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微生物组分析揭示了通过给(林奈,1758年)喂食基于多糖的益生元来调节肠道微生物群的潜力。

Microbiome analysis reveals potential for modulation of gut microbiota through polysaccharide-based prebiotic feeding in (Linnaeus, 1758).

作者信息

Bera Asit Kumar, Chowdhury Hemanta, Ghatak Sandeep, Malick Ramesh Chandra, Chakraborty Nabanita, Chakraborty Hirak Jyoti, Swain Himanshu Sekhar, Hassan M A, Das Basanta Kumar

机构信息

Central Inland Fisheries Research Institute (ICAR), Bārākpur, India.

The ICAR Research Complex for North Eastern Hill Region (ICAR RC NEH), Umiam, India.

出版信息

Front Physiol. 2023 Jun 8;14:1168284. doi: 10.3389/fphys.2023.1168284. eCollection 2023.

Abstract

Characterization and functional profiling of the gut microbiota are essential for guiding nutritional interventions in fish and achieving favorable host-microbe interactions. Thus, we conducted a 30 days study to explore and document the gut microbial community of , as well as to evaluate the effects of a polysaccharide-based prebiotics with 0.5% and 0.75% Aloe vera extract on the gut microbiome through genomic analysis. The V3-V4 region of 16S rRNA was amplified and sequenced using Illumina HiSeq 2500, resulting in 1,000,199 reads for operational taxonomic unit (OTU) identification. Out of 8,894 OTUs, 1,181 were selected for further analysis. Our results revealed that Planctomycetes, Firmicutes, Proteobacteria, Verrucomicrobia, Actinobacteria, and Fusobacteria were the dominant phyla in both control and treatment samples. Higher doses of prebiotics were found to improve Planctomycetes and Firmicutes while decreasing Proteobacteria and Verrucomicrobia. We observed increasing trends in the abundance of Bacilli, Bacillaceae, and bacteria at the class, family, and genus levels, respectively, in a dose-dependent manner. These findings were consistent with the conventional colony count data, which showed a higher prevalence of in prebiotic-supplemented groups. Moreover, predicted functional analysis using PICRUSt indicated a dose-dependent upregulation in glycolysis V, superpathway of glycol metabolism and degradation, glucose and xylose degradation, glycolysis II, and sulfoglycolysis pathways. Most of the energy, protein, and amino acid synthesis pathways were upregulated only at lower doses of prebiotic treatment. Our findings suggest that the gut microbiome of can be optimized through nutritional interventions with plant-based polysaccharides for improved growth performance in commercial fish.

摘要

肠道微生物群的表征和功能分析对于指导鱼类的营养干预以及实现良好的宿主-微生物相互作用至关重要。因此,我们进行了一项为期30天的研究,以探索和记录[鱼类名称未给出]的肠道微生物群落,并通过基因组分析评估含有0.5%和0.75%芦荟提取物的基于多糖的益生元对肠道微生物组的影响。使用Illumina HiSeq 2500对16S rRNA的V3-V4区域进行扩增和测序,共获得1,000,199条读数用于操作分类单元(OTU)鉴定。在8,894个OTU中,选择了1,181个进行进一步分析。我们的结果显示,浮霉菌门、厚壁菌门、变形菌门、疣微菌门、放线菌门和梭杆菌门是对照和处理样本中的主要门类。发现较高剂量的益生元可增加浮霉菌门和厚壁菌门,同时减少变形菌门和疣微菌门。我们分别在类、科和属水平上观察到芽孢杆菌纲、芽孢杆菌科和[细菌属未给出]细菌的丰度呈剂量依赖性增加趋势。这些发现与传统菌落计数数据一致,该数据显示在补充益生元的组中[细菌名称未给出]的患病率更高。此外,使用PICRUSt进行的预测功能分析表明,糖酵解V、糖代谢和降解的超级途径、葡萄糖和木糖降解、糖酵解II以及磺糖酵解途径呈剂量依赖性上调。大多数能量、蛋白质和氨基酸合成途径仅在较低剂量的益生元处理时上调。我们的研究结果表明,通过基于植物多糖的营养干预可以优化[鱼类名称未给出]的肠道微生物组,以提高商业鱼类的生长性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4b8/10285058/598712f14740/fphys-14-1168284-g001.jpg

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