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合生元对杂交鲶鱼幼鱼生长、营养利用、存活及肠道微生物群落的富集作用及其影响

Enrichment of With Synbiotic and Its Effects on Growth Nutrient Utilization Survival and Gut Microbial Communities of Larval Hybrid Catfish ( × ).

作者信息

Lingoh Arlene Debbie, Latif Kamil, Lee Yih Nin, Abit Lirong Yu, Sarbini Shahrul Razid, Mojilis Miguel Isaiah Vincent, Azhar Fatin Maisarah Shamsul, Khairul Sabrina Rancang, Leong Sui Sien

机构信息

Department of Animal Sciences and Fishery, Faculty of Agricultural and Forestry Sciences, Universiti Putra Malaysia Sarawak, Bintulu 97008, Sarawak, Malaysia.

Faculty of Engineering and Sciences, Curtin University, CDT 250, Miri 98009, Sarawak, Malaysia.

出版信息

Aquac Nutr. 2025 Aug 24;2025:6616288. doi: 10.1155/anu/6616288. eCollection 2025.

Abstract

(brine shrimp) is a vital live feed in aquaculture, providing essential nutrients during the early developmental stages of aquatic species. This study aimed to evaluate the efficacy of synbiotic-enriched as a live feed for hybrid catfish larvae ( × ), using locally isolated probiotics ( and ) and the commercial prebiotic inulin. The study was conducted in two phases. In Phase 1, were enriched for 6 h with four treatments: T1 ( W01 + inulin), T2 ( + inulin), T3 ( W02 + inulin), and T4 (control and no synbiotics). Bacterial colonization was assessed microscopically and through colony counts at 2, 4, and 6 h post-enrichment. Synbiotic-treated groups (T1-T3) showed significantly higher bacterial retention than the control (T4), with T1 achieving the highest colonization levels (2 h: 6.98 log CFU/g; 4 h: 7.02 log CFU/g; 6 h: 7.10 log CFU/g;   < 0.05). Control values ranged from 5.12 to 5.45 log CFU/g. Microscopy revealed a distinctive red-brown gut coloration in treated , indicating successful colonization. In Phase 2, hybrid catfish larvae were fed enriched for 7 days, followed by a subsequent 7-day period transitioned to enriched and commercial pellet feed. T3 resulted in the highest weight gain (263.14 ± 34.70 mg), length gain (14.38 ± 5.10 mm), specific growth rate (SGR; 19.59 ± 1.17% day), and the lowest feed conversion ratio (FCR; 0.10 ± 0.01), all significantly better than other treatments (  < 0.05). Although survival rates did not differ significantly, T3 recorded the highest survival (57.5 ± 3.81%). Forty presumptive lactic acid bacteria (LAB) were isolated from the fish gut, grouped into four main clusters. These results highlight the potential of synbiotic-enriched to enhance larval growth and gut health, offering an eco-friendly strategy to improve feed efficiency and reduce antibiotic dependance in aquaculture.

摘要

卤虫是水产养殖中重要的活饲料,在水生物种的早期发育阶段提供必需的营养物质。本研究旨在评估富含合生元的卤虫作为杂交鲶鱼幼体(×)的活饲料的效果,使用本地分离的益生菌(和)以及商业益生元菊粉。该研究分两个阶段进行。在第1阶段,用四种处理方法对卤虫进行6小时的强化培养:T1(W01 +菊粉)、T2(+菊粉)、T3(W02 +菊粉)和T4(对照,不添加合生元)。在强化培养后2小时、4小时和6小时通过显微镜检查和菌落计数评估细菌定殖情况。经合生元处理的组(T1 - T3)的细菌留存率显著高于对照组(T4),其中T1的定殖水平最高(2小时:6.98 log CFU/g;4小时:7.02 log CFU/g;6小时:7.10 log CFU/g;P < 0.05)。对照值在5.12至5.45 log CFU/g之间。显微镜检查显示,经处理的卤虫肠道呈现独特的红棕色,表明定殖成功。在第2阶段,给杂交鲶鱼幼体投喂强化培养的卤虫7天,随后在接下来的7天过渡到投喂强化培养的卤虫和商业颗粒饲料。T3组的增重最高(263.14±34.70毫克)、体长增加最多(14.38±5.10毫米)、特定生长率(SGR;19.59±1.17%/天)且饲料转化率最低(FCR;0.10±0.01),所有这些均显著优于其他处理组(P < 0.05)。尽管存活率没有显著差异,但T3组的存活率最高(57.5±3.81%)。从鱼肠道中分离出40株疑似乳酸菌,分为四个主要类群。这些结果突出了富含合生元的卤虫在促进幼体生长和肠道健康方面的潜力,为提高水产养殖中的饲料效率和减少抗生素依赖提供了一种生态友好型策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a947/12399349/536c6d9e122c/ANU2025-6616288.001.jpg

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