Deep ocean pressure unlocks nutrients for marine microbes

A new study shows that extreme pressure in the deep sea forces nutrients from sinking particles, giving microbes an unexpected food source. Researchers at the University of Southern Denmark led the work, which was published in Science Advances.

The findings indicate that marine snow particles lose up to 50 percent of their carbon and 58 to 63 percent of their nitrogen as they sink to depths of 2 to 6 kilometers. This leakage occurs because hydrostatic pressure squeezes dissolved organic matter from the particles.

First author Peter Stief described the process by saying the pressure acts almost like a giant juicer. Microbes in surrounding seawater can immediately use the released compounds.

Laboratory experiments with diatoms showed bacterial abundance rising 30-fold within two days after the nutrients became available. The study suggests this mechanism operates across multiple diatom species and could affect global carbon storage models.

The research team plans to test the process further during an upcoming expedition to the Arctic Ocean aboard the research vessel Polarstern.

Related Articles

A new study reveals that bacteria living inside marine fish play a key role in producing calcium carbonate, influencing ocean health and carbon storage. The findings challenge previous assumptions that fish alone handled this process. Researchers from the University of Miami led the work published in PLOS Biology.

Reported by AI

The Arctic Ocean crossed a tipping point around 2009, according to a new study showing that sea ice loss has sharply reduced nitrate levels in the water.

An underwater volcano off Madagascar has erupted chemical remnants from Earth's earliest magma ocean, offering direct evidence of conditions from over 4 billion years ago.

This website uses cookies

We use cookies for analytics to improve our site. Read our privacy policy for more information.
Decline