Microbiota Landscape of Gut System of Guppy Fish (Poecilia reticulata) Plays an Outstanding Role in Adaptation Mechanisms

Author:

Kayath Christian Aimé12ORCID,Ibala Zamba Armel13,Goma-Tchimbakala Joseph13,Mamonékéné Victor13,Mombo Makanga Gloire Moniceth1,Lebonguy Aimé Augustin1,Nguimbi Etienne12

Affiliation:

1. Institut National de Recherche en Sciences Exactes et Naturelles (IRSEN), Avenue de l’Auberge Gascogne, B.P 2400 Brazzaville, Congo

2. Laboratoire de Biologie Cellulaire et Moléculaire (BCM), Faculté des Sciences et Techniques, Université Marien Ngouabi, BP. 69 Brazzaville, Congo

3. Ecole Nationale Supérieure d’Agronomie et de Foresterie, Université Marien Ngouabi, BP. 69 Brazzaville, Congo

Abstract

Microbial consortium that is present in fish gut systems works together to achieve unknown specific roles. Here, we collected guppy fish from hydrocarbon- and trace metal-contaminated wastewater to assess the relationships between gut microbiota and host fish adaptation. Targeted genes and 16S rRNA amplicon sequencing have been used to identify gut bacteria of guppies. Mineral-conditioned medium contributes to identify bacteria with the ability to grow and/or to tolerate hydrocarbon and trace metals. Additionally, trace metals’ tolerance minimum inhibitory concentration (MIC) of microbiota was evaluated. We first isolated bacteria from the gut system, and we showed thatBacillusspp.,Staphylococcusspp.,Shigellaspp.,Salmonellaspp,Pseudomonasspp.,Citrobacterspp.,Salmonella entericassp.arizonaesp.,Enterobacterspp, andAcinetobacterspp. are part of guppy gut microbiota. Some representative species are able to degrade and/or tolerate gasoline and/or diesel fuel hydrocarbons. Tolerance to trace metals was observed in Gram-positive and Gram-negative bacteria. We showed that minimal inhibitory concentration (MIC) of some microbiota isolated from gut systems has been found including for mercury (Hg) between 2 and 4‰, cobalt (Co) Co (2 and 5‰), zinc (Zn) (9 and 18‰), and plomb (Pb) (22 and 27‰). Zn and Pb were the trace metals for which the rate of tolerance was significantly higher. Finally, we showed that cytochrome c oxidase is not interfering in presence of trace metals. The working consortium showed that bacteria should work together to achieve their best.

Funder

Institut National de Recherche en Sciences Exactes et Naturelles

Publisher

Hindawi Limited

Subject

Microbiology (medical),Microbiology

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