TY - JOUR
T1 - Bacterial and Symbiodiniaceae communities’ variation in corals with distinct traits and geographical distribution
AU - Villela, Livia Bonetti
AU - da Silva-Lima, Arthur Weiss
AU - Moreira, Ana Paula Barbosa
AU - Aiube, Yuri Ricardo Andrade
AU - Ribeiro, Felipe de Vargas
AU - Villela, Helena Dias Muller
AU - Majzoub, Marwan E.
AU - Amario, Michelle
AU - de Moura, Rodrigo Leão
AU - Thomas, Torsten
AU - Peixoto, Raquel Silva
AU - Salomon, Paulo Sergio
N1 - Publisher Copyright:
© The Author(s) 2024.
PY - 2024/12
Y1 - 2024/12
N2 - Coral microbiomes play crucial roles in holobiont homeostasis and adaptation. The host’s ability to populate broad ecological niches and to cope with environmental changes seems to be related to the flexibility of the coral microbiome. By means of high-throughput DNA sequencing we characterized simultaneously both bacterial (16S rRNA) and Symbiodiniaceae (ITS2) communities of four reef-building coral species (Mussismilia braziliensis, Mussismilia harttii, Montastraea cavernosa, and Favia gravida) that differ in geographic distribution and niche specificity. Samples were collected in a marginal reef system (Abrolhos, Brazil) in four sites of contrasting irradiance and turbidity. Biological filters governed by the host are important in shaping corals’ microbiome structure. More structured associated microbial communities by reef site tend to occur in coral species with broader geographic and depth ranges, especially for Symbiodiniaceae, whereas the endemic and habitat-specialist host, M. braziliensis, has relatively more homogenous bacterial communities with more exclusive members. Our findings lend credence to the hypothesis that higher microbiome flexibility renders corals more adaptable to diverse environments, a trend that should be investigated in more hosts and reef areas.
AB - Coral microbiomes play crucial roles in holobiont homeostasis and adaptation. The host’s ability to populate broad ecological niches and to cope with environmental changes seems to be related to the flexibility of the coral microbiome. By means of high-throughput DNA sequencing we characterized simultaneously both bacterial (16S rRNA) and Symbiodiniaceae (ITS2) communities of four reef-building coral species (Mussismilia braziliensis, Mussismilia harttii, Montastraea cavernosa, and Favia gravida) that differ in geographic distribution and niche specificity. Samples were collected in a marginal reef system (Abrolhos, Brazil) in four sites of contrasting irradiance and turbidity. Biological filters governed by the host are important in shaping corals’ microbiome structure. More structured associated microbial communities by reef site tend to occur in coral species with broader geographic and depth ranges, especially for Symbiodiniaceae, whereas the endemic and habitat-specialist host, M. braziliensis, has relatively more homogenous bacterial communities with more exclusive members. Our findings lend credence to the hypothesis that higher microbiome flexibility renders corals more adaptable to diverse environments, a trend that should be investigated in more hosts and reef areas.
UR - http://www.scopus.com/inward/record.url?scp=85206582590&partnerID=8YFLogxK
U2 - 10.1038/s41598-024-70121-2
DO - 10.1038/s41598-024-70121-2
M3 - Article
C2 - 39414857
AN - SCOPUS:85206582590
SN - 2045-2322
VL - 14
JO - Scientific Reports
JF - Scientific Reports
IS - 1
M1 - 24319
ER -