Kusumawaty Diah, Augustine Stella Melbournita Noor, Aryani Any, Effendi Yunus, Emran Talha Bin, Tallei Trina Ekawati
Department of Biology, Faculty of Mathematics and Natural Sciences Education, Universitas Pendidikan Indonesia, Bandung, 40154 Indonesia.
Department of Biology, Faculty of Science and Technology, Al-Azhar Indonesia University, Jakarta, 12110 Indonesia.
3 Biotech. 2023 May;13(5):153. doi: 10.1007/s13205-023-03561-8. Epub 2023 Apr 29.
This study aimed to explore the bacteria present in the digestive tracts of wild and cultivated Indonesian shortfin eel during the elver phase. The eel has high export potential due to its vitamin and micronutrient content, but slow growth and vulnerability to collapse in farm conditions hinder its cultivation. The microbiota in the eel's digestive tract is crucial for its health, particularly during the elver phase. This study used Next Generation Sequencing to analyze the community structure and diversity of bacteria in the eels' digestive tracts, focusing on the V3-V4 regions of the 16S rRNA gene. Mothur software was used for data analysis and PAST v.3.26 was used to calculate alpha diversity. The results showed that Proteobacteria (64.18%) and Firmicutes (33.55%) were the predominant phyla in the digestive tract of cultivated eels, while Bacteroidetes (54.16%), Firmicutes (14.71%), and Fusobacteria (10.56%) were predominant in wild eels. The most prevalent genera in cultivated and wild elver were and , respectively. The microbiota in the digestive tract of cultivated eels was diverse despite uneven distribution. The KEGG database analysis revealed that the primary function of the microbiome was to facilitate the eel's absorption of nutrients by contributing significantly to the metabolism of carbohydrates and amino acids. This study's findings can aid in assessing eel health and improving eel farming conditions.
本研究旨在探索野生和养殖的印度尼西亚短鳍鳗鲡鳗线阶段消化道中的细菌。由于其维生素和微量营养素含量,这种鳗鱼具有很高的出口潜力,但生长缓慢以及在养殖条件下易崩溃阻碍了其养殖。鳗鱼消化道中的微生物群对其健康至关重要,尤其是在鳗线阶段。本研究使用下一代测序技术分析鳗鱼消化道中细菌的群落结构和多样性,重点关注16S rRNA基因的V3 - V4区域。使用Mothur软件进行数据分析,并使用PAST v.3.26计算α多样性。结果表明,变形菌门(64.18%)和厚壁菌门(33.55%)是养殖鳗鱼消化道中的主要门类,而拟杆菌门(54.16%)、厚壁菌门(14.71%)和梭杆菌门(10.56%)在野生鳗鱼中占主导地位。养殖鳗线和野生鳗线中最普遍的属分别是 和 。养殖鳗鱼消化道中的微生物群尽管分布不均但种类多样。KEGG数据库分析表明,微生物组的主要功能是通过对碳水化合物和氨基酸代谢做出重大贡献来促进鳗鱼对营养物质的吸收。本研究的结果有助于评估鳗鱼健康状况并改善鳗鱼养殖条件。