
3 - 5 Years
Lifespan of Pyrococcus furiosus is 3 - 5 Years. Pyrococcus furiosus, an extremophile microorganism, thrives in high-temperature environments like hydrothermal vents and hot springs. Factors affecting its lifespan include extreme heat tolerance, DNA repair mechanisms, and nutrient availability.
Useful Information
Pyrococcus furiosus is commonly found in deep-sea hydrothermal vents and hot springs, where temperatures can exceed 100°C. It requires high levels of sulfur and reduces sulfur compounds for energy. These extreme conditions support its survival and growth.
In its ecosystem, Pyrococcus furiosus contributes to biogeochemical cycles by breaking down organic matter and converting it into simpler compounds. Its interactions with other extremophiles help maintain the overall balance of these extreme environments.
Pyrococcus furiosus shows potential for industrial applications, such as biofuel production and enzyme production. Its heat-resistant enzymes have been used in biotechnology to catalyze chemical reactions at high temperatures.
While Pyrococcus furiosus has valuable industrial uses, handling it outside controlled environments can pose risks due to its extreme heat requirements. Proper containment measures are necessary to prevent accidental exposure. Researchers working with this microorganism should follow strict safety protocols to minimize any potential harm.
Understand the potential risks associated with extremophiles, especially in bioremediation projects, and the importance of proper containment and monitoring. Read more
Notable examples of Pyrococcus furiosus include its role in pioneering research on extremophiles and their adaptations to extreme environments. This microorganism has provided valuable insights into the limits of life on Earth and the potential for finding life in extreme conditions on other planets.
Lifespan Comparisons
Compared Item | Comparison Description |
---|---|
Lifespan of Thermus aquaticus | Pyrococcus furiosus has a shorter lifespan compared to Thermus aquaticus which can live 7-10 days. |
Lifespan of Deinococcus radiodurans | Deinococcus radiodurans can live billions of seconds, significantly longer than Pyrococcus furiosus. |
Lifespan of Halobacterium salinarum | Halobacterium salinarum outlives Pyrococcus furiosus by several decades, with a lifespan of 100-150 years. |
Lifespan of Acidithiobacillus ferrooxidans | Acidithiobacillus ferrooxidans shares a similar lifespan range with Pyrococcus furiosus of 1-5 years. |
Lifespan of Ulva | Ulva has a much shorter lifespan compared to Pyrococcus furiosus, lasting only 5-7 days. |
Lifespan of Spirogyra | Spirogyra has a brief lifespan relative to Pyrococcus furiosus, lasting 1-3 days on average. |
Lifespan of Laminaria | Laminaria, like Pyrococcus furiosus, lives for a short period of 5-7 days. |
Lifespan of Amoeba proteus | Amoeba proteus shares a similar short lifespan with Pyrococcus furiosus, lasting 1-3 days. |
Lifespan of HiDow AcuXPD Electrotherapy Device | The HiDow AcuXPD Electrotherapy Device has a longer lifespan compared to Pyrococcus furiosus, lasting 5-10 years. |
Lifespan of Drive Medical Knee Walker | The Drive Medical Knee Walker has a similar lifespan range to Pyrococcus furiosus, lasting 5-10 years. |
Lifespan of Medline Rollator Walker | The Medline Rollator Walker also shares a lifespan range of 5-10 years similar to Pyrococcus furiosus. |
Lifespan of Vive Stand Assist Walker | The Vive Stand Assist Walker has a comparable lifespan of 5-10 years to Pyrococcus furiosus. |
Lifespan of DonJoy X4 Smart Knee Brace | The DonJoy X4 Smart Knee Brace has a similar lifespan to Pyrococcus furiosus, lasting 5-10 years. |
Lifespan of Invacare Lightweight Wheelchair | The Invacare Lightweight Wheelchair shares a similar lifespan of 5-10 years with Pyrococcus furiosus. |
Lifespan of Zimmer Biomet Hip Implant | The Zimmer Biomet Hip Implant has a significantly longer lifespan compared to Pyrococcus furiosus, lasting 15-20 years. |
Frequently Asked Questions
Lifespan of Pyrococcus furiosus is 3 - 5 Years.
Pyrococcus furiosus is commonly found in deep-sea hydrothermal vents and hot springs where temperatures can exceed 100°C.
Pyrococcus furiosus contributes to biogeochemical cycles by breaking down organic matter and converting it into simpler compounds.
Pyrococcus furiosus shows potential for industrial applications such as biofuel production and enzyme production due to its heat-resistant enzymes.
Proper containment measures are necessary when handling Pyrococcus furiosus outside controlled environments to prevent accidental exposure.
Pyrococcus furiosus has played a significant role in pioneering research on extremophiles and their adaptations to extreme environments.