their in vitro cytotoxic, hydrolytic and antimicrobial activities. Three conditions (ECPs derived from aquafeed media with partial (FM2324 and FM1548) or total (M2324) microalgae/cyanobacteria replacement) were non-cytotoxic to various fish cell lines and hydrolysed key nutritional compounds (casein, lipids, amylase and gelatin). Proteomic analysis of these ECP conditions revealed common structural and regulatory DNA-associated proteins, while differentially expressed proteins were associated with amino acid metabolism and antioxidant system (FM2324 and FM1548) and chemotaxis system (M2324). The results highlight the potential of the selected postbiotics as feed additives for future in vivo studies, aligning with sustainable development for aquaculture.

摘要

后生元是微生物的代谢副产物,对宿主健康有益。它们的分泌可以受到影响细菌代谢的各种条件的影响。本研究提出了一种从益生菌菌株希瓦氏菌属 putrefaciens SpPdp11 中生产潜在后生元(特别是细胞外产物,ECPs)的新方法,这些菌株在不同的培养条件下生长。这些条件包括水产饲料培养基,其中微生物底物的部分或全部用微藻/蓝藻替代,以及温度和生长阶段的变化。使用微藻/蓝藻作为底物可能是生成具有独特特性的新型后生元的有价值策略。评估了 ECPs 的体外细胞毒性、水解和抗菌活性。三种条件(来源于部分(FM2324 和 FM1548)或全部(M2324)用微藻/蓝藻替代的水产饲料培养基中产生的 ECP)对各种鱼类细胞系没有细胞毒性,并水解了关键的营养化合物(酪蛋白、脂质、淀粉酶和明胶)。对这些 ECP 条件的蛋白质组学分析揭示了常见的结构和与 DNA 相关的调节蛋白,而差异表达的蛋白与氨基酸代谢和抗氧化系统(FM2324 和 FM1548)和趋化系统(M2324)有关。结果突出了所选后生元作为未来体内研究的饲料添加剂的潜力,符合水产养殖的可持续发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a03a/11582085/17a601385a63/MBT2-17-e70046-g002.jpg

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