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补充益生菌会影响养殖塞内加尔鳎(Solea Senegalensis,考普,1858年)早期阶段肠道微生物群的多样性。

Probiotic supplementation influences the diversity of the intestinal microbiota during early stages of farmed senegalese sole (Solea Senegalensis, Kaup 1858).

作者信息

Tapia-Paniagua Silvana, Lobo Carmen, Moreno-Ventas Xabier, de la Banda Inés García, Moriñigo Miguel A, Balebona M Carmen

机构信息

Departamento de Microbiología, Universidad de Málaga, Campus de Teatinos s/n, 29071, Málaga, Spain.

出版信息

Mar Biotechnol (NY). 2014 Dec;16(6):716-28. doi: 10.1007/s10126-014-9588-6. Epub 2014 Aug 8.

Abstract

Ingestion of bacteria at early stages results in establishment of a primary intestinal microbiota which likely undergoes several stages along fish life. The role of this intestinal microbiota regulating body functions is crucial for larval development. Probiotics have been proved to modulate this microbiota and exert antagonistic effects against fish pathogens. In the present study, we aimed to determine bacterial diversity along different developmental stages of farmed Senegalese sole (Solea senegalensis) after feeding probiotic (Shewanella putrefaciens Pdp11) supplemented diet for a short period (10-30 days after hatching, DAH). Intestinal lumen contents of sole larvae fed control and probiotic diets were collected at 23, 56, 87, and 119 DAH and DNA was amplified using 16S rDNA bacterial domain-specific primers. Amplicons obtained were separated by denaturing gradient gel electrophoresis (DGGE), cloned, and resulting sequences compared to sequences in GenBank. Results suggest that Shewanella putrefaciens Pdp11 induces a modulation of the dominant bacterial taxa of the intestinal microbiota from 23 DAH. DGGE patterns of larvae fed the probiotic diet showed a core of bands related to Lactobacillus helveticus, Pseudomonas acephalitica, Vibrio parahaemolyticus, and Shewanella genus, together with increased Vibrio genus presence. In addition, decreased number of clones related to Photobacterium damselae subsp piscicida at 23 and 56 DAH was observed in probiotic-fed larvae. A band corresponding to Shewanella putrefaciens Pdp11 was sequenced as predominant from 23 to 119 DAH samples, confirming the colonization by the probiotics. Microbiota modulation obtained via probiotics addition emerges as an effective tool to improve Solea senegalensis larviculture.

摘要

在早期摄入细菌会导致建立初级肠道微生物群,该微生物群可能会随着鱼类的生命历程经历几个阶段。这种肠道微生物群调节身体功能的作用对幼体发育至关重要。益生菌已被证明可调节这种微生物群,并对鱼类病原体发挥拮抗作用。在本研究中,我们旨在确定在短期(孵化后10 - 30天,DAH)投喂添加益生菌(腐败希瓦氏菌Pdp11)的饲料后,养殖的塞内加尔鳎(Solea senegalensis)不同发育阶段的细菌多样性。在23、56、87和119 DAH时收集投喂对照饲料和益生菌饲料的鳎幼体的肠腔内容物,并使用16S rDNA细菌结构域特异性引物扩增DNA。获得的扩增子通过变性梯度凝胶电泳(DGGE)分离、克隆,并将所得序列与GenBank中的序列进行比较。结果表明,从23 DAH开始,腐败希瓦氏菌Pdp11会诱导肠道微生物群优势细菌类群的调节。投喂益生菌饲料的幼体的DGGE图谱显示了与瑞士乳杆菌、无头假单胞菌、副溶血性弧菌和希瓦氏菌属相关的条带核心,同时弧菌属的存在增加。此外,在投喂益生菌的幼体中,在23和56 DAH时观察到与美人鱼发光杆菌杀鱼亚种相关的克隆数量减少。从23到119 DAH的样本中,对应于腐败希瓦氏菌Pdp11的条带被测序为主导条带,证实了益生菌的定殖。通过添加益生菌获得的微生物群调节成为改善塞内加尔鳎幼体养殖的有效工具。

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