The Unseen Sea from Simon Christen on Vimeo.
The photograph was shot somewhere in the Arctic, courtesy NOAA.
The droplets of a fogbow are so small, according to APOD (whence this photograph hails):
"that the quantum mechanical wavelength of light becomes important and smears out colors that would be created by larger rainbow water drops acting like small prisms reflecting sunlight with the best angle to divert sunlight to the observer."
Writing like that is exactly the reason I have a job.
Brown algae of the Laminariales (kelps) are the strongest accumulators of iodine among living organisms. They represent a major pump in the global biogeochemical cycle of iodine and, in particular, the major source of iodocarbons in the coastal atmosphere. Nevertheless, the chemical state and biological significance of accumulated iodine have remained unknown to this date. Using x-ray absorption spectroscopy, we show that the accumulated form is iodide, which readily scavenges a variety of reactive oxygen species (ROS). We propose here that its biological role is that of an inorganic antioxidant, the first to be described in a living system. Upon oxidative stress, iodide is effluxed. On the thallus surface and in the apoplast, iodide detoxifies both aqueous oxidants and ozone, the latter resulting in the release of high levels of molecular iodine and the consequent formation of hygroscopic iodine oxides leading to particles, which are precursors to cloud condensation nuclei. In a complementary set of experiments using a heterologous system, iodide was found to effectively scavenge ROS in human blood cells.
Photo from here.
And since sea urchins stress and control kelp (by eating them), and since sea otters control sea urchin populations (by eating them), then urchins and otters are important players in the fogweb too—at least in the Pacific.
Photo from here.
The paper:
- Frithjof C. Küpper, et al. Iodide accumulation provides kelp with an inorganic antioxidant impacting atmospheric chemistry. PNAS.














