Water-formed Caves on Mars Might Harbor Evidence of Ancient Life

Caves in the Hebrus Valley of Mars may have been sculpted by ancient water flows

NASA Mars Earth Surveyor

Subsurface caves shaped by flowing water on Mars may have provided ideal conditions for life, with potential remnants still present today.

Throughout Mars, numerous openings resembling cave entrances are found, primarily near volcanic regions. This implies these features were likely formed by processes related to volcanic activity rather than water.

Earth is home to numerous karst caves, created by the dissolution of soluble rock by water. However, scientists have yet to find equivalent caves on Mars, despite evidence indicating the planet was once covered in water billions of years ago.

Currently, Ding Vermicelli, a professor at Shenzhen University in China, has identified eight caves that seem to have been formed by ancient water flows instead of volcanic activity. These caves are situated in the Hebrus Gorge, a northwestern region characterized by extensive valleys and depressions likely shaped by ancient floods.

Previous Mars missions, including NASA’s Mars Global Surveyor (which orbited Mars from 1997 to 2006), have mapped these caves. Ding and his team analyzed material near one cave entrance using spectroscopic data from that mission, revealing a notable presence of carbonate and sulfate minerals typically associated with water.

They also detected signs of an ancient stream ending near the cave entrance, similar to patterns seen near karst caves on Earth. James Baldini from Durham University, UK, noted, “On a map, you’d expect a river to emerge to the surface only to disappear suddenly, as the cave system absorbs its water.”

Daniel Le Corret from the University of Kent in the UK mentioned that while the mineralogical and geological data implies these may be water caves, they appear quite similar to other Martian caves of volcanic origin. “I’ve spent countless hours evaluating the global catalog of Martian caves and these resemble known volcanic formations,” he said.

If these caves are indeed formed by water, they might be excellent locations for searching for life. “For life to exist, water and a protective environment from Mars’ intense surface radiation are essential,” Baldini remarked. “Volcanic caves and lava tubes also present good avenues for potential life, though they don’t necessarily involve water.”

Mars’ water caves may contain stalagmites—bulbous rock formations generally found in Earth’s karst caves—and could act as time capsules of Mars’ ancient climate conditions, such as temperature.

However, stalagmites require thousands of years of sustained water flow to develop, and determining their formation timing could be challenging, even if rovers or drones succeed in collecting samples, according to Baldini.

Mysteries of the Universe: Cheshire, England

Join a weekend with some of science’s leading minds as you delve into the enigmas of the universe, featuring a tour of the renowned Lovell Telescope.

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Source: www.newscientist.com

Saturn’s Moon Titan Could Harbor an Unforeseen Blend of Hydrogen Cyanide and Hydrocarbons

Titan serves as an intriguing subject for in-depth investigations of organic chemistry under unusual conditions. This Saturnian moon is abundant in nonpolar hydrocarbons like ethane and methane, alongside hydrogen cyanide (HCN), a highly relevant small polar molecule in prebiotic chemistry. Recent studies show that these notably polar compounds can mix at low temperatures, creating structures that challenge traditional chemical theories.

Artistic rendering of Kraken Mare, Titan’s extensive ocean of liquid methane. Image credit: NASA’s John Glenn Research Center.

Hydrogen cyanide is commonly found in the astrochemical landscape and has been detected in numerous celestial bodies, including the interstellar medium, comets, planets, moons, and dwarf planets.

This molecule ranks as the second most prevalent product anticipated from Titan’s atmospheric chemistry.

Dr. Martin Rahm, a researcher from Chalmers University of Technology, stated: “These remarkable discoveries enhance our understanding of something vast—a moon comparable in size to Mercury.”

In laboratory experiments, Rahm and his team combined hydrogen cyanide with methane and ethane at temperatures as low as 90 K (around -180 degrees Celsius).

At this temperature, hydrogen cyanide forms crystals, while methane and ethane exist as liquids.

Using laser spectroscopy to analyze these mixtures at an atomic level, researchers found that while the molecules remained intact, changes were still occurring.

To uncover what was happening, they conducted extensive computer simulations to explore thousands of potential molecular arrangements in the solid phase.

Ultimately, they discovered that the hydrocarbons infiltrated the hydrogen cyanide crystal lattice, leading to the formation of a stable new structure termed a cocrystal.

