Oyster aquaculture enhances sediment microbial diversity- Insights from a multi-omics study
Stevens, J. T. E.; Ray, N. E.; Al-Haj, A. N.; Fulweiler, R. W.; Roy Chowdhury, P.
Show abstract
The global aquaculture industry has grown substantially, with consequences for coastal ecology and biogeochemistry. Oyster aquaculture can alter the availability of resources for microbes that live in sediments as oysters move large quantities of organic material to the sediments via filter feeding, possibly leading to changes in the structure and function of sediment microbial communities. Here, we use a chronosequence approach to investigate the impacts of oyster farming on sediment microbial communities over 7 years of aquaculture activity in a temperate coastal system. We detected shifts in bacterial composition (16S rRNA amplicon sequencing), changes in gene expression (meta-transcriptomics), and variations in sediment elemental concentrations (sediment geochemistry) across different durations of oyster farming. Our results indicate that both the structure and function of bacterial communities vary between control (no oysters) and farm sites, with an overall increase in diversity and a shift towards anoxic tolerance in farm sites. However, little to no variation was observed in either structure or function with respect to farming duration suggesting these sediment microbial communities are resilient to change. We also did not find any significant impact of farming on heavy metal accumulation in the sediments. The minimal influence of long-term oyster farming on sediment bacterial function and biogeochemical processes as observed here can bear important consequences for establishing best practices for sustainable farming in these areas. ImportanceSediment microbial communities drive a range of important ecosystem processes such as nutrient recycling and filtration. Oysters are well-known ecological engineers, and their presence is increasing as aquaculture expands in coastal waters globally. Determining how oyster aquaculture impacts sediment microbial processes is key to understanding current and future estuarine biogeochemical processes. Here, we use a multi-omics approach to study the effect of different durations of oyster farming on the structure and function of bacteria and elemental accumulation in the farm sediments. Our results indicate an increase in the diversity of bacterial communities in the farm sites with no such increases observed for elemental concentrations. Further, these effects persist across multiple years of farming with an increase of anoxic tolerant bacteria at farm sites. The multi-omics approach used in this study can serve as a valuable tool to facilitate understanding of the environmental impacts of oyster aquaculture.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Metagenomics and quantitative stable isotope probing offer insights into metabolism of polycyclic aromatic hydrocarbons degraders in chronically polluted seawater 96%
- Evaluation of the effects of library preparation procedure and sample characteristics on the accuracy of metagenomic profiles 95%
- A comprehensive overview of the Chloroflexota community in wastewater treatment plants worldwide 95%
Similar papers in this journal
- The Microbiota of Moon Snail Egg Collars is Shaped by Host-Specific Factors 97%
- The core microbiome of cultured Pacific oyster spat develops with age but not mortality 96%
- Response of total (DNA) and metabolically active (RNA) microbial communities in Miscanthus x giganteus cultivated soil to different nitrogen fertilization rates 96%
Similar papers in this journal
- An improved hgcAB primer set and direct high throughput sequencing expand Hg-methylator diversity in nature 95%
- Exploring Taxonomic and Functional Microbiome of Hawaiian Stream and Spring Irrigation Water Systems Using Illumina and Oxford Nanopore Sequencing Platforms 95%
- Spatial and Temporal Dynamics at an Actively Silicifying Hydrothermal System 95%
Similar papers in this journal
- Diversity and distribution of sediment bacteria across an ecological and trophic gradient 97%
- Defining the sediment microbiome of the Indian River Lagoon, FL, USA, an Estuary of National Significance 95%
- Effect of plastic and seaweed shelters on the skin microbiome of lumpfish Cyclopterus lumpus used as cleaner fish in aquaculture pens 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.