TY - JOUR
T1 - The piranha gut microbiome provides a selective lens into river water biodiversity
AU - da Silva, Sheila
AU - Vuong, Paton
AU - Amaral, João Ricardo Vidal
AU - da Silva, Vicente Almeida Serafim
AU - de Oliveira, Selma Soares
AU - Vermelho, Alane Beatriz
AU - Beale, David John
AU - Bissett, Andrew
AU - Whiteley, Andrew Steven
AU - Kaur, Parwinder
AU - Macrae, Andrew
N1 - Publisher Copyright:
© The Author(s) 2024.
PY - 2024/9/14
Y1 - 2024/9/14
N2 - Advances in omics technologies have enabled the in-depth study of microbial communities and their metabolic profiles from all environments. Here metagenomes were sampled from piranha (Serrasalmus rhombeus) and from river water from the Rio São Benedito (Amazon Basin). Shotgun metagenome sequencing was used to explore diversity and to test whether fish microbiomes are a good proxy for river microbiome studies. The results showed that the fish microbiomes were not significantly different from the river water microbiomes at higher taxonomic ranks. However, at the genus level, fish microbiome alpha diversity decreased, and beta diversity increased. This result repeated for functional gene abundances associated with specific metabolic categories (SEED level 3). A clear delineation between water and fish was seen for beta diversity. The piranha microbiome provides a good and representative subset of its river water microbiome. Variations seen in beta biodiversity were expected and can be explained by temporal variations in the fish microbiome in response to stronger selective forces on its biodiversity. Metagenome assembled genomes construction was better from the fish samples. This study has revealed that the microbiome of a piranha tells us a lot about its river water microbiome and function.
AB - Advances in omics technologies have enabled the in-depth study of microbial communities and their metabolic profiles from all environments. Here metagenomes were sampled from piranha (Serrasalmus rhombeus) and from river water from the Rio São Benedito (Amazon Basin). Shotgun metagenome sequencing was used to explore diversity and to test whether fish microbiomes are a good proxy for river microbiome studies. The results showed that the fish microbiomes were not significantly different from the river water microbiomes at higher taxonomic ranks. However, at the genus level, fish microbiome alpha diversity decreased, and beta diversity increased. This result repeated for functional gene abundances associated with specific metabolic categories (SEED level 3). A clear delineation between water and fish was seen for beta diversity. The piranha microbiome provides a good and representative subset of its river water microbiome. Variations seen in beta biodiversity were expected and can be explained by temporal variations in the fish microbiome in response to stronger selective forces on its biodiversity. Metagenome assembled genomes construction was better from the fish samples. This study has revealed that the microbiome of a piranha tells us a lot about its river water microbiome and function.
KW - Amazon river microbiome
KW - Biotechnology
KW - Host-associated microbiome
KW - Metagenomics
KW - Serrasalmus rhombeus
UR - https://www.scopus.com/pages/publications/85203982870
U2 - 10.1038/s41598-024-72329-8
DO - 10.1038/s41598-024-72329-8
M3 - Article
C2 - 39277613
AN - SCOPUS:85203982870
SN - 2045-2322
VL - 14
JO - Scientific Reports
JF - Scientific Reports
IS - 1
M1 - 21518
ER -