Showing posts with label Microbial Life. Show all posts
Showing posts with label Microbial Life. Show all posts

Monday, November 08, 2021

So You Think You Found Aliens – Now What?

Alien Radio Signal From Proxima Centauri

NASA would like for you to be really, really, sure it’s aliens.
     There’s a growing consensus in the scientific community that there’s alien life out there, somewhere, in some form or another. It’s only a matter of time and scientific rigor before we find it.

By David Axe
The Baily Beast
11-5-21
If this summer’s spasm of excitement over “UFO sightings” is any indication, the public is primed to run with any evidence, however thin, that we’re not alone in the universe. Even if our extraterrestrial company is merely some microbe, living or long-dead.

Anticipating mounting evidence of alien life, and also anticipating that the media might mischaracterize that evidence, NASA’s good-natured chief scientist wants to put some guardrails on the story—by placing potential evidence of alien life on a seven-step scale that ranges from interesting to definitive.

Friday, November 05, 2021

Framework for Reporting Evidence of Alien Life

Framework for Reporting Evidence of Alien Life


     Our generation could realistically be the one to discover evidence of life beyond Earth. With this privileged potential comes responsibility. The magnitude of the question of whether we are alone in the Universe, and the public interest therein,
By James Green ...
Nature.com
10-27-21
opens the possibility that results may be taken to imply more than the observations support, or than the observers intend. As life-detection objectives become increasingly prominent in space sciences, it is essential to open a community dialogue about how to convey information in a subject matter that is diverse, complicated and has a high potential to be sensationalized. Establishing best practices for communicating about life detection can serve to set reasonable expectations on the early stages of a hugely challenging endeavour, attach value to incremental steps along the path, and build public trust by making clear that false starts and dead ends are an expected and potentially productive part of the scientific process.

Thursday, October 17, 2019

'We Found Life on Mars in the 1970s,' Claims Former NASA Scientist



Viking Lander Model

The Labeled Release experiment on the Viking mission reported positive results, although most have dismissed them as inorganic chemical reactions

     We humans can now peer back into the virtual origin of our universe. We have learned much about the laws of nature that control its seemingly infinite celestial bodies, their evolution, motions and possible fate. Yet, equally remarkable, we have no generally accepted information as to whether other life exists
By Gilbert V. Levin
blogs.scientificamerican.com
10-10-19
beyond us, or whether we are, as was Samuel Coleridge’s Ancient Mariner, “alone, alone, all, all alone, alone on a wide wide sea!” We have made only one exploration to solve that primal mystery. I was fortunate to have participated in that historic adventure as experimenter of the Labeled Release (LR) life detection experiment on NASA’s spectacular Viking mission to Mars in 1976.

On July 30, 1976, the LR returned its initial results from Mars. Amazingly, they were positive. As the experiment progressed, a total of four positive results, supported by five varied controls, streamed down from the twin Viking spacecraft landed some 4,000 miles apart. The data curves signaled the detection of microbial respiration on the Red Planet. The curves from Mars were similar to those produced by LR tests of soils on Earth. It seemed we had answered that ultimate question.

Thursday, July 26, 2018

MARS: New Discovery of an Underground Lake

New Discovery of an Underground Lake

     Just a mile or so beneath the surface, near the south pole of Mars, there is a reservoir of briny water sloshing and churning below layers of ice and rock.
By Jay Bennett
Popular mechanics
7-25-18

This subglacial lake, discovered by a ground-penetrating radar on the Mars Express spacecraft, is about 20 kilometers (12.4 miles) wide and perhaps no more than a meter deep. Its discovery is the latest piece of evidence that suggests water was not only present on Mars in the past but is still flowing in some capacity today. The findings, if confirmed by future observations, would be the most significant discovery of liquid water on Mars to date.

[...]

Such subglacial lakes on Earth have been shown to support life in some cases. "There are microorganisms that are capable of surviving well below zero even without being in contact with water, and there are microorganisms that can use the salt, presumably the salt in the water on Mars... for their metabolism."