“The identification of unexpected interactions between these substances may influence our understanding of Titan’s geology and unique features such as lakes, oceans, and sand dunes,” Dr. Rahm explained.

“Moreover, hydrogen cyanide could be crucial in the abiotic synthesis of some life-building blocks, like amino acids for proteins and nucleobases for genetic material.”

“Consequently, our research offers valuable insights into the pre-emergent chemistry of life and the potential for life to evolve in extreme environments.”

of result Published in July 2025. Proceedings of the National Academy of Sciences.

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Fernando Izquierdo Ruiz and others. 2025. Hydrogen cyanide and hydrocarbons mix on Titan. PNAS 122 (30): e2507522122; doi: 10.1073/pnas.2507522122

Source: www.sci.news

40 Years of Light from Earth May Harbor Conditions Favorable for Life

Artist’s Impression of the Planet TRAPPIST-1e

NASA/JPL-Caltech

Exciting indications suggest that one of the planets in the TRAPPIST-1 star system, located around 40 light-years away, may have an atmosphere suitable for life. However, scientists aim to obtain 15 additional images to confirm this.

TRAPPIST-1 is a small red star hosting at least seven planets. Discovered in 2016, it has become a focal point for astronomers hunting for extraterrestrial life, as three of its planets lie within the Goldilocks Zone, where liquid water can exist.

Ryan McDonald from St Andrews University, UK, states that the discovery of TRAPPIST-1 stirred considerable excitement among astronomers. However, subsequent imaging of three exoplanets—two of which are in the Goldilocks zone—did not identify any atmospheres, which was a letdown. Yet, McDonald and his team have maintained a focus on TRAPPIST-1e, situated at the center of this zone, and now hold a positive outlook.

In 2023, McDonald and colleagues utilized the James Webb Space Telescope to examine TRAPPIST-1e and have continued to enhance their images of this world. Through the analysis of starlight alterations as distant planets cross in front of stars, scientists can deduce the composition of atmospheres and identify beneficial life-sustaining chemicals.

Nonetheless, TRAPPIST-1’s classification as a red dwarf complicates these measurements due to its cooler nature compared to our sun. This cooling effect can lead to prevalent atmospheric chemicals like water also existing within the star itself. Consequently, it’s crucial to differentiate TRAPPIST-1e’s atmospheric signals from those of the star’s light. This challenging task requires innovative models and extensive effort. Initial findings suggest that TRAPPIST-1e may possess a life-friendly atmosphere, potentially representing a pivotal moment in the search for habitable conditions in the universe.

“The data exhibits fluctuations in accordance with atmospheric modeling, aligning well with nitrogen-rich atmospheres and possibly including methane,” remarks McDonald. “Among all the spectra collected from the TRAPPIST-1 system, this is the most promising, indicating potential atmospheric components.”

Should the nitrogen-rich atmosphere hypothesis be confirmed in subsequent analyses, McDonald states the next step will be to search for gases such as methane or carbon dioxide and utilize climate models to assess surface temperatures and the potential for liquid water.

However, the researchers caution that current data cannot entirely dismiss the possibility that TRAPPIST-1e is merely a barren rock. Additional observations are imperative. They have data from four JWST observations but aim for an additional 15 in the near future. “We need to minimize the error margins,” comments McDonald.

Matthew Jenge from Imperial College London notes that while many exoplanets are being discovered, astronomers are eager to pinpoint those with conditions conducive to life.

“Complexities arise because a planet can be in the right orbital zone but, with the wrong atmosphere, may become inhospitable like Venus. Astronomers are investigating numerous exoplanets, and eventually, one will likely be found with a nitrogen/oxygen-rich atmosphere. Photosynthesis may be key to achieving oxygen richness,” he says.

“If [TRAPPIST-1e] is habitable, consider what transpired on that planet over the past 7.6 billion years. The older the planet, the higher the likelihood of developing intelligent life,” he adds.

McDonald believes that by 2060, data may reveal multiple planets whose existence is hard to explain without including life forms, though he stresses that proving the existence of extraterrestrial life is still a distant goal. “We remain skeptical,” he concludes.

Source: www.newscientist.com

Do Trees Harbor Microbiomes? An Obvious Yet Profound Inquiry

“Each tree on Earth houses a multitude of microorganisms, many of which remain unrecognized by science.”

