Whereas the world is marveling over the first images and data now coming from NASA’s Perseverance rover mission searching for indicators of historical microscopic life on Mars, a workforce of UNLV scientists is already arduous at work on the following step: What if we might one day ship people to the Pink Planet?
There’s rather a lot to think about when sending individuals, although. Human explorers, in contrast to their rover counterparts, require oxygen and meals, for starters. It additionally takes about six to 9 months—each methods—simply in travel time. After which there’s the air itself. Martian air is roughly 98% carbon dioxide (Earth’s is a fraction of 1% for comparability) and the air temperature averages an especially frigid -81 levels.
It is these challenges that UNLV geochemist and NASA Mars 2020 workforce scientist Libby Hausrath and postdoctoral researcher Leena Cycil, a microbial ecologist, are exploring. And an enormous a part of the reply? Algae.
“Extremophilic algae” are kinds of algae recognized for his or her capability to thrive in extreme environments akin to high-altitude snowy mountains or hypersaline lakes. These algae love carbon dioxide and may use it to provide oxygen. In addition they are edible, dense with vitamins, and develop shortly. Extremophiles’ useful traits permit them to develop in a few of the most inhospitable environments on Earth, presumably even in circumstances much like Mars.
“If we wish to accomplish long-term space exploration with individuals as a substitute of rovers and robots, it is going to require creating a self-sustaining life assist system—meals and breathable air,” says Cycil.
Hausrath and Cycil are amongst a handful of scientists taking a look at rising algae underneath the low-pressure, low-light circumstances seen on Mars, and are pursuing completely different species than earlier research.
Early outcomes are promising. To this point, they’ve recognized three species of algae that present substantial development underneath excessive circumstances. They used a low-pressure vacuum chamber to simulate atmospheric pressures related to Mars and topped it with a plate of tempered glass to permit gentle in at half the sun publicity current on Earth.
The three strains of algae are Dunaliella salina, which is often discovered worldwide in salt lakes; Chloromonas brevispina, which exists in snowy climates; and Chlorella vulgaris, primarily used as a protein complement or protein-rich meals additive, which is usually present in pure and engineered freshwater and soil habitats.
“We truly have been stunned the algae grew at these low pressures. They could be thriving in these excessive environments on Earth, however the atmospheric strain on Mars is significantly decrease, so we have been skeptical of what the result could be,” says Cycil.
Their findings on low strain development have been printed in Frontiers of Microbiology, with one other publication on rising algae in low gentle ranges coming in early 2023.
The workforce strategically research one variable at a time to know precisely how every impacts development.
They’re isolating sure traits in every algae species to study what mixture of algae traits are finest fitted to Mars. For instance, having algae that develop at low strain is doubtlessly extra essential than development with a selected sort of lighting as a result of lighting is simpler to control than strain. The hope is that the lab circumstances might be recreated in greenhouses on the floor of the Pink Planet.
“Understanding genetic variations that permit the algae to develop can assist with the design of eventual life assist techniques and potential greenhouses on Mars,” says Hausrath.
Hausrath and Cycil are already working with a NASA engineer on purposes for his or her work. Their research exhibits these organisms can produce oxygen at ranges akin to what individuals have to survive, however engineers would be the ones to place that into apply.
The case for algae
Hausrath and Cycil’s work is a part of making ready for future short-term human exploration of Mars, the place astronauts—as a substitute of rovers—will conduct additional experiments and achieve extra data of the planet and its historical past. Finally, these visits will assist decide if Mars can assist human habitation.
“You might examine it to the space station missions paving the best way for what we’re seeing now within the commercialization of space flights. In time, business companies will take our analysis towards manned long-term space journey and increase on it and what we all know will develop exponentially,” explains Cycil. “We’re studying from the rock and soil samples being returned from the rover mission, however there are different issues we won’t accomplish with robotics.”
Leena M. Cycil et al, Investigating the Development of Algae Beneath Low Atmospheric Pressures for Potential Meals and Oxygen Manufacturing on Mars, Frontiers in Microbiology (2021). DOI: 10.3389/fmicb.2021.733244
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