Saturday, July 14, 2018

NASA Discovered Evidence of Life on Mars 40 Years Ago, Then Set It On Fire


      In the late 1970s, two Viking robots sailed to Mars, pillaged the soil and burnt any traces of life they found.

That was never the plan, of course. When NASA first landed the twin spacecraft named Viking 1 and Viking 2 on the surface of
By Brandon Specktor
www.livescience.com
7-12-18
Mars 40 years ago, scientists were ecstatic to finally start studying Martian soil for signs of organic (carbon-based) molecules that could prove the Red Planet was hospitable for life. It should've been a slam-dunk mission. The pockmarked face of Mars was constantly being pelted with tiny, carbon-rich meteorites, after all — detecting signs of that carbon was thought to have been a sure thing.

Thursday, May 17, 2018

Plumes on Europa, a Target for Alien Life

Plumes on Europa, a Target for Alien Life

     Europa, a moon of Jupiter thought to harbor a warm, saltwater ocean sloshing beneath a thick, icy crust, has long been considered one of the best spots in the solar system to look for alien beings.
by Sarah Kaplan
The Washington Post
5-14-18

Now, citing data collected by NASA's Galileo probe more than two decades ago, scientists report that giant jets of water are spouting more than 100 miles off that moon's surface. The study, published Monday in the journal Nature Astronomy, adds to the mounting evidence that Europa is spewing its contents into space.

If the existence of the plumes is confirmed and they are linked to Europa's ocean, they could provide a tantalizingly straightforward way to sample the moon in search of signs of life....

Friday, December 08, 2017

Discovery of Alien Life; How Will Humanity React?

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How Will Humanity React to Alien Life?

[...]

     ... imagine if scientists found alien microbes. How would humanity react to the news?
By Ben Guarino
The Washington Post
12-4-17

Michael Varnum, a psychologist at Arizona State University and a member of its new Interplanetary Initiative, is trying to anticipate this response. “One of the initial questions [of the initiative] that we're curious about is how might we respond if we discover evidence of extraterrestrial life,” he said.

Wednesday, July 19, 2017

Finding Extraterrestrial Life By Their Leftovers

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Finding Extraterrestrial Life By Their Leftovers

     When the famous 15th-century inventor and scientist Leonardo da Vinci examined petrified shells with borings in them long ago, he had a remarkable insight. The strange fossilized formations, he determined, were likely left behind by ancient organisms.
By Elizabeth Howell
Seeker
7-12-17

Half a millennium later, this perspective is potentially useful in our search for alien life, argues a new paper that appears in Earth-Science Reviews, whose findings were recently presented at the European Astrobiology Network Association congress in the Netherlands.

[...]

In this latest study, Baucon and his colleagues attempt to explain the best way to find extra-terrestrial traces. One method could be looking for "meandering" trails and burrows, which is an efficient way for microorganisms to look for food. ...

Saturday, April 15, 2017

Alien Life on Saturn's Moon, Enceladus? NASA Releases New Data | VIDEO

Alien Life on Saturn's Moon, Enceladus? NASA Releases New Data
Illustration of the interior of Saturn's moon Enceladus showing a global liquid water ocean between its rocky core and icy crust. Thickness of layers shown here is not to scale. We once thought oceans made our planet unique, but we’re now coming to realize that ‘ocean worlds’ are all around us. Credits: NASA/JPL-Caltech

     Two veteran NASA missions are providing new details about icy, ocean-bearing moons of Jupiter and Saturn, further heightening the scientific interest of these and other "ocean worlds" in our solar
By NASA
4-13-17
system and beyond. The findings are presented in papers published Thursday by researchers with NASA’s Cassini mission to Saturn and Hubble Space Telescope.

