4.6 Article

Factors Driving Bacterial Microbiota of Eggs from Commercial Hatcheries of European Seabass and Gilthead Seabream

期刊

MICROORGANISMS
卷 9, 期 11, 页码 -

出版社

MDPI
DOI: 10.3390/microorganisms9112275

关键词

microbiome; broodstock water; disinfection; hatchery; teleost eggs

资金

  1. European Union Horizon 2020 Programme (PerformFISH) [727610]
  2. Portuguese Foundation for Science and Technology (FCT) [UID/Multi/04326/2020]
  3. CRESC Algarve 2020 [EMBRC.PT ALG-01-0145-FEDER-022121]
  4. COMPETE 2020 [EMBRC.PT ALG-01-0145-FEDER-022121]
  5. FCT [DL57/2016/CP1361/CT001]

向作者/读者索取更多资源

The study revealed that bacterial communities in fish eggs and water differ in abundance but share similar functions. Factors such as sample type, species, and collection site drive microbial community structures.
A comprehensive understanding of how bacterial community abundance changes in fishes during their lifecycle and the role of the microbiota on health and production is still lacking. From this perspective, the egg bacterial communities of two commercially farmed species, the European seabass (Dicentrarchus labrax) and the gilthead seabream (Sparus aurata), from different aquaculture sites were compared, and the potential effect of broodstock water microbiota and disinfectants on the egg microbiota was evaluated. Moreover, 16S ribosomal RNA gene sequencing was used to profile the bacterial communities of the eggs and broodstock water from three commercial hatcheries. Proteobacteria were the most common and dominant phyla across the samples (49.7% on average). Vibrio sp. was the most highly represented genus (7.1%), followed by Glaciecola (4.8%), Pseudoalteromonas (4.4%), and Colwellia (4.2%), in eggs and water across the sites. Routinely used iodine-based disinfectants slightly reduced the eggs' bacterial load but did not significantly change their composition. Site, species, and type of sample (eggs or water) drove the microbial community structure and influenced microbiome functional profiles. The egg and seawater microbiome composition differed in abundance but shared similar functional profiles. The strong impact of site and species on egg bacterial communities indicates that disease management needs to be site-specific and highlights the need for species- and site-specific optimization of disinfection protocols.

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