Javascript must be enabled to continue!
Diet and diet‐associated bacteria shape early microbiome development in Yellowtail Kingfish ( Seriola lalandi )
View through CrossRef
Summary
The supply of quality juveniles via land‐based larviculture represents a major bottleneck to the growing finfish aquaculture industry. As the microbiome plays a key role in animal health, this study aimed to assess the microbial community associated with early larval development of commercially raised Yellowtail Kingfish (
Seriola lalandi
). We used
qPCR
and 16S
rRNA
gene amplicon sequencing to monitor changes in the microbiome associated with the development of
S. lalandi
from larvae to juveniles. We observed an increase in the bacterial load during larval development, which consisted of a small but abundant core microbiota including taxa belonging to the families
Rhodobacteraceae, Lactobacillaceae
and
Vibrionaceae
. The greatest change in the microbiome occurred as larvae moved from a diet of live feeds to formulated pellets, characterized by a transition from
Proteobacteria
to
Firmicutes
as the dominant phylum. A prediction of bacterial gene functions found lipid metabolism and secondary metabolite production were abundant in the early larval stages, with carbohydrate and thiamine metabolism functions increasing in abundance as the larvae age and are fed formulated diets. Together, these results suggest that diet is a major contributor to the early microbiome development of commercially raised
S. lalandi
.
Title: Diet and diet‐associated bacteria shape early microbiome development in Yellowtail Kingfish (
Seriola lalandi
)
Description:
Summary
The supply of quality juveniles via land‐based larviculture represents a major bottleneck to the growing finfish aquaculture industry.
As the microbiome plays a key role in animal health, this study aimed to assess the microbial community associated with early larval development of commercially raised Yellowtail Kingfish (
Seriola lalandi
).
We used
qPCR
and 16S
rRNA
gene amplicon sequencing to monitor changes in the microbiome associated with the development of
S.
lalandi
from larvae to juveniles.
We observed an increase in the bacterial load during larval development, which consisted of a small but abundant core microbiota including taxa belonging to the families
Rhodobacteraceae, Lactobacillaceae
and
Vibrionaceae
.
The greatest change in the microbiome occurred as larvae moved from a diet of live feeds to formulated pellets, characterized by a transition from
Proteobacteria
to
Firmicutes
as the dominant phylum.
A prediction of bacterial gene functions found lipid metabolism and secondary metabolite production were abundant in the early larval stages, with carbohydrate and thiamine metabolism functions increasing in abundance as the larvae age and are fed formulated diets.
Together, these results suggest that diet is a major contributor to the early microbiome development of commercially raised
S.
lalandi
.
Related Results
Effects of cooking methods on carotenoids content of Omani kingfish (Scomeberomorus commersonL.)
Effects of cooking methods on carotenoids content of Omani kingfish (Scomeberomorus commersonL.)
PurposeFish is subjected to different methods of preparation and a major challenge facing consumers is maintaining and preserving the nutritional quality of cooked fish. This paper...
Blunt Chest Trauma and Chylothorax: A Systematic Review
Blunt Chest Trauma and Chylothorax: A Systematic Review
Abstract
Introduction: Although traumatic chylothorax is predominantly associated with penetrating injuries, instances following blunt trauma, as a rare and challenging condition, ...
The influence of fecal microorganisms of different fish on basic fecal characteristics
The influence of fecal microorganisms of different fish on basic fecal characteristics
ABSTRACT
Objective
We sought to analyze the effects of fecal microorganisms on the basic fecal characteristics of fish in a reci...
Characterization of Greater Amberjack Microsatellite Markers in Lesser Amberjacks, Yellowtail Jacks, Almaco Jacks, and Banded Rudderfish
Characterization of Greater Amberjack Microsatellite Markers in Lesser Amberjacks, Yellowtail Jacks, Almaco Jacks, and Banded Rudderfish
Abstract
Thirty-one microsatellite markers that were previously isolated from and characterized in greater amberjacks Seriola dumerili were assayed for cross-species...
Radiotherapy and the gut microbiome: facts and fiction
Radiotherapy and the gut microbiome: facts and fiction
AbstractAn ever-growing body of evidence has linked the gut microbiome with both the effectiveness and the toxicity of cancer therapies. Radiotherapy is an effective way to treat t...
Mouse diet and vendor impact microbiome perturbation and recovery from early-life pulses of amoxicillin
Mouse diet and vendor impact microbiome perturbation and recovery from early-life pulses of amoxicillin
The gut microbiome is a dynamic ecosystem shaped by various factors, including diet, sex, and environment. This system plays a crucial role in host health, such that perturbation i...
Quantifying the impact of Human Leukocyte Antigen on the human gut microbiome
Quantifying the impact of Human Leukocyte Antigen on the human gut microbiome
Abstract
Objective
The gut microbiome is affected by a number of factors, including the innate and adaptive immune system. The ...