In the papers, Cassini scientists announce that a form of chemical energy that life can feed on appears to exist on Saturn's moon Enceladus, and Hubble researchers report additional evidence of plumes erupting from Jupiter's moon Europa.

“This is the closest we've come, so far, to identifying a place with some of the ingredients needed for a habitable environment,” said Thomas Zurbuchen, associate administrator for NASA's Science Mission Directorate at Headquarters in Washington. ”These results demonstrate the interconnected nature of NASA's science missions that are getting us closer to answering whether we are indeed alone or not.”

The paper from researchers with the Cassini mission, published in the journal Science, indicates hydrogen gas, which could potentially provide a chemical energy source for life, is pouring into the subsurface ocean of Enceladus from hydrothermal activity on the seafloor.

The presence of ample hydrogen in the moon's ocean means that microbes – if any exist there – could use it to obtain energy by combining the hydrogen with carbon dioxide dissolved in the water. This chemical reaction, known as "methanogenesis" because it produces methane as a byproduct, is at the root of the tree of life on Earth, and could even have been critical to the origin of life on our planet.

Life as we know it requires three primary ingredients: liquid water; a source of energy for metabolism; and the right chemical ingredients, primarily carbon, hydrogen, nitrogen, oxygen, phosphorus and sulfur. With this finding, Cassini has shown that Enceladus – a small, icy moon a billion miles farther from the sun than Earth – has nearly all of these ingredients for habitability. Cassini has not yet shown phosphorus and sulfur are present in the ocean, but scientists suspect them to be, since the rocky core of Enceladus is thought to be chemically similar to meteorites that contain the two elements.

"Confirmation that the chemical energy for life exists within the ocean of a small moon of Saturn is an important milestone in our search for habitable worlds beyond Earth," said Linda Spilker, Cassini project scientist at NASA’s Jet Propulsion Laboratory (JPL) in Pasadena, California.

The Cassini spacecraft detected the hydrogen in the plume of gas and icy material spraying from Enceladus during its last, and deepest, dive through the plume on Oct. 28, 2015. Cassini also sampled the plume's composition during flybys earlier in the mission. From these observations scientists have determined that nearly 98 percent of the gas in the plume is water, about 1 percent is hydrogen and the rest is a mixture of other molecules including carbon dioxide, methane and ammonia.

The measurement was made using Cassini's Ion and Neutral Mass Spectrometer (INMS) instrument, which sniffs gases to determine their composition. INMS was designed to sample the upper atmosphere of Saturn's moon Titan. After Cassini's surprising discovery of a towering plume of icy spray in 2005, emanating from hot cracks near the south pole, scientists turned its detectors toward the small moon.

Cassini wasn't designed to detect signs of life in the Enceladus plume – indeed, scientists didn't know the plume existed until after the spacecraft arrived at Saturn.

"Although we can't detect life, we've found that there's a food source there for it. It would be like a candy store for microbes," said Hunter Waite, lead author of the Cassini study.

The new findings are an independent line of evidence that hydrothermal activity is taking place in the Enceladus ocean. Previous results, published in March 2015, suggested hot water is interacting with rock beneath the sea; the new findings support that conclusion and add that the rock appears to be reacting chemically to produce the hydrogen.

The paper detailing new Hubble Space Telescope findings, published in The Astrophysical Journal Letters, reports on observations of Europa from 2016 in which a probable plume of material was seen erupting from the moon’s surface at the same location where Hubble saw evidence of a plume in 2014. These images bolster evidence that the Europa plumes could be a real phenomenon, flaring up intermittently in the same region on the moon's surface.

The newly imaged plume rises about 62 miles (100 kilometers) above Europa’s surface, while the one observed in 2014 was estimated to be about 30 miles (50 kilometers) high. Both correspond to the location of an unusually warm region that contains features that appear to be cracks in the moon’s icy crust, seen in the late 1990s by NASA's Galileo spacecraft. Researchers speculate that, like Enceladus, this could be evidence of water erupting from the moon’s interior.

