Diel rhythms shape viral community structure and activity across the host domains of life
Muhammad, Z. U. A.; Chen, S.; Wang, X.; Xu, S.; Tao, J.; Zhang, C.; Zhao, Y.; Steglich, C.; Hou, S.
Show abstract
Circadian rhythms, driven by endogenous clocks and synchronized with environmental cues, are fundamental to life on Earth. While extensively studied in diverse organisms, their influence on viral ecology remains largely unexplored. This study takes the temporal dynamics of viruses in Daya Bay as an example to uncover the rhythmic control of viral replication and activity. Using a high-resolution time-series dataset collected every 2 hours over a 3-day period, we identified a total of 22,151 viral operational taxonomic units (vOTUs) and 414 Nucleocytoplasmic Large DNA Virus (NCLDV) genomes. Our analysis revealed significant diel fluctuations, with 14.48% of vOTUs exhibiting diel patterns in metagenomic abundance and 1.97% showing diel transcriptional activity. We found that these abundant diel viruses infect hosts across the domains of life, including cyanobacteria, pelagibacteria, Marine Group II (MGII) archaea and protists, all known for their diel metabolism. The expanded spectrum of host diversity with diel viral interactions significantly broadens our understanding of virus-host rhythmic dynamics in natural environmental settings. A strong positive correlation was detected between the transcriptional activities of these diel viruses and their respective hosts. Contrary to bacteriophages, which mostly peaked during the day, we demonstrated that NCLDVs showed nocturnal diel abundance with a co-fluctuating diel transcriptomic activity pattern tightly hitched to their hosts, peaking at night and declining during the day. Furthermore, we identified a rich compendium of viral genes with significant diel expression patterns, including those related to structural protein production, DNA replication, and stress response. Notably, several essential viral genes involved in stress response and repair were found to be diel transcribed for the first time, including UV-endonuclease (UvdE), peroxidase, chaperones, and early light-induced protein (ELIP). Our findings suggest that viruses across host domains actively synchronize with environmental cues to optimize their replication and transmission, despite their dependence on host metabolism. This study provides novel insights into the rhythmic control of viral communities and their intricate interactions with hosts, with profound implications for microbial community succession and biogeochemical cycles.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A 20-year time-series of a freshwater lake reveals seasonal dynamics and environmental drivers of viral diversity, ecology, and evolution 98%
- Infection cycle and phylogeny of the Polinton-like virus Phaeocystis globosa virus virophage-14T 96%
- Distinct groups of RNA viruses associated with thermoacidophilic bacteria 95%
Similar papers in this journal
- Viruses in deep-sea cold seep sediments harbor diverse survival mechanisms and remain genetically conserved within species 98%
- Deep sea sediments associated with cold seeps are a subsurface reservoir of viral diversity 96%
- Dispersal, habitat filtering, and eco-evolutionary dynamics as drivers of local and global wetland viral biogeography 96%
Similar papers in this journal
- Unexpected diversity and ecological significance of uncultivable large virus-like particles in aquatic environments 96%
- B12-dependent virioplankton demonstrate interseasonal dynamics and associate with a diversity of pelagic bacterioplankton 96%
- Diversity of Bathyarchaeia viruses in metagenomes and virus-encoded CRISPR system components 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.