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Giant amphipods thrive without food using bacterial gene, researchers discover

Giant armored crustaceans, or amphipods, can survive for years without food due to a gene acquired from bacteria that allows them to metabolize alternative energy sources. This discovery not only revโ€ฆ

Giant armored crustaceans survive thanks to a gene stolen from bacteria
Scientific American โ€” 11 September 2026
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Giant armored crustaceans, known as amphipods, have survived for extended periods without food due to a gene they acquired from bacteria, according to recent research published in Scientific American. This discovery sheds light on the remarkable resilience of these creatures, which inhabit some of the harshest environments on Earth, including deep ocean floors.

Scientists have been intrigued by how amphipods can endure starvation for years, which is unusual for most living organisms. The research team conducted genetic analyses and found that these crustaceans possess a gene that enables them to metabolize alternative energy sources. This gene appears to be an example of horizontal gene transfer, a process where one organism incorporates genetic material from another, in this case, bacteria that thrive in extreme conditions.

The implications of this finding extend beyond understanding amphipods. It could provide insights into genetic adaptation and survival strategies of organisms in extreme environments, which could have applications in biotechnology and environmental conservation. Understanding how these creatures manage to survive without food could also inform efforts to protect marine ecosystems facing climate change and habitat destruction.

Looking ahead, researchers plan to further investigate the mechanisms behind the gene's function and its potential applications. This could lead to advancements in synthetic biology and efforts to engineer stress-resistant crops or microorganisms. The study of amphipods highlights the interconnectedness of life and the potential for organisms to adapt to changing environments, a crucial understanding as global challenges mount.

Read Full Story at Scientific American โ†’
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