“The plumes on Enceladus are associated with hotter regions, so after Hubble imaged this new plume-like feature on Europa, we looked at that location on the Galileo thermal map. We discovered that Europa’s plume candidate is sitting right on the thermal anomaly," said William Sparks of the Space Telescope Science Institute in Baltimore, Maryland. Sparks led the Hubble plume studies in both 2014 and 2016.

The researchers say if the plumes and the warm spot are linked, it could mean water being vented from beneath the moon's icy crust is warming the surrounding surface. Another idea is that water ejected by the plume falls onto the surface as a fine mist, changing the structure of the surface grains and allowing them to retain heat longer than the surrounding landscape.

For both the 2014 and 2016 observations, the team used Hubble's Space Telescope Imaging Spectrograph (STIS) to spot the plumes in ultraviolet light. As Europa passes in front of Jupiter, any atmospheric features around the edge of the moon block some of Jupiter’s light, allowing STIS to see the features in silhouette. Sparks and his team are continuing to use Hubble to monitor Europa for additional examples of plume candidates and hope to determine the frequency with which they appear.

NASA's future exploration of ocean worlds is enabled by Hubble's monitoring of Europa's putative plume activity and Cassini's long-term investigation of the Enceladus plume. In particular, both investigations are laying the groundwork for NASA's Europa Clipper mission, which is planned for launch in the 2020s.

“If there are plumes on Europa, as we now strongly suspect, with the Europa Clipper we will be ready for them,” said Jim Green, Director of Planetary Science, at NASA Headquarters.

Hubble's identification of a site which appears to have persistent, intermittent plume activity provides a tempting target for the Europa mission to investigate with its powerful suite of science instruments. In addition, some of Sparks' co-authors on the Hubble Europa studies are preparing a powerful ultraviolet camera to fly on Europa Clipper that will make similar measurements to Hubble's, but from thousands of times closer. And several members of the Cassini INMS team are developing an exquisitely sensitive, next-generation version of their instrument for flight on Europa Clipper.

Friday, February 17, 2017

Dwarf Planet Ceres May Host Alien Life


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Dwarf Planet Ceres May Host Alien Life

     Organic molecules, the substance that serves as the basis for life, were discovered on the dwarf planet Ceres. Using infrared mapping technology, NASA’s Dawn spacecraft spotted the molecules in a 400-square-mile area, near the Ernutet crater.
By sputniknews.com
2-17-17

The study team reports that the material likely developed on the dwarf planet, instead of arriving through other objects like asteroids or comets.

..."It joins Mars and several satellites of the giant planets in the list of locations in the solar system that may harbor life."

Alien Bugs Won't Escape on Earth, Say Scientists


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Alien Bugs Won't Escape on Earth, Say Scientists

     A leading scientist has assured us all that alien microbes that may have hitched a ride to Earth on returning rockets will not be allowed to escape.
www.irishexaminer.com
2-17-17

Dr John Rummel, a scientist at the Seti Institute in California, said: “If we bring samples back from either Europa or Mars, we will contain them until hazard testing demonstrates that there is no danger and no life, or continue the containment indefinitely while we study the material.”

Tuesday, September 27, 2016

'Surprising Activity' On Europa Revealed By NASA | VIDEO

'Surprising Activity' On Europa Revealed By NASA
On Monday, after teasing about an announcement concerning "surprising activity" on Jupiter's moon Europa, NASA revealed new evidence from the ice-covered satellite.

     Look, we told you it wasn't going to be aliens.

On Monday, after teasing about an announcement concerning "surprising activity" on Jupiter's moon Europa, NASA revealed new evidence for water geysers shooting from the ice-covered satellite. ...
By Rachel Feltman
The Washington POst
9-27-16
Plumes would be exciting because they'd probably be signs of geological activity under the ocean surface, which would mean a source of energy for potential life-forms under the alien sea. ...

