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Author
Associate Professor of Marine Conservation, University of
Plymouth
|
There are two types of plankton – zooplankton, which are animals, and phytoplankton, which are algae. Phytoplankton are filled with chlorophyll which gives them a green colour, just like land plants. And like land plants, phytoplankton play a critical role, converting carbon dioxide and energy from the sun into food through photosynthesis, producing oxygen.
These tiny organisms have been producing oxygen for the world for hundreds of millions of years. But most people know very little about them, what they do for the rest of the world and the threats they are facing.
Phytoplankton are thought to have made an appearance in the Bible’s Book of Revelation, which says: “A third of the sea turned into blood, a third of the living creatures in the sea died, and a third of the ships were destroyed”.
Modern scientists think this must be a reference to a harmful algal bloom, or red tide, that can be cause by phytoplankton and can discolour that water. These can also produce toxins, causing illness and even death in animals – fish, whales, manatees, birds, and even elephants – and people.
They’ve made their way into modern culture, too. Alfred Hitchock’s movie the Birds, where birds attack residents of a California town, was inspired by birds behaving erratically due to toxic phytoplankton.
Despite being a source of cultural inspiration, there are many things about phytoplankton most people don’t know – such as the fact they can be seen from space. Unlike land plants which can grow 100 metres in height, phytoplankton individuals consist of a single cell.
Individual phytoplankton can usually only be seen with a microscope, but when phytoplankton bloom, the aggregations are so large that they can be seen from satellites.
NASA/Robert Simmon and Jesse Allen, CC BY |
Some phytoplankton are covered in CaCO₃ plates, called liths, giving them the appearance of tiny footballs, which play an important role in carbon sequestration.
The lungs of the sea
Rainforests get much of the credit for oxygen production, but phytoplankton produce at least 50% of the Earth’s oxygen. Phytoplankton are the lungs of the sea – the oxygen from one out of every two breaths we take comes from plankton.
Climate change would be much more extreme without phytoplankton. They use carbon dioxide from the atmosphere to fuel photosynthesis. When they die, they sink to the sea floor, locking away that carbon. Phytoplankton absorb up to 50% of anthropogenic CO₂, which, without them, would cause higher atmospheric CO₂ levels.
Nevertheless, climate change is causing changes in phytoplankton communities. In some places, like the North Atlantic, oceans are experiencing tropicalisation – when warming waters enable warm water plankton species to move northwards while colder water species are squeezed towards the pole.
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This is why it’s important to monitor them. There are many ways to monitor plankton, including sampling with bottles or nets, or estimating phytoplankton biomass from space using satellites.
The Continuous Plankton Recorder survey has monitored plankton in the North Atlantic since 1931, using commercial vessels such as ferries and cargo ships on their normal routes to tow a one metre long recording device through the sea behind the boat.
The devices filter seawater through a moving band of silk, trapping the plankton. The silks are then sent to a laboratory in Plymouth, UK, to identify and count the plankton.
The survey has recorded almost 800 taxa of plankton, around 300 of which are phytoplankton. It’s created a 90-year-old record of North Atlantic plankton, allowing us to better understand the marine food web and detect changes in the marine environment caused by pollution, fishing and climate change.
Links
- Tiny plankton drive processes in the ocean that capture twice as much carbon as scientists thought
- How plankton help control clouds over the world’s most remote oceans
- Will Climate Change Threaten Earth’s Other ‘Lung’?
- Phytoplankton Dynamics Under Climate Change
- Tiny organisms, giant impact
- Climate-friendly farming strategies can improve the land and generate income for farmers
- Farming without disturbing soil could cut agriculture’s climate impact by 30% – new research
- Mammals face an uncertain future as global temperatures rise
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