Javascript must be enabled to continue!
The gut microbiome of wild American marten in the Upper Peninsula of Michigan
View through CrossRef
Carnivores are ecologically important and sensitive to habitat loss and anthropogenic disruption. Here we measured trophic level and gut bacterial composition as proxies of carnivore ecological status across the Upper Peninsula, Michigan, for wild American marten (Martes americana; hereafter marten). In contrast to studies that have focused on omnivorous and herbivorous species, we find that marten, like other carnivore species without a cecum, are dominated by Firmicutes (52.35%) and Proteobacteria (45.31%) but lack Bacteroidetes. Additionally, a majority of the 12 major bacterial genera (occurring at ≥1%) are known hydrogen producers, suggesting these taxa may contribute to host energy requirements through fermentative production of acetate. Our study suggests that live trapping and harvest methods yield similar marten gut microbiome data. In addition, preserving undisturbed forest likely impacts marten ecology by measurably increasing marten trophic level and altering the gut microbiome. Our study underscores the utility of the gut microbiome as a tool to monitor the ecological status of wild carnivore populations.
Public Library of Science (PLoS)
Title: The gut microbiome of wild American marten in the Upper Peninsula of Michigan
Description:
Carnivores are ecologically important and sensitive to habitat loss and anthropogenic disruption.
Here we measured trophic level and gut bacterial composition as proxies of carnivore ecological status across the Upper Peninsula, Michigan, for wild American marten (Martes americana; hereafter marten).
In contrast to studies that have focused on omnivorous and herbivorous species, we find that marten, like other carnivore species without a cecum, are dominated by Firmicutes (52.
35%) and Proteobacteria (45.
31%) but lack Bacteroidetes.
Additionally, a majority of the 12 major bacterial genera (occurring at ≥1%) are known hydrogen producers, suggesting these taxa may contribute to host energy requirements through fermentative production of acetate.
Our study suggests that live trapping and harvest methods yield similar marten gut microbiome data.
In addition, preserving undisturbed forest likely impacts marten ecology by measurably increasing marten trophic level and altering the gut microbiome.
Our study underscores the utility of the gut microbiome as a tool to monitor the ecological status of wild carnivore populations.
Related Results
Gut Microbiome Alterations in COVID-19
Gut Microbiome Alterations in COVID-19
Abstract
Since the outset of the coronavirus disease 2019 (COVID-19) pandemic, the gut microbiome in COVID-19 has garnered substantial interest, given its significan...
Quantifying the impact of Human Leukocyte Antigen on the human gut microbiome
Quantifying the impact of Human Leukocyte Antigen on the human gut microbiome
AbstractObjectiveThe gut microbiome is affected by a number of factors, including the innate and adaptive immune system. The major histocompatibility complex (MHC), or the human le...
Impact of urbanization on gut microbiome mosaics across geographic and dietary contexts
Impact of urbanization on gut microbiome mosaics across geographic and dietary contexts
ABSTRACT
This study provides a comprehensive assessment of how urban-rural divides influence gut microbial diversity and composit...
A hidden confounder for microbiome studies: medications used years before sample collection
A hidden confounder for microbiome studies: medications used years before sample collection
ABSTRACT
Medication usage is a known contributor to the inter-individual variability of the gut m...
Fecal microbiome predicts treatment response after the initiation of semaglutide or empagliflozin uptake
Fecal microbiome predicts treatment response after the initiation of semaglutide or empagliflozin uptake
The gut microbiome has been shown to be affected by the use of many human-targeted medications, and the interaction can be bidirectional. This has been clearly demonstrated for typ...
Relationship between gut microbiota and Hashimoto’s thyroiditis: a two-sample Mendelian randomization study
Relationship between gut microbiota and Hashimoto’s thyroiditis: a two-sample Mendelian randomization study
Abstract
Purpose: Hashimoto's thyroiditis(HT)is one of the most common autoimmune diseases. Observational studies have proved that the gut microbiome is related to the occu...
Effect of early rearing conditions on the behaviour and microbiome of fish with low genetic diversity
Effect of early rearing conditions on the behaviour and microbiome of fish with low genetic diversity
Fish performance is influenced by their genotype and environment. For populations with low genetic diversity, adaptation to environmental change can be compromised, but it has been...
Pivotal interplays between fecal metabolome and gut microbiome reveal functional signatures in cerebral ischemic stroke
Pivotal interplays between fecal metabolome and gut microbiome reveal functional signatures in cerebral ischemic stroke
Abstract
Background
Integrative analysis approaches of metagenomics and metabolomics have been widely developed to understand the association betwee...