Monday, September 26, 2016

Hunt for Alien Life Sullied by Contamination?

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Hunt for Alien Life Sullied by Contamination?
Mars probes have found special regions that could support the growth of hardy microorganisms.

Rovers and probes have found special places on Mars where Earth microbes could thrive, risking contamination unless we take precautions.
     Twenty years ago, America celebrated its Independence Day by landing several thousand invaders on the surface of Mars.

On July 4, 1997, the Pathfinder spacecraft touched down in a northern
By Mark Strauss
National Geographic
9-25-16
lowland called Chryse Planitia carrying a small rover named Sojourner—as well as a large amount of stowaways in the form of earthly microbes.

Did any of these microbes survive and reproduce, establishing themselves as Earth’s first colonists on a distant world? Highly unlikely, NASA assured us at the time, noting that scientists believed “it would be difficult to sustain and cultivate life on Mars.” ...

But, as Jurassic Park famously pointed out, life often finds a way. ...

Friday, September 02, 2016

Oldest Fossils On Earth & Alien Life

Oldest Fossils On Earth & Alien Life

     The discovery of the 3.7 billion-year-old fossil pushes back earliest life on Earth by 220 million years, raising chances that Mars once had life, when both planets were similar.
Alister Doyle
Rueters
8-30-16

OSLO, Aug 31 - The earliest fossil evidence of life on Earth has been found in rocks 3.7 billion years old in Greenland, raising chances of life on Mars aeons ago when both planets were similarly desolate, scientists said on Wednesday....

“This indicates the Earth was no longer some sort of hell 3.7 billion years ago,” lead author Allen Nutman, of the University of Wollongong, told Reuters of the findings that were published in the journal Nature.

“It was a place where life could flourish.” ...

Thursday, August 11, 2016

Mars Life? 20 Years Later, Debate Over Meteorite Continues

Allan Hills 84001 Meteorite

      Twenty years ago, NASA scientists and their colleagues announced they had spotted possible signs of Mars life in a meteorite. The claim ignited a scientific controversy that lingers to this day.
By Charles Q. Choi
Space.com
8-10-16

In 1996, researchers led by David McKay, Everett Gibson and Kathie Thomas-Keprta from NASA's Johnson Space Center in Houston suggested that they might have found microbial fossils in a meteorite from Mars known as Allan Hills 84001 (ALH 84001). (Cosmic impacts on Mars can be powerful enough to blast rocks off the Red Planet, a fraction of which crash on Earth, the moon and other bodies in the solar system.)

The meteorite was first discovered in 1984 by geologists riding snowmobiles through the Allan Hills region of Antarctica. Scientists think ALH 84001 originally formed 4 billion years ago on Mars and landed on Earth about 13,000 years ago.

Monday, August 01, 2016

Martian Rocks Hint at Life on The Red Planet?

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Martian Rocks Hint at Life on The Red Planet?

     Traces of manganese found in rocks on Mars could be indicators that there was once oxygen on the Red Planet.

There are a lot of rocks on Mars, and most of them wouldn’t raise an
By Joseph Dussault
www.csmonitor.com
7-26-16
eyebrow. But one in particular has revealed new insights about the ancient Martian atmosphere....

In 2013, Mars rover Curiosity identified large amounts of the element manganese in a piece of rock – which, by all accounts, shouldn’t have been there. Now, analysts say the discovery could be proof of a once-oxygenated Martian atmosphere....

Thursday, July 14, 2016

New Theory for Flowing Water on Mars


New Theory for Flowing Water on Mars

     Dark streaks on the surface of Mars may indicate that liquid water flows there today. A new study has revealed more detail about the changes these briny trails are causing on the Martian surface.
By Samantha Mathewson
www.space.com
7-13-16

The dark, narrow streaks, called recurring slope lineae (RSL), appear and disappear seasonally. The new study shows that the streaks can leave behind veritable footprints — such as long-lasting changes in the color of the soil, or divots and bumps.

