Episode Details
Back to EpisodesA Symphony of Cyanobacteria
Episode 63
Published 1 year, 10 months ago
Description
Matters Microbial #63: A Symphony of Cyanobacteria October 30, 2024
Today, Dr. Nathan Algren, Associate Professor of Biology at Clark University, joins the #QualityQuorum to discuss the centrality of cyanobacteria to our biosphere, the viruses that prey upon them, and his interests in outreach and science-oriented art.
Host: Mark O. Martin
Guest: Nathan Ahlgren
Subscribe: Apple Podcasts, Spotify
Become a patron of Matters Microbial!
Links for this episode- An overview of the cyanobacteria.
- An overview of Prochlorococcus.
- An overview of marine bacteriophages.
- The Great Oxidation Event Cyanobacteria are thought to have radically changed our planet 2.5-3.5 billion years ago by producing oxygen through photosynthesis. In essence, they and other microbes are the original terraformers.
- The Purple Earth Hypothesis Photosynthesis as we know it, using chlorophyll, may have evolved after another way of doing photosynthesis, with retinal that looks purple. This means that our planets and other 'younger' planets may look or have looked purple rather than green.
- Self-assembly of viral capsids, as modeled by 3D-printed parts (Art Olson)
- TED talk from Penny Chisholm on Prochlorococcus
- Co-occurring Synechococcus ecotypes occupy four major oceanic regimes defined by temperature, macronutrients and iron Study showing how different populations of Synechococcus occupy different niches and regions of the oceans according to their adaptations to temperature and nutrients.
- Long-term stability and Red Queen-like strain dynamics in marine viruses Study showing turnover of strains within relatively stable phage populations.
- Viral treadmills in the ocean—running to stand still Companion 'behind the paper' article.
- Diverse Marine T4-like Cyanophage Communities Are Primarily Comprised of Low-Abundance Species Including Species with Distinct Seasonal, Persistent, Occasional, or Sporadic Dynamics Paper showing cyanophage 'species' have different time patterns in the oceans.
- Rapid diversification of coevolving marine Synechococcus and a virus Study showing stable co-existence and co-evolution of a single Synechococcus host and phage over time. The emergence of resistance hosts and phage that overcome them demonstrate the principles of the Red Queen hypothesis and phage-host 'arms race'.
-
Listen Now
Love PodBriefly?
If you like Podbriefly.com, please consider donating to support the ongoing development.
Support Us