Heat-tolerant network hub species make freshwater microbial communities resilient to climate warming
Zhang, W.; Manna, B.; Singhal, N.
Show abstract
Aquatic ecosystems are facing severe threats from climate change, with rising temperatures as a major driving force posing a significant challenge to their ecological balance. Microorganisms constitute the majority of biomass in the water ecosystems and mediate the flux of carbon, nitrogen, sulfate and other essential nutrients. Climate warming profoundly influences microbial communities by shaping their distribution and ecological roles in the ecosystem, and in turn microorganisms play a significant role in climate feedback. The Yellow River, Chinas second-longest river, is crucial for agricultural irrigation and provides drinking water for millions, yet little is known about microbial community adaptations under future warming scenarios in the system. In this study, we analyzed a publicly available metagenomic dataset from Yellow River water samples that were previously subjected to temperature treatments of 23, 26, 29, 32, and 35 degrees Celsius. We employed metagenomic analysis to identify how gradually increasing temperatures affected microbial community profiles. The study identified 140 species tolerant to high temperatures, showing a significant increase in abundance with elevated temperatures. The elevated temperature stress impacted the network properties of microbial communities substantially. Certain temperature-tolerant species were identified as hubs in the network across five temperatures, with their number increasing with temperature. Deltaproteobacteria bacterium was present at all five temperatures, while Parcubacteria bacterium, Parvularcula sp., Phenylobacterium sp., Phycisphaeraceae bacterium, and Sphingobium xenophagum were only present at high temperatures of 32 {degrees}C and 35 {degrees}C. The percentage of taxa nodes connected to tolerant hubs in the overall network rose from 57.48% to 95.94%, indicating the growing importance of these tolerant hubs. The positive connections among these tolerant hubs also increased, with the number of positive edges rising from 1166 to 2811, indicating a potential collaborative relationship among these taxa in response to temperature stress. These findings suggest that tolerant hubs may initially respond to temperature stress and subsequently transfer this function to other species through cooperative interactions. Understanding these microbial dynamics is crucial for developing strategies to maintain freshwater ecosystem health amid climate change.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Facilitative interaction networks in experimental microbial community dynamics 96%
- Abundant and rare bacterial taxa structuring differently in sediment and water in thermokarst lakes in the Yellow River Source area, Qinghai-Tibet Plateau 95%
- Abundance-occupancy relationships along taxonomic ranks reveal a consistency of niche differentiation in marine bacterioplankton with distinct lifestyles 95%
Similar papers in this journal
- Metabolic potential and survival strategies of microbial communities across extreme temperature gradients on Deception Island volcano, Antarctica 96%
- Time series metagenomic sampling of the Thermopyles, Greece, geothermal springs reveals stable microbial communities dominated by novel sulfur-oxidizing chemoautotrophs 95%
- Seasonal cycles in a seaweed holobiont: A multiyear time series reveals repetitive microbial shifts and core taxa 95%
Similar papers in this journal
- Tetranucleotide frequencies differentiate genomic boundaries and metabolic strategies across environmental microbiomes 95%
- Extracellular electron transfer genes expressed by candidate flocking bacteria in cable bacteria sediment 94%
- Carbon Assimilation Strategies in Ultrabasic Groundwater: Clues from the Integrated Study of a Serpentinization-Influenced Aquifer 94%
Similar papers in this journal
- Aquatic microbial community is partially functionally redundant: insights from an in situ reciprocal transplant experiment 96%
- The relationship between land cover and microbial community composition in European lakes 95%
- New insights into functional divergence and adaptive evolution of uncultured bacteria in anammox community by complete genome-centric analysis 94%
Similar papers in this journal
"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.