The location of RSL sites suggests that they are probably not caused by underground water flowing to the surface, or via seasonal melting of shallow ground ice, NASA said in a news release. Instead, the results of the new study favor the theory that water in RSL must be pulled directly from the atmosphere. ...

Wednesday, February 03, 2016

New Hint of Alien Life On Mars

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Silica Formations On Mars

By Sarah Scoles
smithsonian.com
2-1-16


Unusual silica formations spotted by a NASA rover look
a lot like structures formed by microbes around geysers on Earth

     The hunt for signs of life on Mars has been on for decades, and so far scientists have found only barren dirt and rocks. Now a pair of astronomers thinks that strangely shaped minerals inside a Martian crater could be the clue everyone has been waiting for.

In 2008, scientists announced that NASA’s Spirit rover had discovered deposits of a mineral called opaline silica inside Mars's Gusev crater. That on its own is not as noteworthy as the silica’s shape: Its outer layers are covered in tiny nodules that look like heads of cauliflower sprouting from the red dirt.

No one knows for sure how those shapes—affectionately called “micro-digitate silica protrusions”—formed. But based on recent discoveries in a Chilean desert, Steven Ruff and Jack Farmer, both of Arizona State University in Tempe, think the silica might have been sculpted by microbes. At a meeting of the American Geophysical Union in December, they made the case that these weird minerals might be our best targets for identifying evidence of past life on Mars. [...]

Monday, December 21, 2015

New Find on Mars Suggests 'Considerable Water Activity'

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New Find on Mars Suggests 'Considerable Water Activity'

By Bill Chappell
NPR
12-18-15

     In a finding that suggests "considerable water activity" on Mars, NASA says its Curiosity rover has found very high concentrations of silica on the red planet. The agency says it also found "a mineral named tridymite, rare on Earth and never seen before on Mars."

The discoveries took place on Mount Sharp, where Curiosity drilled into a rock called "Buckskin" to find the tridymite, and where it used its "ChemCam" laser to measure high silica levels. The odd findings led researchers to take the rare step of ordering Curiosity to retrace its path to learn more.

Explanations for the high silica levels "all require considerable water activity," says Jens Frydenvang of Los Alamos National Laboratory and the University of Copenhagen. He adds, "and on Earth high silica deposits are often associated with environments that provide excellent support for microbial life." [...]

Tuesday, September 29, 2015

Eureka! Liquid Water Flows on Mars – NASA Confirms Evidence | VIDEO

Liquid Water Flows on Mars – NASA Confirms Evidence

By NASA
9-28-15

    New findings from NASA's Mars Reconnaissance Orbiter (MRO) provide the strongest evidence yet that liquid water flows intermittently on present-day Mars.

Using an imaging spectrometer on MRO, researchers detected signatures of hydrated minerals on slopes where mysterious streaks are seen on the Red Planet. These darkish streaks appear to ebb and flow over time. They darken and appear to flow down steep slopes during warm seasons, and then fade in cooler seasons. They appear in several locations on Mars when temperatures are above minus 10 degrees Fahrenheit (minus 23 Celsius), and disappear at colder times.

“Our quest on Mars has been to ‘follow the water,’ in our search for life in the universe, and now we have convincing science that validates what we’ve long suspected,” said John Grunsfeld, astronaut and associate administrator of NASA’s Science Mission Directorate in Washington. “This is a significant development, as it appears to confirm that water -- albeit briny -- is flowing today on the surface of Mars.”

These downhill flows, known as recurring slope lineae (RSL), often have been described as possibly related to liquid water. The new findings of hydrated salts on the slopes point to what that relationship may be to these dark features. The hydrated salts would lower the freezing point of a liquid brine, just as salt on roads here on Earth causes ice and snow to melt more rapidly. Scientists say it’s likely a shallow subsurface flow, with enough water wicking to the surface to explain the darkening.

