High-throughput analysis using 16S rRNA gene of bacterial communities present in selected bivalves and gastropods species from Bayug Island, Iligan City, Philippines

Nitcel Aymie Albarido, S. Tabugo
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Abstract

Abstract. Albarido NA, Tabugo SR. 2024. High-throughput analysis using 16S rRNA gene of bacterial communities present in selected bivalves and gastropods species from Bayug Island, Iligan City, Philippines. Biodiversitas 25: 431-438. Seashells, which include bivalves and gastropods, have global recognition for their significant contributions to the economy, ecology, and medicine. They hold value as a food source and are highly regarded as effective biological indicators. The objective of this study is to identify the bacterial communities present in selected edible species of bivalves (Pinctada margaritifera Linnaeus, 1758 and Anadara granosa Linnaeus, 1758) and gastropods (Canarium urceus Linnaeus, 1758 and Conus stercusmuscarum Linnaeus, 1758), through high-throughput sequencing metabarcoding. Bacterial samples were collected via a swabbing technique on the surface and inside parts of selected mollusc species, which were then placed on sterilized seawater for DNA extraction. Genomic DNA was isolated from the samples, and the V3-V4 region of the 16S rRNA gene was amplified and sequenced using the Illumina MiSeq platform. Four amplicon libraries were generated, representing the two bivalve and two gastropod species in the study area. Data analysis was conducted using the Parallel Meta Suite software. Upon quality control and processing, 173,489 amplicon sequence variants (ASVs) were obtained. Within the bacterial community, the most abundant genera included Stenotrophomonas, Vibrio, Serratia, Photobacterium, and Shewanella. The assessment of alpha diversity, using the Shannon index, indicated a higher diversity in A. granosa. Furthermore, the analysis using the PICRUSt algorithm within the Parallel Meta Suite unveiled the involvement of specific bacteria found in the selected gastropod and bivalve species in various functions. These functions encompass protein production, xenobiotic metabolism, biodegradation, and other metabolism-related processes, supporting these organisms' ecological and physiological roles.
利用 16S rRNA 基因高通量分析菲律宾伊利甘市巴尤格岛部分双壳类和腹足类物种中的细菌群落
摘要Albarido NA, Tabugo SR.2024.使用 16S rRNA 基因高通量分析菲律宾伊利甘市巴尤格岛部分双壳类和腹足类物种中的细菌群落。Biodiversitas 25: 431-438.包括双壳类和腹足类在内的贝壳因其对经济、生态和医学的重大贡献而得到全球认可。它们具有食物来源的价值,并被高度评价为有效的生物指标。本研究的目的是通过高通量测序元条码技术鉴定双壳类动物(Pinctada margaritifera Linnaeus, 1758 和 Anadara granosa Linnaeus, 1758)和腹足类动物(Canarium urceus Linnaeus, 1758 和 Conus stercusmuscarum Linnaeus, 1758)中部分可食用物种的细菌群落。通过拭子技术在所选软体动物的表面和内部收集细菌样本,然后将样本置于灭菌海水中进行 DNA 提取。从样本中分离出基因组 DNA,利用 Illumina MiSeq 平台对 16S rRNA 基因的 V3-V4 区域进行扩增和测序。共生成了四个扩增子文库,分别代表研究区域的两个双壳类和两个腹足类物种。数据分析使用 Parallel Meta Suite 软件进行。经过质量控制和处理,共获得 173,489 个扩增子序列变异(ASV)。在细菌群落中,最丰富的菌属包括血吸单胞菌、弧菌、沙雷氏菌、光杆菌和雪旺氏菌。使用香农指数对阿尔法多样性进行的评估表明,颗粒藻的多样性较高。此外,利用并行元套件中的 PICRUSt 算法进行的分析揭示了在所选腹足类和双壳类物种中发现的特定细菌参与了各种功能。这些功能包括蛋白质生产、异生物新陈代谢、生物降解和其他与新陈代谢相关的过程,支持了这些生物的生态和生理作用。
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