ShutterStock/Emvat Mosakovskis

A few years back, I enjoyed an enlightening afternoon in an ancient forest near London, discovering the crucial link between aging trees and biodiversity. My guide, Lynn Bodhis, a mycologist from Cardiff University, explained that as trees age over centuries, the inner trunk begins to decompose due to fungal activity. This phenomenon, known as “heart rot,” is a natural aspect of a tree’s life cycle, creating invaluable habitats for various species of insects, birds, and mammals. Unfortunately, as older trees diminish, the heart rot phenomenon is also waning, lacking the necessary old trees to continue its role. Bodhy and her colleagues are dedicated to preserving this essential process by promoting the early aging of younger trees.

While it didn’t strike me at the moment, heart rot is part of the tree microbiome, akin to a diverse mix of bacteria, archaea, fungi, protists, and viruses. The concept of microbiomes wasn’t commonly discussed then, but groundbreaking research published in Nature has revealed that trees possess microbiota as varied and remarkable as our own.

We’ve known for some time that the surfaces of trees (trunks, roots, leaves, etc.) harbor diverse microbiota. However, recent studies indicate that their interiors are similarly diverse. Each tree on our planet contains myriad microorganisms, many of which are unfamiliar to the scientific community.

This discovery is both significant and enlightening. It’s intuitive to consider diversity in trees, given that microbiota thrive in various natural settings, including smaller plants. Yet, this research unveils microbial ecosystems that were previously overlooked, shedding new light on trees—not merely as individual organisms but as holobionts, integral components of Earth’s ecology.

Essentially, like humans, trees are composite entities, consisting of both hosts and their associated microorganisms. If the microbiota of trees proves as vital to their biology as human microbiota are to us, these communities could play a pivotal role in efforts to sustain biodiversity and combat climate change.

The researchers involved in this study examined wood samples from the trunks, branches, and roots of 150 living trees spanning 16 species in forests in northeastern United States. They conducted what is referred to as the Microorganism Census, discovering that the interior wood of trees is teeming with microorganisms, including not just bacteria associated with heart rot but also a variety of other bacteria, fungi, and archaea. Additionally, each tree species is home to its unique microbiota.

If the tree microbiota is essential to biology, it could aid in the fight to preserve biodiversity.

The interior of tree trunks consists of two types of wood: outer sapwood and inner heartwood. The sapwood is alive and primarily responsible for transporting water from the roots to the leaves, while heartwood is non-living and serves mainly structural purposes (which eventually deteriorate due to heart rot). Researchers have established that the microbial communities in these two wood types differ significantly.

While only a limited number of species were sampled, it is plausible that all trees harbor similar microbiota across various wood types. The studied 16 species represent 11 genera, all of which have a global presence.

What roles do these microorganisms fulfill? It’s still largely unknown, but researchers suggest they likely contribute to tree health and the overall health of forests. They are possibly involved in the essential ecosystem services trees provide, such as offering habitats for numerous plants and animals, producing clean water, and acting as carbon sinks. Globally, wood holds approximately 60 years’ worth of current emissions according to studies over the past six decades. Trees could absorb more, helping to cap global warming to less than 2°C above pre-industrial levels, necessitating healthy, expanding forests. A deeper understanding of tree microbiota may facilitate this goal, according to researchers.

This concept of mutualism is gaining traction. While microorganisms are often viewed as adversaries of biodiversity, they are foundational to the world’s ecosystems. As primary agents of organic matter decomposition, they drive vital biogeochemical cycles that supply the biosphere with essential elements like carbon, hydrogen, nitrogen, oxygen, phosphorus, and sulfur. Moreover, they coexist with most plant species and are integral to what many refer to as Earth’s “life support system.” However, alarming trends suggest that the overall microbiota on Earth is declining.

It’s premature to conclude whether this trend extends to tree microbiota, but now that we are aware of their existence, we must ensure they are conserved.

What I’m reading

I’ll be diving into this as I plan my visit to Romania’s Carpathian Mountains next month.

What I’m watching

It resembles a storybook. I’m a huge fan of Mark Gattis, and his new drama is fantastic.

What I’m working on

For upcoming articles, we’re closely monitoring food intake again, including urine pH measurements.

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Source: www.newscientist.com

A Steam-Activated Mouthpiece Can Harbor Fungi That Threaten Airway Health

Vaping offers a healthier alternative to smoking, yet it is not without risks.

Matthew Horwood/Getty Images

Fungal sequences linked to lung issues have been identified from e-cigarette mouthpieces.