"We found the hydrated salts only when the seasonal features were widest, which suggests that either the dark streaks themselves or a process that forms them is the source of the hydration. In either case, the detection of hydrated salts on these slopes means that water plays a vital role in the formation of these streaks," said Lujendra Ojha of the Georgia Institute of Technology (Georgia Tech) in Atlanta, lead author of a report on these findings published Sept. 28 by Nature Geoscience.

Ojha first noticed these puzzling features as a University of Arizona undergraduate student in 2010, using images from the MRO's High Resolution Imaging Science Experiment (HiRISE). HiRISE observations now have documented RSL at dozens of sites on Mars. The new study pairs HiRISE observations with mineral mapping by MRO’s Compact Reconnaissance Imaging Spectrometer for Mars (CRISM).

The spectrometer observations show signatures of hydrated salts at multiple RSL locations, but only when the dark features were relatively wide. When the researchers looked at the same locations and RSL weren't as extensive, they detected no hydrated salt.

Ojha and his co-authors interpret the spectral signatures as caused by hydrated minerals called perchlorates. The hydrated salts most consistent with the chemical signatures are likely a mixture of magnesium perchlorate, magnesium chlorate and sodium perchlorate. Some perchlorates have been shown to keep liquids from freezing even when conditions are as cold as minus 94 degrees Fahrenheit (minus 70 Celsius). On Earth, naturally produced perchlorates are concentrated in deserts, and some types of perchlorates can be used as rocket propellant.

Perchlorates have previously been seen on Mars. NASA's Phoenix lander and Curiosity rover both found them in the planet's soil, and some scientists believe that the Viking missions in the 1970s measured signatures of these salts. However, this study of RSL detected perchlorates, now in hydrated form, in different areas than those explored by the landers. This also is the first time perchlorates have been identified from orbit.

MRO has been examining Mars since 2006 with its six science instruments.

"The ability of MRO to observe for multiple Mars years with a payload able to see the fine detail of these features has enabled findings such as these: first identifying the puzzling seasonal streaks and now making a big step towards explaining what they are," said Rich Zurek, MRO project scientist at NASA's Jet Propulsion Laboratory (JPL) in Pasadena, California.

For Ojha, the new findings are more proof that the mysterious lines he first saw darkening Martian slopes five years ago are, indeed, present-day water.

"When most people talk about water on Mars, they're usually talking about ancient water or frozen water," he said. "Now we know there’s more to the story. This is the first spectral detection that unambiguously supports our liquid water-formation hypotheses for RSL."

The discovery is the latest of many breakthroughs by NASA’s Mars missions.

“It took multiple spacecraft over several years to solve this mystery, and now we know there is liquid water on the surface of this cold, desert planet,” said Michael Meyer, lead scientist for NASA’s Mars Exploration Program at the agency’s headquarters in Washington. “It seems that the more we study Mars, the more we learn how life could be supported and where there are resources to support life in the future.”


This animation simulates a fly-around look at one of the places on Mars where dark streaks advance down slopes during warm seasons, possibly involving liquid water. This site is within Hale Crater. The streaks are roughly the length of a football field.

There are eight co-authors of the Nature Geoscience paper, including Mary Beth Wilhelm at NASA’s Ames Research Center in Moffett Field, California and Georgia Tech; CRISM Principal Investigator Scott Murchie of the Johns Hopkins University Applied Physics Laboratory in Laurel, Maryland; and HiRISE Principal Investigator Alfred McEwen of the University of Arizona Lunar and Planetary Laboratory in Tucson, Arizona. Others are at Georgia Tech, the Southwest Research Institute in Boulder, Colorado, and Laboratoire de Planétologie et Géodynamique in Nantes, France.

The agency’s Jet Propulsion Laboratory (JPL) in Pasadena, California manages the Mars Reconnaissance Orbiter Project for NASA's Science Mission Directorate, Washington. Lockheed Martin built the orbiter and collaborates with JPL to operate it.