While vaping is often recommended as a means to avoid smoking, the long-term health impacts remain largely unclear.

Devices designed for vaping utilize battery-powered coils to heat liquids that typically contain nicotine, generating vapors for inhalation by the user. The primary health concerns center around the toxicity of the liquid’s chemical components; however, the presence of microorganisms transferred from the device to the user’s airways has not been thoroughly investigated.

For further insights, refer to Borna Mehrad and his team at the University of Florida, who studied 25 daily users of disposable vapes. Researchers isolated microorganisms from the mouthpiece of the devices and compared them with samples taken from the participants’ mouths.

Although the sample size was limited, researchers noted that more than half exhibited a “rich colonization” of fungal species distinct from those found in the participants’ mouths, with 80% of these species linked to potential illnesses in humans.

The predominant species identified was Cystobasidium minutum, which is associated with blood infections in immunocompromised individuals. To evaluate its impact on lung health, the research team exposed mice to C. minutum, mimicking the inhalation process associated with vaping.

“Our findings showed that the fungus most frequently found in vape samples induced characteristics of chronic bronchitis in mice,” explains Mehrad. This condition is characterized by airway inflammation and can result in flu-like symptoms.

Regarding the source of these fungi, some may be present in the environment or on our hands. However, Jason Smith indicated that while this has not been tested, it is possible that some microorganisms were already within the vaping liquid when purchased. “Residual material in the vape device can create a nutrient base for mold proliferation,” he adds.

Ian Musgrave from the University of Adelaide in Australia has noted that these fungi have also been detected in shisha (commonly referred to as hookah or waterpipe), which is known to contribute to lung diseases induced by microbes. “Notably, the microbiota documented in this study were predominantly composed of potentially pathogenic fungi that are uncommon in the oral microbiota,” he remarks.

Team member Katy Deitz expressed that the results were not surprising, considering that around one-third of participants who reported respiratory complaints, such as coughing, did not properly clean their vapes.

Musgrave advocates for regular cleaning of vaping devices but stresses that current evidence does not definitively indicate that these fungal species exist in sufficient quantities on vape mouthpieces to pose a health threat.

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Source: www.newscientist.com

Research: Your Showerheads and Toothbrushes Harbor a Wide Variety of Viruses

Viruses collected in a Northwestern University-led study are bacteriophages — a type of virus that infects and replicates inside of bacteria.



The average American spends 93% of their time in built environments, almost 70% of that is in their place of residence. Human health and well-being are intrinsically tied to the quality of our personal environments and the microbiomes that populate them. offline, the built environment microbiome is seeded, formed, and re-shaped by occupant behavior, cleaning, personal hygiene and food choices, as well as geographic location and variability in infrastructure. Huttelmaier et al. focused on the presence of viruses in household biofilms, specifically in showerheads and on toothbrushes.

“The number of viruses that we found is absolutely wild,” said Northwestern University's Dr. Erica Hartmann.

“We found many viruses that we know very little about and many others that we have never seen before.”

“It's amazing how much untapped biodiversity is all around us. And you don't even have to go far to find it; it's right under our noses.”

In the study, Dr. Hartmann and her colleagues characterized viruses living on 34 toothbrushes and 92 showerheads.

The samples comprised more than 600 different viruses — and no two samples were alike.

“We saw basically no overlap in virus types between showerheads and toothbrushes,” Dr. Hartmann said.

“We also saw very little overlap between any two samples at all.”

“Each showerhead and each toothbrush is like its own little island.”

“It just underscores the incredible diversity of viruses out there.”

While they found few patterns among all the samples, the researchers did notice more mycobacteriophage than other types of phage.

“We could envision taking these mycobacteriophages and using them as a way to clean pathogens out of your plumbing system,” Dr. Hartmann said.

“We want to look at all the functions these viruses might have and figure out how we can use them.”

The authors caution people not to fret about the invisible wildlife living within our bathrooms.

Instead of grabbing for bleach, people can soak their showerheads in vinegar to remove calcium buildup or simply wash them with plain soap and water.

“And people should regularly replace toothbrush heads,” Dr. Hartmann said.

“I'm also not a fan of antimicrobial toothbrushes, which can lead to antibiotic-resistant bugs.”

“Microbes are everywhere, and the vast majority of them will not make us sick.”

“The more you attack them with disinfectants, the more they are likely to develop resistance or become more difficult to treat. We should all just embrace them.”

The study was published online in the journal Frontiers in Microbiomes.

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Stefanie Huttelmaier et al. 2024. Phage communities in household-related biofilms correlate with bacterial hosts. Front.Microbiomes 3; doi: 10.3389/frmbi.2024.1396560

Source: www.sci.news

Review: Alone in the Dark – Jodie Comer and David Harbor struggle to elevate this lackluster horror game

IIt’s fitting that this latest Alone in the Dark game chooses a generational curse as its premise, as the series that pioneered the survival horror genre hasn’t had a good run for nearly 30 years. Its various misadventures include the disastrous 2008 game of the same name. The game included a blink-only button, among many strange design decisions. But it was terrible, at least in an interesting way, and that’s more than can be said for this boring and derivative re-imagining of the game that started it all.

Set in early 20th century Louisiana, Alone in the Dark follows Emily Hartwood (Jodie Comer), who is sent to a mental health clinic after receiving a worrying letter from her uncle Jeremy. It depicts a visit to Tokoro Delceto Manor. So worried, in fact, that she not only hires private investigator Edward Carnby (David Harbour) to accompany her, but one of the first questions she asks Carnby is whether he’s “waving a gun.” I expected that there might be a need for it, so I was wondering if he brought a gun. She is there to meet her uncle.

As it happens, you get to choose between Carnby and Heartwood to swing the gun, and that decision creates a slightly different perspective on the same story. This reimagining retains the general premise of his 1992 original, but its presentation and mechanics are heavily borrowed from Capcom’s remake of Resident Evil 2. Explore Delceto mansion in limited freedom and solve simple puzzles to unlock different rooms. This is interspersed with more action-oriented segments where you enter Uncle Jeremy’s dreams and fight monsters in locations inspired by HP Lovecraft’s stories.




Very boring most of the time…Alone in the Dark, 2024. Photo: Places Interactive/THQ Nordic

The southern Gothic manor house is fun enough to explore, and the puzzles it contains may be a little distracting. But for the most part, Alone in the Dark is pretty boring. The biggest problem is writing. The game aims for a snappy, noir-esque detachment, but it can’t match it with the fundamental silliness of a Lovecraftian mystery. The sudden switch in tone and location is more disconcerting than interesting. It also struggles to justify itself. Why do the dual protagonists spend most of the game apart, even though Heartwood specifically hired Carnby to protect her?

If Pieces Interactive was hoping that the star talent they hired would improve their writing skills, unfortunately the effect is quite the opposite. Comer seems confused as to what Heartwood’s character is. Almost every line she says is off-key. Simple filler phrases like “I need the key” sound like something a sarcastic teenager would say to her. Harbor sometimes sounds like he’s reading a script with one eye on the clock, but he does a somewhat better job of it.

It’s worth noting that the Resident Evil games aren’t narrative masterpieces either. But those people teeth Scary and exciting, the qualities of Alone in the Dark stumble past. Aside from a few instances, exploring the mansion lacks any sense of suspense, as combat and puzzle-solving exist in separate realms. Even in the dream world, encounters with monsters are surprisingly rare. Assuming you can’t stand enemies quaking in corners due to the game’s regular AI glitches, it might be fun to shoot them when they appear, but most other interactions are underwhelming or not at all It’s frustrating. Melee combat is sluggish, but opening doors and climbing ladders is excruciatingly slow.




The sudden change in sound is more disconcerting than intriguing… Alone in the Dark, 2024. Photo: Places Interactive/THQ Nordic

Moreover, for someone who is supposed to be lost in the abyss of madness, Jeremy’s dreamscapes are disappointingly mundane. These include Louisiana swamps, cemeteries, warehouses, and libraries (apparently ancient). You’ll visit some more exotic locations later on, but they’re too fleeting to have much of an impact. It takes enough effort just to hear real people talk about their dreams. If you’re going to force yourself to experience a fake person’s dream, you’d better make sure it’s very weird.

Where Alan Wake 2’s excellent surrealist horror offered a clear and compelling story while reveling in its weirdness, Alone in the Dark was too staid, too clumsy and, so haphazard that it evokes nothing more than a shrug. The mystery surrounding Jeremy’s madness isn’t worth the weighty unraveling, but the combat and puzzle-solving are just a shadow of Resident Evil 2’s excellent design. It seems the curse lives on.

Source: www.theguardian.com